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Photoshop Contest Week575 ~Cow
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Paris, Île-de-France - France
I posted a while back one of the frames I used to make this. But when I saw thec scene, I actually saw it in HDR, and now I finally had some time to process it. In order to properly see the effect I wanted to achieve, you need to be about 3-5 feet away from your screen. Try it! :-)
This was taken inside the Panthéon in Paris. As I said before in the previously mentioned shot description, I didn't have much time to setup the camera, so I mainly used P mode, AF and the auto-bracketing feature. I shot 2 series of 3 shots each before the girl moved away from that spot. I chose the best series and created this image. Enjoy!
The Panthéon is a building in the Latin Quarter in Paris, France. It was originally built as a church dedicated to St. Genevieve, but after many changes now combines liturgical functions with its role as a famous burial place.
And the Panthéon is my favorite building in Paris.
About the photo
EXIF: 11mm, f/4, 1/100, ISO 1600, +/-2EV bracketing (3 shots), Tokina 11-16mm f/2.8 lens
Merged the HDR in Photomatix. Used 3 billion layers for color, contrast and exposure manipulation in Photoshop. Noise reduction in Noiseware Professional.
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Another micro skyline contest entry. I wanted this to be a fantasy build of a futuristic city constructed at the edge of a coastline. Sometimes I see certain odd-shaped bricks and the visual of a whole build materializes in my thoughts. Some details of how the partial ocean & sand mix underneath the construction is hard to see from this photo - it looks a bit nicer in real life.
Technopolis is a coastline city boasting a 60 billion megajoule fusion reactor which also supplies seawater desalination. With endless power & fresh water, citizens enjoy luxury living at the domed Aquamara region or nearby CoudTower supporting 100,000 residents. Nightlife & entertainment is at the center of the city, with a bustling a djacent downtown business district. Daily launches transport fuel & supplies for the Mars NewCentury Terraform project.
Also check out my latest favorite build, the Taj Mageddon! (click to see and then navigate left/right to see the alternate angles).
Bicycles were introduced in the 19th century and now number about one billion worldwide. They are the principal means of transportation in many parts of the world.
Cycling is widely regarded as a very effective and efficient mode of transportation optimal for short to moderate distances. Bicycles provide numerous benefits by comparison with motor vehicles, including the sustained physical exercise necessarily involved in cycling, that cycling involves a reduced consumption of fossil fuels, less air or noise pollution, much reduced traffic congestion, easier parking, greater maneuverability, and access to both roads and paths. The advantages also include reduced financial cost to the user as well as to society at large (negligible damage to roads, less road area required). Among the disadvantages of cycling are the inherent instability of the bicycle, the immensely reduced protection in crashes (especially in collisions with motor vehicles), longer travel time (except in densely populated areas), vulnerability to weather conditions, difficulty in transporting passengers, competition (and interference) with socially beneficial forms of mass public transit, a persistent tendency for cyclists to intrude into pedestrian areas, and the particular levels of skill and fitness required by cycling.
~~~Wikipedia
Billions and Billions (remembering Carl Sagan). On a trail near Paradise (truly), Mt. Rainier National Park, Washington, USA. October 1, 2010. © Copyright Richard Mitchell,
Touching Light Photography - all rights reserved.
Photos of the Milky Way always keep me humble.
Although the nighttime sky often gives the impression of looking out on the universe, in fact nearly all of the stars we see are neighbors of ours within the Milky Way. That's right - those specs of light in the sky are our nearest neighbors, not their distant cousins billions of light years away.
When he was younger, my second son once inquired about UFOs. Not wanting him to be alarmed, I told him that UFOs were nothing to fret about, and in fact aliens surely could not visit earth since even the nearest star was so far away. "What star is the closest, Daddy?" came his next question.
I knew the answer, or I thought I did…"Proxima Centauri" I replied confidently. (Of course, the sun is the NEAREST star…but I knew what he meant).
"How far away is that star, Daddy?" I was in for the long haul now. I knew how curious he was, and I was sure to face an onslaught of questions.
"It's 4.22 light years away, Eric" I answered, hoping this would end the inquisition, and yes, I did know the answer to that question without having to look it up.
"But how far away is 4.2 light years Daddy?". Hmmm…I thought. No way out of this now. I started multiplying in my head, using approximations to simplify the problem. I knew that light traveled at about 186,000 miles per second…times 60 seconds per minute times 60 minutes per hour times 24 hours per day times 365 1/4 days per year times 4.22 years. Tonight as I post this photo, I'm cheating - I just used Excel ... and the answer is - it comes out to 2.477 x 10e13 (10 to the 13th power) miles to the nearest star.
I gave him an answer that approximated that answer… "About 25,000,000,000,000 miles, Eric". (That's about 25 TRILLION miles … to the NEAREST star.)
"But Dad, how far is 25 TRILLION miles???"
I quickly ran some numbers in my head and answered him like this:
"If you were to get into the fastest spaceship any human has ever flown in ... on the first day of your life... and you hurdled through space towards the NEAREST STAR for the REST OF YOUR LIFE until the day you died, the nearest star would not seem any closer on the day you died than it did on the day you were born." (In fact, you'd cover less than 1% of the distance at 25,000 miles per hour in a 100-year lifetime. There are probably faster spaceships now, but that is still a reasonable approximation.)
That answer seemed to satisfy him, and it opened up the vast realm of space to my mind. Suddenly, the universe seemed HUGE. The nearest star - at 4.2 light years - so far away, and yet there are stars 15 billion light years away. One day, when you have the chance, look at the Hubble Deep Field Image of a speck of sky with 1500 GALAXIES in it...it is truly wonderous.
Gazing into the endless emptiness of space above my head on a lonely dark trail in Mt. Rainier National Park, I again really saw the vastness of this amazing universe, the depth of space above me, and wondered about so many things, and the connectedness of all living things, and the good fortune in having friends to share this with.
Technical details: Canon 5D MK II ISO 6400, Canon EF17-40mm f/4L at 17mm, exposure for 30 sec at f/4.0 with high ISO and long-exposure noise reduction ON.
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Marina Bay Sands is an integrated resort fronting Marina Bay in Singapore. Developed by Las Vegas Sands, it is billed as the world's most expensive standalone casino property at S$8 billion, including cost of the prime land.
With the casino complete, the resort features a 2,561-room hotel, a 1,300,000-square-foot (120,000 m2) convention-exhibition centre, the 800,000-square-foot (74,000 m2) The Shoppes at Marina Bay Sands mall, a museum, two large theatres, seven "celebrity chef" restaurants, two floating Crystal Pavilions, an ice skating rink, and the world's largest atrium casino with 500 tables and 1,600 slot machines. The complex is topped by a 340m-long SkyPark with a capacity of 3,900 people and a 150m infinity swimming pool, set on top of the world's largest public cantilevered platform, which overhangs the north tower by 67m. The 20-hectare resort was designed by Moshe Safdie Architects.[5][6][7] The local architect of record was Aedas Singapore, and engineering was provided by Arup and Parsons Brinkerhoff (MEP). The main contractor was Ssangyong Engineering and Construction.
Originally set to open in 2009, Las Vegas Sands faced delays caused by escalating costs of material and labour shortages from the onset. The severe global financial crisis also pressured the company to delay its projects elsewhere to complete the integrated resort. Although Marina Bay Sands has been compared on scale and development costs to MGM's CityCenter, the latter is a mixed-use development, with condominium properties (comprising three of the seven main structures) being sold off.
The resort was officially opened with a two-day celebration on 23 June 2010 at 3.18 pm, after a partial opening (which included the casino) on 27 April 2010.The SkyPark opened a day later on 24 June 2010. The theatres were completed in time for the first performance by Riverdance on 30 November 2010. The indoor skating rink, which uses artificial ice, opened to a performance by Michelle Kwan on 18 December 2010. The ArtScience Museum opened to the public and the debut of a 13-minute light, laser and water spectacle called Wonder Full on 19 February 2011 marked the full completion of the entire Integrated Resort.
The grand opening of Marina Bay Sands was held on 17 February 2011. It also marked the opening of the seven celebrity chef restaurants. The highly-anticipated Broadway musical The Lion King debuted on 3 March 2011. The last portion of the Marina Bay Sands, the floating pavilions, were finally opened to the public when the two tenants (Louis Vuitton and Pangaea Club) opened on 18 September 2011 and 22 September 2011 respectively.
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Architecture. Pittsburgh PA. May/2016
Pittsburgh (/ˈpɪtsbərɡ/ PITS-burg) is the second largest city in the Commonwealth of Pennsylvania, and the county seat ofAllegheny County. The Combined Statistical Area (CSA) population of 2,659,937 is the largest in both the Ohio Valley andAppalachia and the 20th-largest in the U.S. Located at the confluence of the Allegheny and Monongahela rivers, which form the Ohio River, Pittsburgh is known as both "the Steel City" for its more than 300 steel-related businesses, and as "the City of Bridges for its 446 bridges. The city features 30 skyscrapers, two inclines, a pre-revolutionary fortification and the Point State Park at the confluence of the rivers. The city developed as a vital link of the Atlantic coast and Midwest. The mineral-richAllegheny Mountains made the area coveted by the French and British Empires, Virginia, Whiskey Rebels, Civil War raiders, and media networks.
Aside from steel, Pittsburgh has led in manufacturing of aluminum, glass, shipbuilding, petroleum, foods, sports, transportation,computing, autos, and electronics.For much of the 20th century, Pittsburgh was behind only New York and Chicago in corporate headquarters employment, and second to New York in bank assets; it had the most U.S. stockholders per capita.[6]America's 1980s deindustrialization laid off area blue-collar workers and thousands of downtown white-collar workers when the longtime Pittsburgh-based world headquarters of Gulf Oil, Sunbeam, Rockwell and Westinghouse moved out.This heritage left the area with renowned museums, medical centers,[8] parks, research centers, libraries, a diverse cultural district and the most bars per capita in the U.S.] In 2015, Pittsburgh was listed among the "eleven most livable cities in the world.
Google, Apple, Bosch, Disney, Uber, Intel and IBM are among 1,600 technology firms generating $20.7 billion in annual Pittsburgh payrolls. The area has served also as the long-time federal agency headquarters for cyber defense, software engineering, robotics, energy research and the nuclear navy. The area is home to 68 colleges and universities, includingresearch and development leaders Carnegie Mellon University and the University of Pittsburgh. The nation's fifth-largest bank, eight Fortune 500 companies, and six of the top 300 US law firms make their global headquarters in the Pittsburgh area, while RAND, BNY Mellon, Nova, FedEx, Bayer and NIOSH have regional bases that helped Pittsburgh become the sixth-best area for U.S. job growth.
Pittsburgh, também por vezes escrita em português como Pitsburgo ou Pittsburgo, é a segunda cidade mais populosado estado americano da Pensilvânia, atrás apenas da cidade de Filadélfia. Pittsburgh está localizada no sudoeste do estado, sendo a sede do Condado de Allegheny.
No final do século XIX, e isto até meados da década de 1960, Pittsburgh foi o maior pólo siderúgico e o maior produtor de aço do mundo. De fato, o cognome de Pittsburgh é "Cidade do Aço". Por causa das siderúrgicas instaladas na região - altamente poluidoras - Pittsburgh também foi cognomeada por alguns como "Cidade Enfumaçada". Porém, a maior parte das siderúrgicas - que passaram a enfrentar a concorrência cada vez maior de siderúrgicas estrangeiras - fecharam ou saíram da cidade. Em seu lugar, vieram indústrias de alta tecnologia, especialmente biotecnologia e robóticas, levando Pittsburgh a ser cognomeada pela Wall Street Journal como Roboburgh. Pittsburgh é uma das maiores produtoras de equipamentos robóticos do mundo, fora do Japão.
Pittsburgh é um centro importante de fundações e organizações de caridade e filantrópicas, como a Heinz Foundation, que tem uma longa história de apoio a actividades culturais e artísticas, que fizeram de Pittsburgh um pólo artístico e cultural no país. Além disso, Pittsburgh é um importante pólo de educação superior dos Estados Unidos, especialmente na área da medicina.
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Lisbon Portuguese: Lisboa, is the capital and the largest city of Portugal, with a population of 552,700 within its administrative limits in an area of 100.05 km². Its urban area extends beyond the city's administrative limits with a population of around 2.7 million people, being the 11th-most populous urban area in the European Union. About 2.8 million people live in the Lisbon Metropolitan Area (which represents approximately 27% of the country's population). It is continental Europe's westernmost capital city and the only one along the Atlantic coast. Lisbon lies in the western Iberian Peninsula on the Atlantic Ocean and the River Tagus. The westernmost areas of its metro area is the westernmost point of Continental Europe.
Lisbon is recognised as a global city because of its importance in finance, commerce, media, entertainment, arts, international trade, education and tourism. It is one of the major economic centres on the continent, with a growing financial sector and one of the largest container ports on Europe's Atlantic coast. Lisbon Portela Airport serves over 20 million passengers annually, as of 2015, and the motorway network and the high-speed rail system of Alfa Pendular link the main cities of Portugal. The city is the 7th-most-visited city in Southern Europe, after Istanbul, Rome, Barcelona, Madrid, Athens and Milan, with 1,740,000 tourists in 2009. The Lisbon region contributes with a higher GDP PPP per capita than any other region in Portugal. It also ranks as the 10th highest GDP of metropolitan areas in the EU amounting to 110 billion euros and thus €39,375 per capita, 40% higher than the average European Union's GDP per capita. The city occupies 32nd place of highest gross earnings in the world. Most of the headquarters of multinationals in the country are located in the Lisbon area. It is also the political centre of the country, as its seat of Government and residence of the Head of State.
Lisbon is one of the oldest cities in the world, and the oldest in Western Europe, predating other modern European capitals such as London, Paris and Rome by centuries. Julius Caesar made it a municipium called Felicitas Julia, adding to the name Olissipo. Ruled by a series of Germanic tribes from the 5th century, it was captured by the Moors in the 8th century. In 1147, the Crusaders under Afonso Henriques reconquered the city and since then it has been a major political, economic and cultural centre of Portugal. Unlike most capital cities, Lisbon's status as the capital of Portugal has never been granted or confirmed officially – by statute or in written form. Its position as the capital has formed through constitutional convention, making its position as de facto capital a part of the Constitution of Portugal.
Lisbon enjoys a Mediterranean climate. Among all the metropoleis in Europe, it has the warmest winters, with average temperatures 15 °C (59 °F) during the day and 8 °C (46 °F) at night from December to February. The typical summer season lasts about six months, from May to October, although also in April temperatures sometimes reach around 25 °C (77.0 °F).
Canisbay Parish Church is a Church of Scotland church in Canisbay, Scotland, that dates back to the early 1600s and is the most northernly church on mainland Britain. It is a Category A listed building. It is surrounded by a large cemetery, which is split into two sections, the new and old. It features a square bell tower, nave and a porch. The porch was added in 1891, when the other extensions and work was completed to the church building.
The church was rebuilt in the 17th century, and ancient remains were discovered after a wall collapsed in the cemetery. Jan De Groot, the man who founded John o' Groats, is buried in Canisbay cemetery; his tombstone sits in the church building and is a popular tourist attraction when the building is open for visitors every summer. The book Lest We Forget: The Parish of Canisbay (1996) is a "miscellany of memories written by parishioners and friends so that future generations can know what made Canisbay a very special place".
Between 1959 and 2001 Queen Elizabeth the Queen Mother was a regular worshipper at the church during her periods of residence, usually in late summer each year, at the nearby Castle of Mey, which she owned.
Canisbay is a rural hamlet located about one mile (1.5 kilometres) southwest of Huna and two and a half miles (four kilometres) southwest of John o' Groats in Caithness, Scottish Highlands, and is in the Scottish council area of Highland. It lies on the A836 coast road, which bypasses the hamlet to the north.
It is home to Canisbay Primary School, a Village Hall, Medical Practice, and two Churches, one of which was the church used by Charles III. The Church is also the burial place of Jean De Groot, the ferryman after which John o' Groats is named.
The Parish of Canisbay includes John o' Groats, Upper and Lower Gills, Huna and Freswick.
Canisbay Juniors are the "feeder" team to John o' Groats FC with many of the key first team players having played for the side at one time. They play in the youth development leagues in Caithness where they enter teams at all age groups. It is also home to Canisbay Rifle club, who regularly compete in the Caithness Rifle Leagues.
The Canisbay Show is the local agricultural and crafts show held mid-June each year in the park behind the village hall, with the JCB competition, the karate display and mainly the Beer Tent being the big attractions.
The Highlands is a historical region of Scotland. Culturally, the Highlands and the Lowlands diverged from the Late Middle Ages into the modern period, when Lowland Scots language replaced Scottish Gaelic throughout most of the Lowlands. The term is also used for the area north and west of the Highland Boundary Fault, although the exact boundaries are not clearly defined, particularly to the east. The Great Glen divides the Grampian Mountains to the southeast from the Northwest Highlands. The Scottish Gaelic name of A' Ghàidhealtachd literally means "the place of the Gaels" and traditionally, from a Gaelic-speaking point of view, includes both the Western Isles and the Highlands.
The area is very sparsely populated, with many mountain ranges dominating the region, and includes the highest mountain in the British Isles, Ben Nevis. During the 18th and early 19th centuries the population of the Highlands rose to around 300,000, but from c. 1841 and for the next 160 years, the natural increase in population was exceeded by emigration (mostly to Canada, the United States, Australia and New Zealand, and migration to the industrial cities of Scotland and England.) and passim The area is now one of the most sparsely populated in Europe. At 9.1/km2 (24/sq mi) in 2012, the population density in the Highlands and Islands is less than one seventh of Scotland's as a whole.
The Highland Council is the administrative body for much of the Highlands, with its administrative centre at Inverness. However, the Highlands also includes parts of the council areas of Aberdeenshire, Angus, Argyll and Bute, Moray, North Ayrshire, Perth and Kinross, Stirling and West Dunbartonshire.
The Scottish Highlands is the only area in the British Isles to have the taiga biome as it features concentrated populations of Scots pine forest: see Caledonian Forest. It is the most mountainous part of the United Kingdom.
Between the 15th century and the mid-20th century, the area differed from most of the Lowlands in terms of language. In Scottish Gaelic, the region is known as the Gàidhealtachd, because it was traditionally the Gaelic-speaking part of Scotland, although the language is now largely confined to The Hebrides. The terms are sometimes used interchangeably but have different meanings in their respective languages. Scottish English (in its Highland form) is the predominant language of the area today, though Highland English has been influenced by Gaelic speech to a significant extent. Historically, the "Highland line" distinguished the two Scottish cultures. While the Highland line broadly followed the geography of the Grampians in the south, it continued in the north, cutting off the north-eastern areas, that is Eastern Caithness, Orkney and Shetland, from the more Gaelic Highlands and Hebrides.
Historically, the major social unit of the Highlands was the clan. Scottish kings, particularly James VI, saw clans as a challenge to their authority; the Highlands was seen by many as a lawless region. The Scots of the Lowlands viewed the Highlanders as backward and more "Irish". The Highlands were seen as the overspill of Gaelic Ireland. They made this distinction by separating Germanic "Scots" English and the Gaelic by renaming it "Erse" a play on Eire. Following the Union of the Crowns, James VI had the military strength to back up any attempts to impose some control. The result was, in 1609, the Statutes of Iona which started the process of integrating clan leaders into Scottish society. The gradual changes continued into the 19th century, as clan chiefs thought of themselves less as patriarchal leaders of their people and more as commercial landlords. The first effect on the clansmen who were their tenants was the change to rents being payable in money rather than in kind. Later, rents were increased as Highland landowners sought to increase their income. This was followed, mostly in the period 1760–1850, by agricultural improvement that often (particularly in the Western Highlands) involved clearance of the population to make way for large scale sheep farms. Displaced tenants were set up in crofting communities in the process. The crofts were intended not to provide all the needs of their occupiers; they were expected to work in other industries such as kelping and fishing. Crofters came to rely substantially on seasonal migrant work, particularly in the Lowlands. This gave impetus to the learning of English, which was seen by many rural Gaelic speakers to be the essential "language of work".
Older historiography attributes the collapse of the clan system to the aftermath of the Jacobite risings. This is now thought less influential by historians. Following the Jacobite rising of 1745 the British government enacted a series of laws to try to suppress the clan system, including bans on the bearing of arms and the wearing of tartan, and limitations on the activities of the Scottish Episcopal Church. Most of this legislation was repealed by the end of the 18th century as the Jacobite threat subsided. There was soon a rehabilitation of Highland culture. Tartan was adopted for Highland regiments in the British Army, which poor Highlanders joined in large numbers in the era of the Revolutionary and Napoleonic Wars (1790–1815). Tartan had largely been abandoned by the ordinary people of the region, but in the 1820s, tartan and the kilt were adopted by members of the social elite, not just in Scotland, but across Europe. The international craze for tartan, and for idealising a romanticised Highlands, was set off by the Ossian cycle, and further popularised by the works of Walter Scott. His "staging" of the visit of King George IV to Scotland in 1822 and the king's wearing of tartan resulted in a massive upsurge in demand for kilts and tartans that could not be met by the Scottish woollen industry. Individual clan tartans were largely designated in this period and they became a major symbol of Scottish identity. This "Highlandism", by which all of Scotland was identified with the culture of the Highlands, was cemented by Queen Victoria's interest in the country, her adoption of Balmoral as a major royal retreat, and her interest in "tartenry".
Recurrent famine affected the Highlands for much of its history, with significant instances as late as 1817 in the Eastern Highlands and the early 1850s in the West. Over the 18th century, the region had developed a trade of black cattle into Lowland markets, and this was balanced by imports of meal into the area. There was a critical reliance on this trade to provide sufficient food, and it is seen as an essential prerequisite for the population growth that started in the 18th century. Most of the Highlands, particularly in the North and West was short of the arable land that was essential for the mixed, run rig based, communal farming that existed before agricultural improvement was introduced into the region.[a] Between the 1760s and the 1830s there was a substantial trade in unlicensed whisky that had been distilled in the Highlands. Lowland distillers (who were not able to avoid the heavy taxation of this product) complained that Highland whisky made up more than half the market. The development of the cattle trade is taken as evidence that the pre-improvement Highlands was not an immutable system, but did exploit the economic opportunities that came its way. The illicit whisky trade demonstrates the entrepreneurial ability of the peasant classes.
Agricultural improvement reached the Highlands mostly over the period 1760 to 1850. Agricultural advisors, factors, land surveyors and others educated in the thinking of Adam Smith were keen to put into practice the new ideas taught in Scottish universities. Highland landowners, many of whom were burdened with chronic debts, were generally receptive to the advice they offered and keen to increase the income from their land. In the East and South the resulting change was similar to that in the Lowlands, with the creation of larger farms with single tenants, enclosure of the old run rig fields, introduction of new crops (such as turnips), land drainage and, as a consequence of all this, eviction, as part of the Highland clearances, of many tenants and cottars. Some of those cleared found employment on the new, larger farms, others moved to the accessible towns of the Lowlands.
In the West and North, evicted tenants were usually given tenancies in newly created crofting communities, while their former holdings were converted into large sheep farms. Sheep farmers could pay substantially higher rents than the run rig farmers and were much less prone to falling into arrears. Each croft was limited in size so that the tenants would have to find work elsewhere. The major alternatives were fishing and the kelp industry. Landlords took control of the kelp shores, deducting the wages earned by their tenants from the rent due and retaining the large profits that could be earned at the high prices paid for the processed product during the Napoleonic wars.
When the Napoleonic wars finished in 1815, the Highland industries were affected by the return to a peacetime economy. The price of black cattle fell, nearly halving between 1810 and the 1830s. Kelp prices had peaked in 1810, but reduced from £9 a ton in 1823 to £3 13s 4d a ton in 1828. Wool prices were also badly affected. This worsened the financial problems of debt-encumbered landlords. Then, in 1846, potato blight arrived in the Highlands, wiping out the essential subsistence crop for the overcrowded crofting communities. As the famine struck, the government made clear to landlords that it was their responsibility to provide famine relief for their tenants. The result of the economic downturn had been that a large proportion of Highland estates were sold in the first half of the 19th century. T M Devine points out that in the region most affected by the potato famine, by 1846, 70 per cent of the landowners were new purchasers who had not owned Highland property before 1800. More landlords were obliged to sell due to the cost of famine relief. Those who were protected from the worst of the crisis were those with extensive rental income from sheep farms. Government loans were made available for drainage works, road building and other improvements and many crofters became temporary migrants – taking work in the Lowlands. When the potato famine ceased in 1856, this established a pattern of more extensive working away from the Highlands.
The unequal concentration of land ownership remained an emotional and controversial subject, of enormous importance to the Highland economy, and eventually became a cornerstone of liberal radicalism. The poor crofters were politically powerless, and many of them turned to religion. They embraced the popularly oriented, fervently evangelical Presbyterian revival after 1800. Most joined the breakaway "Free Church" after 1843. This evangelical movement was led by lay preachers who themselves came from the lower strata, and whose preaching was implicitly critical of the established order. The religious change energised the crofters and separated them from the landlords; it helped prepare them for their successful and violent challenge to the landlords in the 1880s through the Highland Land League. Violence erupted, starting on the Isle of Skye, when Highland landlords cleared their lands for sheep and deer parks. It was quietened when the government stepped in, passing the Crofters' Holdings (Scotland) Act, 1886 to reduce rents, guarantee fixity of tenure, and break up large estates to provide crofts for the homeless. This contrasted with the Irish Land War underway at the same time, where the Irish were intensely politicised through roots in Irish nationalism, while political dimensions were limited. In 1885 three Independent Crofter candidates were elected to Parliament, which listened to their pleas. The results included explicit security for the Scottish smallholders in the "crofting counties"; the legal right to bequeath tenancies to descendants; and the creation of a Crofting Commission. The Crofters as a political movement faded away by 1892, and the Liberal Party gained their votes.
Today, the Highlands are the largest of Scotland's whisky producing regions; the relevant area runs from Orkney to the Isle of Arran in the south and includes the northern isles and much of Inner and Outer Hebrides, Argyll, Stirlingshire, Arran, as well as sections of Perthshire and Aberdeenshire. (Other sources treat The Islands, except Islay, as a separate whisky producing region.) This massive area has over 30 distilleries, or 47 when the Islands sub-region is included in the count. According to one source, the top five are The Macallan, Glenfiddich, Aberlour, Glenfarclas and Balvenie. While Speyside is geographically within the Highlands, that region is specified as distinct in terms of whisky productions. Speyside single malt whiskies are produced by about 50 distilleries.
According to Visit Scotland, Highlands whisky is "fruity, sweet, spicy, malty". Another review states that Northern Highlands single malt is "sweet and full-bodied", the Eastern Highlands and Southern Highlands whiskies tend to be "lighter in texture" while the distilleries in the Western Highlands produce single malts with a "much peatier influence".
The Scottish Reformation achieved partial success in the Highlands. Roman Catholicism remained strong in some areas, owing to remote locations and the efforts of Franciscan missionaries from Ireland, who regularly came to celebrate Mass. There remain significant Catholic strongholds within the Highlands and Islands such as Moidart and Morar on the mainland and South Uist and Barra in the southern Outer Hebrides. The remoteness of the region and the lack of a Gaelic-speaking clergy undermined the missionary efforts of the established church. The later 18th century saw somewhat greater success, owing to the efforts of the SSPCK missionaries and to the disruption of traditional society after the Battle of Culloden in 1746. In the 19th century, the evangelical Free Churches, which were more accepting of Gaelic language and culture, grew rapidly, appealing much more strongly than did the established church.
For the most part, however, the Highlands are considered predominantly Protestant, belonging to the Church of Scotland. In contrast to the Catholic southern islands, the northern Outer Hebrides islands (Lewis, Harris and North Uist) have an exceptionally high proportion of their population belonging to the Protestant Free Church of Scotland or the Free Presbyterian Church of Scotland. The Outer Hebrides have been described as the last bastion of Calvinism in Britain and the Sabbath remains widely observed. Inverness and the surrounding area has a majority Protestant population, with most locals belonging to either The Kirk or the Free Church of Scotland. The church maintains a noticeable presence within the area, with church attendance notably higher than in other parts of Scotland. Religion continues to play an important role in Highland culture, with Sabbath observance still widely practised, particularly in the Hebrides.
In traditional Scottish geography, the Highlands refers to that part of Scotland north-west of the Highland Boundary Fault, which crosses mainland Scotland in a near-straight line from Helensburgh to Stonehaven. However the flat coastal lands that occupy parts of the counties of Nairnshire, Morayshire, Banffshire and Aberdeenshire are often excluded as they do not share the distinctive geographical and cultural features of the rest of the Highlands. The north-east of Caithness, as well as Orkney and Shetland, are also often excluded from the Highlands, although the Hebrides are usually included. The Highland area, as so defined, differed from the Lowlands in language and tradition, having preserved Gaelic speech and customs centuries after the anglicisation of the latter; this led to a growing perception of a divide, with the cultural distinction between Highlander and Lowlander first noted towards the end of the 14th century. In Aberdeenshire, the boundary between the Highlands and the Lowlands is not well defined. There is a stone beside the A93 road near the village of Dinnet on Royal Deeside which states 'You are now in the Highlands', although there are areas of Highland character to the east of this point.
A much wider definition of the Highlands is that used by the Scotch whisky industry. Highland single malts are produced at distilleries north of an imaginary line between Dundee and Greenock, thus including all of Aberdeenshire and Angus.
Inverness is regarded as the Capital of the Highlands, although less so in the Highland parts of Aberdeenshire, Angus, Perthshire and Stirlingshire which look more to Aberdeen, Dundee, Perth, and Stirling as their commercial centres.
The Highland Council area, created as one of the local government regions of Scotland, has been a unitary council area since 1996. The council area excludes a large area of the southern and eastern Highlands, and the Western Isles, but includes Caithness. Highlands is sometimes used, however, as a name for the council area, as in the former Highlands and Islands Fire and Rescue Service. Northern is also used to refer to the area, as in the former Northern Constabulary. These former bodies both covered the Highland council area and the island council areas of Orkney, Shetland and the Western Isles.
Much of the Highlands area overlaps the Highlands and Islands area. An electoral region called Highlands and Islands is used in elections to the Scottish Parliament: this area includes Orkney and Shetland, as well as the Highland Council local government area, the Western Isles and most of the Argyll and Bute and Moray local government areas. Highlands and Islands has, however, different meanings in different contexts. It means Highland (the local government area), Orkney, Shetland, and the Western Isles in Highlands and Islands Fire and Rescue Service. Northern, as in Northern Constabulary, refers to the same area as that covered by the fire and rescue service.
There have been trackways from the Lowlands to the Highlands since prehistoric times. Many traverse the Mounth, a spur of mountainous land that extends from the higher inland range to the North Sea slightly north of Stonehaven. The most well-known and historically important trackways are the Causey Mounth, Elsick Mounth, Cryne Corse Mounth and Cairnamounth.
Although most of the Highlands is geographically on the British mainland, it is somewhat less accessible than the rest of Britain; thus most UK couriers categorise it separately, alongside Northern Ireland, the Isle of Man, and other offshore islands. They thus charge additional fees for delivery to the Highlands, or exclude the area entirely. While the physical remoteness from the largest population centres inevitably leads to higher transit cost, there is confusion and consternation over the scale of the fees charged and the effectiveness of their communication, and the use of the word Mainland in their justification. Since the charges are often based on postcode areas, many far less remote areas, including some which are traditionally considered part of the lowlands, are also subject to these charges. Royal Mail is the only delivery network bound by a Universal Service Obligation to charge a uniform tariff across the UK. This, however, applies only to mail items and not larger packages which are dealt with by its Parcelforce division.
The Highlands lie to the north and west of the Highland Boundary Fault, which runs from Arran to Stonehaven. This part of Scotland is largely composed of ancient rocks from the Cambrian and Precambrian periods which were uplifted during the later Caledonian Orogeny. Smaller formations of Lewisian gneiss in the northwest are up to 3 billion years old. The overlying rocks of the Torridon Sandstone form mountains in the Torridon Hills such as Liathach and Beinn Eighe in Wester Ross.
These foundations are interspersed with many igneous intrusions of a more recent age, the remnants of which have formed mountain massifs such as the Cairngorms and the Cuillin of Skye. A significant exception to the above are the fossil-bearing beds of Old Red Sandstone found principally along the Moray Firth coast and partially down the Highland Boundary Fault. The Jurassic beds found in isolated locations on Skye and Applecross reflect the complex underlying geology. They are the original source of much North Sea oil. The Great Glen is formed along a transform fault which divides the Grampian Mountains to the southeast from the Northwest Highlands.
The entire region was covered by ice sheets during the Pleistocene ice ages, save perhaps for a few nunataks. The complex geomorphology includes incised valleys and lochs carved by the action of mountain streams and ice, and a topography of irregularly distributed mountains whose summits have similar heights above sea-level, but whose bases depend upon the amount of denudation to which the plateau has been subjected in various places.
Climate
The region is much warmer than other areas at similar latitudes (such as Kamchatka in Russia, or Labrador in Canada) because of the Gulf Stream making it cool, damp and temperate. The Köppen climate classification is "Cfb" at low altitudes, then becoming "Cfc", "Dfc" and "ET" at higher altitudes.
Places of interest
An Teallach
Aonach Mòr (Nevis Range ski centre)
Arrochar Alps
Balmoral Castle
Balquhidder
Battlefield of Culloden
Beinn Alligin
Beinn Eighe
Ben Cruachan hydro-electric power station
Ben Lomond
Ben Macdui (second highest mountain in Scotland and UK)
Ben Nevis (highest mountain in Scotland and UK)
Cairngorms National Park
Cairngorm Ski centre near Aviemore
Cairngorm Mountains
Caledonian Canal
Cape Wrath
Carrick Castle
Castle Stalker
Castle Tioram
Chanonry Point
Conic Hill
Culloden Moor
Dunadd
Duart Castle
Durness
Eilean Donan
Fingal's Cave (Staffa)
Fort George
Glen Coe
Glen Etive
Glen Kinglas
Glen Lyon
Glen Orchy
Glenshee Ski Centre
Glen Shiel
Glen Spean
Glenfinnan (and its railway station and viaduct)
Grampian Mountains
Hebrides
Highland Folk Museum – The first open-air museum in the UK.
Highland Wildlife Park
Inveraray Castle
Inveraray Jail
Inverness Castle
Inverewe Garden
Iona Abbey
Isle of Staffa
Kilchurn Castle
Kilmartin Glen
Liathach
Lecht Ski Centre
Loch Alsh
Loch Ard
Loch Awe
Loch Assynt
Loch Earn
Loch Etive
Loch Fyne
Loch Goil
Loch Katrine
Loch Leven
Loch Linnhe
Loch Lochy
Loch Lomond
Loch Lomond and the Trossachs National Park
Loch Lubnaig
Loch Maree
Loch Morar
Loch Morlich
Loch Ness
Loch Nevis
Loch Rannoch
Loch Tay
Lochranza
Luss
Meall a' Bhuiridh (Glencoe Ski Centre)
Scottish Sea Life Sanctuary at Loch Creran
Rannoch Moor
Red Cuillin
Rest and Be Thankful stretch of A83
River Carron, Wester Ross
River Spey
River Tay
Ross and Cromarty
Smoo Cave
Stob Coire a' Chàirn
Stac Polly
Strathspey Railway
Sutherland
Tor Castle
Torridon Hills
Urquhart Castle
West Highland Line (scenic railway)
West Highland Way (Long-distance footpath)
Wester Ross
The Green Revolution brought us drastic increases in food productivity. Yet critics of industrial farming argue that it destroys biodiversity as well as harming environmental and human health. So can sustainable farming methods actually produce the yields necessary for our growing populations? Doesn’t agribusiness have a crucial role to play too, as it makes substantial efforts to improve productivity while tackling sustainability?
Moderator:
Astrid S. Tuminez, Regional Director, Legal and Corporate Affairs (Southeast Asia), Microsoft and Adjunct Professor, Lee Kuan Yew School of Public Policy, National University of Singapore
Speakers:
Anne Roulin, Global R&D Sustainability Manager, Nestlé
Silvia Taurozzi, Global Advisor and former Senior Vice President & Senior Platform Head Proteins & Other Tropicals of Louis Dreyfus Commodities (LDC); Member of the Jury of the Cartier Women’s Initiative Awards
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STUDLY MUSCLE HUNK ! photographed by ADDA DADA at the CASTRO STREET FAIR 2021 ! (safe photo)
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SWEET SMILING STUD ! photographed by ADDA DADA
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•🔹•THANK YOU for visiting my virtual art gallery! Enjoy my original 'social documentary' photographs of various events !
•🔹•
•🔹• ADDA DADA's photography presents a variety of adults at different public events . These photographs do NOT imply the person's sexual orientation in any way. Everyone was asked and they consented to be photographed and posted
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•.🔹•The photographs are properly marked SAFE or RESTRICTED ( 18+ only / nudity). There are NO porn nor stolen photos !
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•.🔹•Viewers should be aware that these photographs are viewed by a wide variety of folks . Inappropriate, negative, RUDE, 'X' or 'R' rated comments shall be removed forthwith & you will be blocked.
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Celebrating V day yesterday in Sub Club all were welcome to embrace all forms of sexuality, all genders, and treat them equally without segregation, fear, anger or disrespect.
Another experiment. Need a better wide angle lens. Did this with a 50mm Sigma f 1.4 lens. Really liking the detail. However 24mm up will start to show trailing. So I did a 20second exposure instead...wide open.
Around La Push
This drive-to beach is a beautiful spot to enjoy the surf and watch shorebirds, eagles and seals. The 1-1/4 mile trek north to “Hole-in-the-Wall” begins here. On the south side of the river is the Quileute Indian village of La Push and First Beach, a mile-long crescent known for surfing-size waves and great whale watch- ing, especially from February through April. The sound of crashing waves and an approaching winter storm provide the ideal natural soundtrack. First Beach is part of the 57 miles of wild coastline on the Olympic Peninsula, the longest such stretch outside of Alaska.
Kayakers, surfers and seals often add to the view. The hospitable community offers a marina from which fishing charters operate in season. Second Beach, just east of LaPush, is popular with photographers and is reached by way of a .7 mile forested trail that leads to a 2-mile long sandy stretch of beach with seastacks. Third Beach, is a mostly-level 1.5 mile trail through natural second growth forest, a result of winds up to 170 mph in January 1921. The “’21 Blow” leveled nearly 8 billion board feet of timber, enough to construct 600,000 3-bedroom homes.
In the fall, mushrooms flourish under the forest canopy on these trails. The Sol Duc Salmon Hatchery, 13 miles north of Forks, has interpretive displays, river access and picnic areas.
In the fall, adult fish can be seen in the trap located past the water-cooling tower toward West of Forks, visit Rialto Beach on the north side of the Quillayute River.
Source: www.olympicpeninsula.org/things-to-do/around-la-push
HISTORY
A-Ka-Lat or James Island
Thousands of winters before the arrival of the White Drifting-House people (ho-kwats), the Quileute Indians and the ghosts of their ancestors lived and hunted here. For as long as the ageless memory of legend recalls, the Quileutes flourished in the territory which originally stretched from their isle-strewn Pacific beaches along the rain forest rivers to the glaciers of Mt. Olympus. Today, Quileutes need only lift their eyes to see the burial place of chiefs atop James Island, or A-Ka-Lat — translated as “Top of the Rock”. This sense of cultural continuity is their birthright and heritage. Though much has changed, Quileute elders remember “back in the days” when the “old people” dared challenge kwalla, the mighty whale, and who recounted the exploits of wily raven or bayak, who placed the sun in the sky.
According to their ancient creation story, the Quileutes were changed from wolves by a wandering Transformer. By legend, their only kindred, the Chimakum Tribe, were washed away by flood and deposited near present-day Port Townsend (where they lived until Chief Seattle’s Suquamish Tribe wiped them out in the 1860s), leaving the Quileutes with no known relatives on earth. Quileutes were thus were surrounded by unrelated tribes, the Makah — Nuh-Chul-Nuth who migrated down from the west coast of Vancouver Island; S’Klallam to the northeast along the Strait of Juan de Fuca; and Quinault, south at Taholah, both descended from the Salishan. Relations with these groups allowed trade, intermarriage of nobility, and the ostentatious ceremony — the potlatch — an honoring giveaway celebration and redistribution of wealth. Occasionally, however, controversy over trespassing caused outbursts of warfare or slave raiding.
Traditional Quileute life was representative of the complex cultural pattern that was common to indigenous people of the Northwest Coast region. Oriented to the ocean, they fished and hunted sea mammals, and were reputedly recognized as the best sealers on the coast. Their red cedar canoes were engineering masterworks ranging in size from two-person sport models to 58-foot ocean going freight canoes capable of hauling three tons. The graceful bow and flowing shear-lines of the hull were reportedly copied in the hull design of the American clipper ship — which became the fastest in the world for its time. In the early 1900s, a canoe similar to those used by the Quileutes was outfitted with a mast and sailed around the world. Quileute whaling canoes traveled as far north as Southeast Alaska and as far south as California.
Although no early totems survive, elegantly carved house posts decorated their immense cedar “big houses” ( a 600-foot potlatch house has been documented on the Olympic Peninsula). The Quileutes bred special woolly-haired dogs and spun their hair into yarn for highly prized blankets. Rain proof skirts and capes, woven from the soft inner bark of the cedar, and conical rainhats provided protection from the 115 inches of rainfall that annually drenches Quileute country. The Quileutes also wove numerous types of baskets, some so fine and watertight that they served as kettles for boiling water or stew. Clothing, weaponry, paints and dyes, and tools and utensils were all made from natural materials found near at hand, or traded from neighboring tribes. Surface copper made it way south from British Columbia over these trade routes and iron was not unknown, possibly carried by the Japanese Current from Asia to Quileute beaches in derelict junks or other ships.
Quileute society generated from “house groups”, made up of all those who occupied during winter months one of the big houses at the mouths of the Quillayute or Hoh rivers, or Goodman Creek. Each house had a chief, those in line of chiefdom (nobility) and commoners. Thus kinship and blood relationships determined much of the early structure of tribal government. The house group may also have included a number of slaves, either captured or traded from neighboring tribes. During the summer months, these large units would fragment into families, some of whom moved upriver to hunting camps.
From cradle-board to burial canoe, Quileutes relied upon the help and inspiration of supernatural powers. Youths sought their own taxilit (personal guardian power) on solitary spirit quests. Rituals such as the first salmon ceremony guaranteed the good will of the salmon spirits –each family taking the first salmon caught in the spring divided up the flesh and returned the head and bones to the river — assuring that the great fish would continue to fill the rivers each year and allow themselves to be caught. A terrifying array of monsters, such as Duskiya, the kelp-haired child snatcher, were also abroad in the area.
Quileute life also included time for relaxation and play. Winter evenings were spent in dramatic recounting of mythic ancestor stories of the days when the animals were still people. Gambling tournaments like stick games (slahal) and contests of strength (lifting greased beach boulders) and skill were common. Potlatches honoring extraordinary whale hunting, naming or special achievements involved the pageantry of masked dances, drumming and songs that were private property and are still passed down by Quileutes as a family inheritance. These great feasts validated family status, continued all hours for days, and “back in the days” sometimes for weeks long.
The defining element of this culture, the Quileute language, is still spoken by elders at LaPush. The basics are also taught at the Quileute Tribal School. It is a complex tongue typified by clicked sounds, epiglottal stops and tongue twisting strings of consonants with words that would run off the page, for example: “kitlayakwokwilkwolasstaxasalas” which means “those are the people who think that I am the one who is going to Forks”. Quileute is not, as some outsiders believe, composed of Chinook jargon or devoid of all abstract ideas. It has the distinction of being one of only five languages in the world that have no nasal sounds (no m or n). Quileute is also one of the few languages not known to be related to any other tongue. Quileute elders have supervised the compilation of a dictionary and instructional texts that are taught in the school.
Although European traders had previously made contact with Quileutes as early as the 1700s, the first official contacts were made in 1855 when the Quileutes signed a treaty (Treaty of Quinault River) with staff members of Washington Territory governor, Isaac Stevens. A year later, a Quileute delegation traveled to Olympia to sign a treaty (Treaty of Olympia) with the United States. According to that treaty, the Quileutes were to give up their lands and move to a reservation at Taholah. However, so remote was Quileute territory that there was little pressure to settle their lands. Finally on February 22, 1889, the same year Washington joined the Union as a state (November 11, 1889), an Executive Order by President Benjamin Harrison set up a one-square mile reservation at LaPush with 252 inhabitants. Four years later, the 71 members of the Hoh River band of Quileutes were provided with a separate reservation. In the treaties the Quileutes reserved their hunting, fishing and gathering rights in their “usual and accustomed places” and were promised health, education and job training in exchange for over 800,000 acres of ancient virgin timber teeming with fish and wildlife in both the Quillayute River basin and in offshore waters.
La Push received its name from traders using Chinook jargon for river mouth (a corruption of the French “la bouche”). In 1882, European culture was brought to the village in the form of schoolteacher A.W. Smith and his school. He set about renaming Quileutes from the Bible (Esau, Sarah, Christian), and American history (William Penn, Henry Hudson, Andrew Jackson, etc.) as well as anglicizing Quileute names (Buckety Mason, California Hobucket). In 1889, all 26 houses at LaPush were burned to the ground by a settler who had wrongly claimed the land. The fire devastated the last carved masks, baskets, hunting equipment and sacred regalia from pre-contact days, except for what may have been relocated to museums or private collections.
The Constitution and By-Laws of the Quileute Tribe (1936) and their Corporate Charter issued by the Secretary of the Interior in 1937, recognized and established the sovereignty of the Quileute people as a self-governing political unit within the United States. The Tribal Council consists of five members, elected to staggered three-year terms and constitutes the governing body of the Tribe.
In 1974 under US v. Washington (Boldt Decision), the United States District Court affirmed the tribes’ treaty fishing rights “in common” with the citizens of Washington State. The decision designated 50 percent of the fishery to the tribes and provided for co-management of fishing and eventually shellfish resources. (This case was not closed; it has been left open for continuing sub-proceedings to further refine tribal fishing rights under the treaties.)
James Island or Akalat (Top of the Rock) figures prominently in the history of the Quileute people — from documented oral accounts, ethnography, ethnohistory and archeology. A natural fortress, the island was the location of a fortified village in 1788 when first described in Meares’ written accounts, and this defensive function was maintained into the second half of 1800s. Evidence of habitation in this area comparable to the Ozette site goes back 8000-9000 years, possibly longer. James Island is also known as a source of spirit power for the Quileute people and a place where high-status individuals were placed in canoes in the trees after death. In the second half of the 1800s, the island was used as a garden where potatoes and possibly other root crops were grown and stored in cellars. The viewpoint provided by the 160-foot high rock was ideally suited for sighting whales. It was a natural lookout to defend the village against occasionally hostile neighbors. In view of all of these and other uses as well, it is not surprising that the cultural resources of James Island are profoundly significant in Quileute culture and group identity.
James Island and the village of LaPush also were important sites in World War II as part of the 13th Naval District’s Coastal Lookout System. Both the LaPush Lifeboat Station and the LaPush Beach Patrol Station were located within the village adjacent to James Island. Because James Island obstructs a full view of the horizon from the village, a lookout tower next to the Lifeboat Station house was complemented by a second lookout structure on the island.
During 1997 archeological reconnaissance of the island, evidence of former structures was found, including foundations remnants; pieces of a cable car system with tracks, winch and cable car. These overlie archeological shell midden deposits, evidence of previous village habitation.
Today the US Coast Guard operates a foghorn warning system and a lighting system that provides guidance for boats entering the harbor during night-time inclement weather. A well-maintained steel stairway exists for maintenance and the more adventurous hikers.
During the summer of 1997, James Island or Akalat was the site and symbol of the International Gathering at LaPush where 23 tribes from Washington and British Columbia paddled to celebrate the revival of the ocean-going canoe traditions of Northwest Indian coastal tribes.
For many Washington residents, Indian and non-Indian alike, James Island stands as a preeminent reminder of the extraordinary breathtaking beauty of our Pacific beaches.
Source: quileutenation.org/history/
BLOGGED: 07 Oct. 2008: www.counterspinyc.blogspot.com/\
New Yorkers Protest the US$850 BILLION Wall Street BAILOUT: Wall Street, NYC - September 25, 2008
Phototgrapher: a. golden, eyewash design - c. 2008.
This is actually a GOOD guy. See: billionairesforbush.com/index.php for more information.
Friends,
The richest 400 Americans -- that's right, just four-hundred people -- own MORE than the bottom 150 million Americans COMBINED! 400 of the wealthiest Americans have got more stashed away than half the entire country! Their combined net worth is $1.6 trillion. During the eight years of the Bush Administration, their wealth has increased by nearly $700 billion -- the same amount that they were demanding We give to them for the "bailout." Why don't they just spend the money they made under Bush to bail themselves out? They'd still have nearly a trillion dollars left over to spread amongst themselves!
Of course, they are not going to do that -- at least not voluntarily. George W. Bush was handed a $127 billion surplus when Bill Clinton left office. Because that money was OUR money and not HIS, he did what the rich prefer to do -- spend it and never look back. Now we have a $9.5 trillion debt that will take seven generations from which to recover. Why -- on --earth – did -- our -- "representatives" -- give -- these -- robber -- barons -- $US850 BILLION -- of – OUR -- money?
Last week, proposed my own bailout plan. My suggestions, listed below, were predicated on the singular and simple belief that the rich must pull themselves up by their own platinum bootstraps. Sorry, fellows, but you drilled it into our heads one too many times: THERE...IS...NO…FREE... LUNCH ~ PERIOD! And thank you for encouraging us to hate people on welfare! So, there should have been NO HANDOUTS FROM US TO YOU! Last Friday, after voting AGAINST this BAILOUT, in an unprecedented turn of events, the House FLIP-FLOPPED their "No" Vote & said "Yes", in a rush version of a "bailout" bill vote. IN SPITE OF THE PEOPLE'S OVERWHELMING DISAPPROVAL OF THIS BAILOUT BILL... IN SPITE OF MILLIONS OF CALLS FROM THE PEOPLE CRASHING WASHINGTON "representatives'" PHONE LINES...IN SPITE OF CRASHING OUR POLITICIAN'S WEBSITES...IN SPITE OF HUNDREDS OF THOUSANDS OF PEOPLE PROTESTING AROUND THE COUNTRY... THEY VOTED FOR THIS BAILOUT! The People first succeeded on Monday with the House, but failed do it with the Senate and then THE HOUSE TURNED ON US TOO!
It is clear, though, we cannot simply continue protesting without proposing exactly what it is we think THESE IDIOTS should/'ve do/one. So, after consulting with a number of people smarter than Phil Gramm, here’s the proposal, now known as "Mike's Rescue Plan." (From Michael Moore's Bailout Plan) It has 10 simple, straightforward points. They are that you DIDN'T, BUT SHOULD'VE:
1. APPOINTED A SPECIAL PROSECUTOR TO CRIMINALLY INDICT ANYONE ON WALL STREET WHO KNOWINGLY CONTRIBUTED TO THIS COLLAPSE. Before any new money was expended, Congress should have committed, by resolution, to CRIMINALLY PROSECUTE ANYONE who had ANYTHING to do with the attempted SACKING OF OUR ECONOMY. This means that anyone who committed insider trading, securities fraud or any action that helped bring about this collapse should have and MUST GO TO JAIL! This Congress SHOULD HAVE called for a Special Prosecutor who would vigorously go after everyone who created the mess, and anyone else who attempts to scam the public in future. (I like Elliot Spitzer ~ so, he played a little hanky-panky...Wall Street hates him & this is a GOOD thing.)
2. THE RICH SHOULD HAVE PAID FOR THEIR OWN BAILOUT! They may have to live in 5 houses instead of 7. They may have to drive 9 cars instead of 13. The chef for their mini-terriers may have to be reassigned. But there is no way in hell, after forcing family incomes to go down more than $2,000 dollars during the Bush years, that working people and the middle class should have to fork over one dime to underwrite the next yacht purchase.
If they truly needed the $850 billion they say they needed, well, here is an easy way they could have raised it:
a) Every couple makeing over a million dollars a year and every single taxpayer who makes over $500,000 a year should pay a 10% surcharge tax for five years. (It's the Senator Sanders plan. He's like Colonel Sanders, only he's out to fry the right chickens.) That means the rich would have still been paying less income tax than when Carter was president. That would have raise a total of $300 billion.
b) Like nearly every other democracy, they should have charged a 0.25% tax on every stock transaction. This would have raised more than $200 billion in a year.
c) Because every stockholder is a patriotic American, stockholders should have forgone receiving a dividend check for ONE quarter and instead this money would have gone the treasury to help pay for the bullsh*t bailout.
d) 25% of major U.S. corporations currently pay NO federal income tax. Federal corporate tax revenues currently amount to 1.7% of the GDP compared to 5% in the 1950s. If we raised the corporate income tax BACK to the levels of the 1950s, this would give us an extra $500 billion.
All of this combined should have been enough to end the calamity. The rich would have gotten to keep their mansions and their servants and our United States government ("COUNTRY FIRST!") would've have a little leftover to repair some roads, bridges and schools...
3. YOU SHOULD HAVE BAIL OUT THE PEOPLE LOSING THEIR HOMES, NOT THE PEOPLE WHO WILL BUILD AN EIGHTH HOME! There are 1.3 million homes in foreclosure right now. That is what is at the heart of this problem. So, instead of giving the money to the banks as a gift, they should have paid down each of these mortgages by $100,000. They should have forced the banks to renegotiate the mortgage so the homeowner could pay on its current value. To insure that this help wouldn't go to speculators and those who tried to making money by flipping houses, the bailout should have only been for people's primary residences. And, in return for the $100K pay-down on the existing mortgage, the government would have gotten to share in the holding of the mortgage so it could get some of its money back. Thus, the total initial cost of fixing the mortgage crisis at its roots (instead of with the greedy lenders) is $150 billion, not $850 BILLION.
And let's set the record straight. People who have defaulted on their mortgages are not "bad risks." They are our fellow Americans, and all they wanted was what we all want: a home to call their own. But, during the Bush years, millions of the People lost the decent paying jobs they had. SIX MILLION fell into poverty! SEVEN MILLION lost their health insurance! And, every one of them saw their real wages go DOWN by $2,000! Those who DARE look down on these Americans who got hit with one bad break after another should be ASHAMED.! We are a better, stronger, safer and happier society when all of our citizens can afford to live in a home they own.
4. THERE SHOULD HAVE BEEN A STIPULATION THAT IF YOUR BANK OR COMPANY GOT ANY OF OUR MONEY IN A "BAILOUT," THEN WE OWN YOU. Sorry, that's how it's done. If the bank gives me money so I can buy a house, the bank "owns" that house until I pay it all back -- with interest. Same deal for Wall Street. Whatever money you need to stay afloat, if our government considers you a safe risk -- and necessary for the good of the country -- then you can get a loan, but WE SHOULD OWN YOU. If you default, we will sell you. This is how the Swedish government did it and it worked.
5. ALL REGULATIONS SHOULD HAVE BEEN BE RESTORED. THE REAGAN REVOLUTION IS DEAD! This catastrophe happened because we let the fox have the keys to the hen-house. In 1999, Phil Gramm authored a bill to remove all the regulations that governed Wall Street and our banking system. The bill passed and Clinton signed it. Here's what Sen.Phil Gramm, McCain's chief economic advisor, said at the bill signing:
"In the 1930s ... it was believed that government was the answer. It was believed that stability and growth came from government overriding the functioning of free markets.
"We are here today to repeal [that] because we have learned that government is not the answer. We have learned that freedom and competition are the answers. We have learned that we promote economic growth and we promote stability by having competition and freedom.
"I am proud to be here because this is an important bill; it is a deregulatory bill. I believe that that is the wave of the future, and I am awfully proud to have been a part of making it a reality."
FOR THIS NOT TO REOCCUR, This BILL SHOULD HAVE BEEN REPEALED! Bill Clinton could have helped by leading the effort for the repeal of the Gramm bill and the reinstating of even tougher regulations regarding our financial institutions. And when they were done with that, they should have restored the regulations for the airlines, the inspection of our food, the oil industry, OSHA, and every other entity that affects our daily lives. All oversight provisions for any "bailout" should have had enforcement monies attached to them and criminal penalties for all offenders.
6. IF IT'S TOO BIG TO FAIL, THEN THAT MEANS IT'S TOO BIG TO EXIST! Allowing the creation of these mega-mergers and not enforcing the monopoly and anti-trust laws has allowed a number of financial institutions and corporations to become so large, the very thought of their collapse means an even bigger collapse across the entire economy. No ONE or TWO companies should EVER have this kind of power! The so-called "economic Pearl Harbor" can't happen when you have hundreds -- thousands -- of institutions where people have their money. When we have a dozen auto companies, if one goes belly-up, we DON'T FACE A NATIONAL DISASTER! If we have three separately-owned daily newspapers in your town, then one media company can't call all the shots (I know... What am I thinking?! Who reads a paper anymore? Sure glad all those mergers and buyouts left us with a STRONG and "FREE" press!). Laws Should have been enacted to prevent companies from being so large and dominant that with one slingshot to the eye, the GIANT FALLS and DIES. And no institution should be allowed to set up money schemes that NO ONE understands. If you can't explain it in two sentences, you shouldn't be taking anyone's money!
7. NO EXECUTIVE SHOULD EVER BE PAID MORE THAN 40 TIMES THEIR AVERAGE EMPLOYEE, AND NO EXECUTIVE SHOULD RECEIVE ANY KIND OF "PARACHUTE" OTHER THAN THE VERY GENEROUS SALARY HE OR SHE MADE WHILE WORKING FOR THE COMPANY. In 1980, the average American CEO made 45 times what their employees made. By 2003, they were making 254 times what their workers made. After 8 years of Bush, they now make over 400 times what their average employee makes. How We have allowed this to happen at publicly held companies is beyond reason. In Britain, the average CEO makes 28 times what their average employee makes. In Japan, it's only 17 times! The last I heard, the CEO of Toyota was living the high life in Tokyo. How does he do it on so little money? Seriously, this is an OUTRAGE! We have created the mess we're in by letting the people at the top become bloated beyond belief with millions of dollars. THIS HAS TO STOP! Not only should no executive who receives help out of this mess profit from it, but any executive who was in charge of running his company into the ground should be FIRED before the company receives ANY help.
8. CONGRESS SHOULD HAVE STRENGTHENED THE FDIC AND MADE IT A MODEL FOR PROTECTING NOT ONLY PEOPLE'S SAVINGS, BUT ALSO THEIR PENSIONS AND THEIR HOMES. Obama was correct to propose expanding FDIC protection of people's savings in their banks to $250,000. But, this same sort of government insurance must be given to our NEVER have to worry about whether or not the money they've put away for their old age will be there. This should have meant strict government oversight of companies who manage their employees' funds -- or perhaps it means the companies should have been forced to turn over those funds and their management to the government? People's private retirement funds must also be protected, but perhaps it's time to consider not having one's retirement invested in the casino known as the stock market??? Our government should have a solemn duty to guarantee that no one who grows old in this country has to worry about becoming destitute.
9. EVERYBODY NEEDS TO TAKE A DEEP BREATH, CALM DOWN, AND NOT LET FEAR RULE THE DAY. Turn off your TVs! We are NOT in the Second Great Depression. The sky is NOT falling, Chicken Little! Pundits and politicians have lied to us so FAST and FURIOUS it's hard not to be affected by all the fear mongering. Even I wrote to and repeated what I heard on the news last week, that the Dow had the biggest one day drop in its history. Well, that was true in terms of points, but its 7% drop came nowhere close to Black Monday in 1987 when the stock market in one day lost 23% of its value. In the '80s, 3,000 banks closed, but America didn't go out of business. These institutions have always had their ups and downs and eventually it works out. It has to, because the rich do not like their wealth being disrupted! They have a vested interest in calming things down and getting back into their Jacuzzis before they slip into their million thread-count sheets to drift off to a peaceful, Vodka tonic and Ambien-induced slumber.
As crazy as things are right now, tens of thousands of people got a car loan last week. Thousands went to the bank and got a mortgage to buy a home. Students just back to college found banks more than happy to put them into hock for the next 15 years with a student loan. I was even pre-approved for a US$5K personal loan. Yes, life has gone on with little-or-no-change (other than the whopping 6.1% umeployment rate, but that happened last month). Not a single person lost any of his/her monies in bank, or a treasury note, or in a CD. And, the perhaps the most amazing thing is that the American public FINALLY didn't buy the scare campaign. The citizens didn't blink, instead telling Congress to take that bailout and shove it. THAT was impressive. Why didn't the population succumb to the fright-filled warnings from their president and his cronies? Well, you can only say 'Saddam has the bomb' so many times before the people realize you're a lying sack of shit. After eight long years, the nation is worn out and simply can't take it any longer. The WORLD is fed up & I don't blame them.
10. THEY SHOULD HAVE CREATED A NATIONAL BANK, A "PEOPLE'S BANK." Since they're really itching to print up a trillion dollars, instead of giving it to a few rich people, why don't We give it to ourselves? Now that We own Freddie and Fannie, why not set up a People's bank? One that can provide low-interest loans for all sorts of people who want to own a home, start a small business, go to school, come up with the cure for cancer or create the next great invention. And, now that we own AIG - the country's largest insurance company - let's take the next step and PROVIDE HEALTH INSURANCE FOR EVERYONE. MEDICARE FOR ALL! It will SAVE us SO MUCH MONEY in the LONG RUN (not to mention bring peace of mind to all). And, America won't be 12th on the life expectancy list! We'll be able to have a longer lifespan, enjoying our government-protected pension and will live to see the day when the corporate criminals who caused this much misery are let out of prison so that We can help re-acclimate them to plain old ordinary, civilian life -- a life with ONE nice home and ONE gas-free car invented with help from the People's Bank.
P.S. Call your Senators NOW !!! ---> www.visi.com/juan/congress/
Since they voted against passing the extension of unemployment benefits and skipped out to "campaign" to us to be re-elected...call them and tell them you will vote for the other "guy" if they don't get their act together!
BC’s strong economy means British Columbian families in need of affordable rental housing will soon have access to close to 2,900 new units of housing, thanks to the BC government’s funding commitment of $516 million toward the 68 projects announced.
These investments are estimated to produce 5,500 jobs.
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Marina Bay Sands is an integrated resort fronting Marina Bay in Singapore. Developed by Las Vegas Sands (LVS), it is billed as the world's most expensive stand-alone casino property at US$ 5.7 billion, including the cost of the prime land.
Marina Bay Sands is situated on 15.5 hectares of land with the gross floor area of 581,000 square metres. The iconic design has transformed Singapore's skyline and tourism landscape since it opened on 27 April, 2010. The property has a hotel, convention and exhibition facilities, theatres, entertainment venues, retailers, and restaurants.
Marina Bay Sands was one of two winning proposals for Singapore's first integrated resorts, the other being the Resorts World Sentosa, which incorporates Universal Studios Theme Park. The two resorts aimed to meet Singapore's economic and tourism objectives, and have 30-year casino licenses, exclusively for the first ten years.
Bidders were assessed based on four criteria:
tourism appeal and contribution
architectural concept and design
development investment
strength of the consortium and partners
On 27 May, 2006, Las Vegas Sands (LVS) was declared as the winner to develop the Marina Bay site in the prime new business district of Marina South. LVS highlighted its forte in Meetings, Incentives, Conferencing, Exhibitions (MICE). LVS's founder Sheldon Adelson is a pioneer in Las Vegas and the key to his early business success.[3] In the Design Evaluation portion of the tender, a panel of local and international architects commended Sands' design as superior to other bids in terms of pedestrian circulation and layout, and it also fit in with the Marina Bay landscape best. They liked that the hotel towers were set back from the waterfront to open up expansive views of the city and the entire Marina Bay, making the skyline for Singapore's downtown more attractive and distinctive.Construction of the property commenced in early 2007 and was expected to be completed by 2009.
Singapore Tourism Board highlighted Sands' line-up of six celebrity chefs, such as Tetsuya Wakuda, Wolfgang Puck, Daniel Boulud and Mario Batali.
LVS submitted its winning bid on its own. Its original partner City Developments Limited (CDL), with a proposed 15% equity stake, pulled out of the partnership in the second phase of the tender process. CDL's CEO, Kwek Leng Beng said his company's pullout was a combination of factors – such as difficulties in getting numerous companies he owns to comply in time, as well as reluctance of some parties to disclose certain private information in probity checks required by the Singapore government. However, Kwek was retained as an advisor for Sands' bid.
Las Vegas Sands initially committed to invest S$3.85 billion in the project, not including the fixed S$1.2 billion cost of the 6,000,000 square feet (560,000 m2) site itself. With the escalating costs of materials, such as sand and steel, and labour shortages owing to other major infrastructure and property development in the country, Sheldon Adelson placed the total cost of the development at S$8 billion as of July 2009.
Las Vegas Sands declared the undertaking as "one of the world's most challenging construction projects and certainly the most expensive stand-alone integrated resort property ever built". It expects the casino to generate at least $1 billion in annual profit. Two months after the initial phased opening, the casino attracts around 25,000 visitors daily, about a third being Singaporeans and permanent residents who pay a $100 daily entry levy or $2,000 for annual unlimited access. Half a million gamblers passed through the casino in June 2010. In the third quarter of 2012, the revenues of the Marina Bay Sands fell almost 28 per cent from a year earlier.
For the economy, Marina Bay Sands is projected to stimulate an addition of $2.7 billion or 0.8% to Singapore's Gross Domestic Product by 2015, employing 10,000 people directly and 20,000 jobs being created in other industries.
Moshe Safdie was approached to lead the design on this massive project. Taking inspiration from the form of card decks, led to the unique design of the three hotel towers. Other key structures of the property include the 200,000-square-foot (19,000 m2) ArtScience Museum, The Shoppes, Expo and Convention center and the casino. During the resort's planning and construction phases, feng shui consultants, the late Master Chong Swan Lek and Master Louisa Ong-Lee were consulted in regards to divination.
The engineering for the project was headed by Arup and Parsons Brinkerhoff (MEP/ELV). Arup had originally worked on prestigious projects such as the Beijing National Aquatics Centre and the Sydney Opera House. In spite of their experience in constructing challenging designs, the Marina Bay Sands project was described as the 'most difficult to carry out in the whole world' due to the amount of integration of the varied and advanced technologies needed to complete the project.
The extensive background music system was installed by Singapore based contractor Electronics & Engineering Pte Ltd
The Marina Bay Sands hotel has three 55-story towers with 2,561 luxury rooms and suites, which is capped by the Sands SkyPark, which offers 360-degree views of Singapore's skyline. The SkyPark is home to restaurants, gardens, a 150-metre vanishing edge and the world's largest public cantilever housing an observation deck. This architectural marvel stands at the height of 200 metres and boasts 12,400 square metres of space. Dining options at the Skypark include local celebrity chef restaurant, Sky on 57 (by Justin Quek), restaurant and nightclub KU DÉ TA, and executive club lounge The Club at Marina Bay Sands.
To help the Skypark withstand the natural motion of the towers caused by wind, engineers designed and constructed four movement joints beneath the main pools, each possessing a unique range of motion. The total range of motion is 500 millimetres (19.68 inches). In addition to wind, the hotel towers are also subject to settlement in the earth over time, hence custom jack legs were built and installed to allow for future adjustment at more than 500 points beneath the pool system. This jacking system is important primarily to ensure the infinity edge of the pool continues to function properly.[citation needed]
Connected to the hotel towers are the Sands Expo and Convention Centre, Marina Bay Sands Casino and The Shoppes at Marina Bay Sands.
The Sands Expo and Convention Centre has more than 120,000 square metres or 1.3 million square feet of meeting space, making it one of the largest and most flexible locations in Asia. It is also the biggest MICE (Meeting, Incentives, Conference and Exhibitions) facility in Singapore, and the ballroom is the largest in Southeast Asia, capable of hosting up to 11,000 delegates. The Sands Expo and Convention Centre has five floors of exhibition and convention space, with up to 2,000 exhibition booths and 250 meeting rooms. It has hosted events ranging from banquets, theater-style conventions, to exhibitions and roadshows.
Located near the Sands Expo and Convention Centre is the Marina Bay Sands Casino. Spanning 15,000 square metres over four levels of gaming, the casino features over 600 gaming tables and 1,500 slot machines along with two noodle bars, The Nest and Tong Dim, and local Chinese eatery, Fatt Choi Express.
Another attraction found at Marina Bay Sands is The Shoppes at Marina Bay Sands. With close to 800,000 square feet of retail and restaurant space, The Shoppes at Marina Bay Sands is Singapore's first large-scale luxury shopping mall in the Central Business District with boutiques such as Ralph Lauren, Chanel, Cartier and Prada. Other luxury stores include Salon by Surrender, Gucci, Hermès, Emporio Armani, Chopard, REDValentino, Dior, Dunhill, Vertu, Miu Miu, Saint Laurent Paris, Salvatore Ferragamo, Montblanc, Blancpain, and an Hermès Watch Boutique. Also housed within the Shoppes are the five of the six Celebrity Chef Restaurants – Cut (by Wolfgang Puck), Waku Ghin (by Tetsuya Wakuda), Pizzeria and Osteria Mozza (by Mario Batali), Guy Savoy (by Guy Savoy), and DB Bistro Moderne (by Daniel Boulud).
Other attractions within The Shoppes at Marina Bay Sands include a canal which runs through the length of the Shoppes, in the same style as the Venetian in Las Vegas, two Crystal Pavilions, one housing renowned nightclubs – Avalon and Pangaea and the other the world's largest Louis Vuitton boutique. An indoor skating rink (synthetic ice) measuring 6,500 square feet (600 m2) as well as the MasterCard Theatres, compromising of the Sands Theatre and Grand Theatre which seat 1,680 people and 2,155 people respectively can also be found at The Shoppes at Marina Bay Sands.
The MasterCard Theatres has played host to many international acts and plays since its opening, with Broadway smash musicals like The Lion King, Wicked, Annie, and The Phantom of the Opera. Other acts such as Cirque Éloize and A. R. Rahman's Jai Ho, located in the latter during their world tours.
Visitors to the Event Plaza at The Shoppes can enjoy the nightly Wonder Full show, a 13-minute light and water show featuring lasers, lights, water movements and graphics, set against the backdrop of Marina Bay Sands.
Marina Bay Sands is also home to the ArtScience Museum, With a form reminiscent of the lotus, the ArtScience Museum has been called "The Welcoming Hand of Singapore". It features an adjustable roof waterfall which uses rainwater collected when the roof is sealed in the day.
The resort also features an Art Path designed by Moshe Safdie, incorporating 11 installations by five artists including Zheng Chongbin, Antony Gormley, and Sol LeWitt. The 11 art installations were commissioned to integrate seamlessly with Moshe Safdie's iconic architecture. These art installations form the largest art commissions ever completed as part of an integrated architectual proccess
Just like the original McDonald's hamburger stands of the 1950's and 60's which are now considered "retro", the mandard-roofed McDonald's restaurants of my earliest memories are now being remodeled or replaced with a newer style of commercial architecture.
Uptown, Chicago, Illinois.
Sunday, April 21, 2013.
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The bus ride from Shenzhen to Enping was long, like watching a freight train chug by, except it doesn't. We had to have been on that bus for seven hours, sometimes napping, and at times, staring out our windows, looking at a world standing still. Traffic was not only a nightmare, but also a mystery, for as many instances in which we could plainly see another egregiously bad vehicular accident, that which has become commonplace, ubiquitous in Chinese travel culture, there were other inexplicable stops in movement, when all of a sudden, as though finishing a swift countdown, our speed dropped so precipitously as to let out a collective lurch, if not in body, then definitely in mind. Calvin, thankfully, in his perspicacity, in his wide-angled, unique view of things, saw beyond the myriad vehicles which lay unmoving as if rocks on a dry riverbed; view the periphery, he bade us, and when we looked to the edges of the road, indeed we witnessed the most peculiar instigator of traffic congestion in the world - men en masse pissing on the side of the road! Men taking leaks creates a domino effect; that one sees another enjoying the relief of an unburdened, easy bladder, so seductive a yoke, that the only retort to the entreaty of this blissful state is to join in with abandon, and impunity. And so soon as the last few shakes are made, back into the cars do these men go, and a few hasty minutes later, traffic flows again!
Mike wanted to stop at a village, so we exchanged an increasingly crowded highway for a narrow, cement road, on which we ventured into the dense verdure. Having reached an impasse in the road soon thereafter, and not knowing how to advance further, to actually enter the village proper, we saw two lovely young ladies saddling a moped, motoring towards us. They then suddenly broke, and turned off our path and onto a dirt one which squeezed through two homes as though a mouse through its diminutive hole - that was our key. We greeted them as the girls turned their heads, offering us inquisitive, yet gentle looks. They would be our guides into town.
Blue showed me around her neighborhood. Together we walked along bumpy corridors and peered through open windows, beyond flitting cobwebs, to lay eyes on rooms where nowadays only impenetrable shadows repose. She and I examined the perfunctory red banners which framed each door in the village, and subsequently hit it off when I began inquiring into the nature of those two swarthy demons who hung menacingly before the closed doors, their gazes insidiously wild, drunk with rage, perhaps. Indeed later, in the quietude of a sunset raining down on us, while standing by ourselves in front of the village hall, I finally shared my faith with her, and in return she declared the lack of her own - her cousin and older sister, however, do know Jesus, she said, which verily warmed my heart, if not hers.
We left the village with much rapidity, but not before I blessed and encouraged Blue's cousin, in whose arms a smiling babe lay, and received joyfully a delectable departing gift: mysterious, "Blue Cookies" (the official Chinese name is 艾糍), whose mottled, homely complexion would disgust if not for the sweetness (an amalgam of sugar, peanuts and herbs) buried inside, a treasure which would be discovered again and again on our tour.
The food around Enping epitomizes, I believe, Guangdong cuisine: inexpensive and egregiously non-spicy. For what they lack in price and incendiary acidity, however, these dishes more than compensate with copious amounts of oil, salt and sugar, mixed together for a tantalizing effect on the taste buds. Our group was fortunate enough to have frequented several Guangdong-style dai pai dongs whose victuals both nourished our bodies and replenished our wallets - it's amazing to consider how $250RMB can feed 15 ravenous, cantankerous-when-hungry Christian bikers. In fact, the feasting grew exponentially more enjoyable as journey progressed, as our two primary orderers began to refine their culinary acuity, accurately predicting what would invigorate and excite our collective palate; it helped, too, that our utensils were pretty clean for Chinese standards!
Our first evening, we secured accommodations in a building that was not so much a hotel, or even a motel, as a grey, dry concrete edifice in which hardwood beds were arrayed neatly in each room; the spartan conditions dismayed some, including myself, at first. However, thankfulness trumped peevishness, and the realization that, in the middle of nowhere, we had mosquito nets to ward off the inexorable squad of mozzies, and one bathroom with boiling water for a very, very scalding shower was more than enough to placate everyone, especially after a hard day of riding. Besides, austerity succors the soul. We even managed to sleep pretty soundly without mattresses. In my somnolent state, I only remember shifting desperately maybe six, or seven times. It was a good night, and a bargain at only 15RMB per person!
On the second day our group dared to test itself on an unknown avenue. Consequently, we were spared the sonorous alarms of gigantic, indomitable trucks and instead subjected ourselves to the vicissitudes of off-road biking, whose soundtrack, undoubtedly for the day, was provided by an orchestra of buzzing cicadas, accompanied, at times, by the rumbling tympani of motorbikes. Oh, the countryside was lush, beautiful verdure all around - a feast for the romantic soul. Yet, for one of my companions, the environment was anything but endearing, for her adeptness at handling the desultory trail, she surely felt, was more chaotic than controlled. She persevered, nonetheless, pushing through her disconsolation to conquer the race marked out for her; such tenacity that only the Father could supply; and that left me thoroughly impressed.
At lunchtime, the evangelization effort began in earnest. It started innocently enough, as I asked a group of girls about the secondary school down the dusty road from our restaurant. Then, on cue, the Spirit, whose pacing can only be described as frenetic, whose rhythm is beyond my comprehension, overwhelmed and took over. Leanne and I brought those three girls to Christ; while Tim was assiduously preaching by our side to a band of boys who had gathered to look on; and behind us, ah Cheung had cajoled five boys to form a circle, hand in hand, for prayer. Many people came to know Jesus that hour. There was undoubtedly some serious fire falling down on us!
We made a pit stop at the Tam clan village. It was another bucolic community, replete with idling boys, young and old, and those two duplicitous demons standing watch from steady doors, which, it appeared, held together together the ramshackle walls beside them. An electricity meter evinced the reality of life in the village, of a living community that flows flittingly in and out of the houses as though cats leaping over canals; because I for one couldn't see how hundreds of people somehow resided inside those homes when I couldn't spot a single one during my brief tour of the grounds. In the open, by our bikes, there were conspicuous signs of life, however. I was standing in the sun, letting its warm rays melt on my skin, when a young man, not even twenty, approached and asked me about our intents and purposes on what was once such a dull afternoon. His curiosity got the better of me, and together we broached a conversation in faith. Simon joined us, and although he whom I named Henry, told us in his obstinacy that he depends on himself alone, I feel as though a small seed of faith was still planted within him. May it bloom at the appointed time when he most needs it.
At last, inside the unlit store where we shared our gleaming hopes and fantastic dreams, Simon and I noticed, to our surprise and delight, two blackboards on which the shopkeeper had written the alphabet, for English as well as for Putonghua (Pinyin). Besides the letters, numbers too had been painstakingly etched into the board, each meticulous stroke perfectly formed. So they ironically were learning that which continues to elude their more economically mobile brethren in Hong Kong, despite their most humble upbringing. I encouraged Henry to pursue this knowledge, since, as the cliche most rightly states, English - and Putonghua, these days - opens up a world of opportunity.
China, it seems to me, is one interminable housing start being carried on the shoulders of giants. Behemoths, really, an armada of green and blue dump trucks, on whose backs are the physical manifestation of the hopes and dreams of billions - timber; stone; and coal - were an inescapable part of our three-day trek. They blew passed us, literally, horns afire; and if you stared into the eyes of the drivers high above on those mechanized elephants, you would see the glee with which they pounded both the road and the eardrums of those unwitting peons foolish enough to be nearby. China - and China Mobile, whose stores we uncovered even in the most remote suburb, might I add! - still has much growth left, and the transportation and infrastructure industries, I'm sure, shall assiduously work to keep it that way. My recommendation: keep investing in China.
Visiting the hot springs had been on our agenda since the inception of the trip. We eventually had our chance the second evening, when we raced down a wending hill to our hotel - a real hotel. Our excitement reverberated in the air, crackling with laughter and shouting. Choosing to swim first and foremost, we left dinner to wait and hurried across the street. The resort was packed with other like-minded people, dressed in swimming costumes that should have left more to the imagination; the temperature of the pool water varied, from tepid in one enclosure to skin-searing in another; and for one marvelous hour, we swam and frolicked like little children again, delighting in some wet fun, a suitable reward for one more arduous day spent on the dusty, dry land.
We capped the end of a successful day with a bang. The girls, oddly enough, were furtive pyromaniacs in our midst, longing in secret to raid the fireworks shop at the base of the hotel. So after our meal, they raced into the cool evening air and we could only endeavor to follow them in their explosive folly. Inside the store, all sorts of bombastic devices were on display, from the unwieldy, block of (Chicago) bull to the sleek spears adorning the wall whose warheads, no doubt, could just so easily take out a few eyes as mercilessly rip the pitch black from the wall of night sky. The ladies suffered to leave no type of firework untouched by the flame, quickly purchasing an arsenal of rainbow-inducing rockets and slim sparklers to make any pyrotechnic maven proud. Outside we went. At length, the bombs burst in the air, and laughter abound so much as we watched the brilliance of Chinese engineering on display. With the girls' scintillating stock depleted, we finally collected ourselves, and headed upstairs for one more day of wonderment.
There was one last village to visit before we reached our final destination of Enping city. As we sped into the shanty community, we knew something was amiss because unlike our other entrances into villages, during which residents would emerge in droves to glimpse us, it seemed as though these villagers preferred the comfort of their own veiled homes to the company of a few, ebullient strangers. It was an ominous setting in which we found ourselves, one characterized by inhabitants rather mistrustful than gregarious, and affable. Nonetheless, we dispersed to share kindness and mercy. To that end, I approached a young lady, a mere 25-years old, who had her three-month old boy on her shoulder and her three-year old son - who was without pants, might I add, preferring to wave them in the air like a terrible towel - by her side. We spoke briefly about her hopes and dreams, which, she says, rest in the well-being of her sons; and then Leanne and I blessed her. That was the end of our village experience in China.
To be around people who sharpen you as iron sharpens iron, that verily is a joy. The villagers were simple, warm and welcoming; my teammates were jocular, presumptuous and faithful; and I, in the midst of this confluence, this mosaic of personalities, philosophies, hopes and dreams, could only seek to love, especially in one of my more pensive moments. The trip tested my patience and tolerance, my ability to accept others for who they are - each a flawed creature like myself. Ultimately, so much as we seek the men of peace everywhere we go, we individually must become men of peace too. A true disciple of Jesus runs that race, and appreciates His grace, which shall always be enough in this life.
Added an ultra rare action figure to the collection. Got a great deal on this prime item. It shipped really fast, too. All puns intended.
Learn what you can do today to go "Green" and help preserve the environment ~ www.earthday.org/
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"Swiss Re to Buy Guardian Financial Services for $2.5 Billion" by CHAD BRAY via NYT t.co/X3ERI264yL (via Twitter twitter.com/felipemassone/status/646600811615793152)
Mars landing sophisticated core technology 1. New high-speed heavy rocket technology $ 12.7 billion
2. The special material of aerospace technology special radiation $ 2.5 billion
3. Microgravity confrontation - technology, pharmaceutical space syndrome, Mars emergency medical system $ 1.5 billion, $ 4.5 billion
4. Special radiation multifunction smart Mars spacesuit medical warehouse $ 2.4 billion
5. The aeronautical emergency treatment technology life once, twice maintain security, rescue system $ 1.3 billion
6. rovers, Mars spacecraft, the Mars telescope, giant cell, Rover $ 3.8 billion
7. Life on Mars warehouse / micro base station on Mars, Martian soil nutrients $ 3.9 billion
8. Water - synthetic oxygen conversion technology for producing $ 1.2 billion
9. Mars LASH barge technology, semi-automatic / manual return flight back to Mars Technology $ 7.2 billion
10. Remote telemetry, communications technology
$ 1.5 billion
11. The other $ 5.7 billion
************************************************** *********** / special multi-purpose multi-purpose anti-radiation cosmic universe Wear - $ 1.5 billion
Aeromedical emergency cabin $ 7.5 billion
Multifunctional intelligent life support system $ 3 billion
Mars Rover $ 300 million
Aerospace / water planet Synthesis 1.2 one billion US dollars
Cutting-edge aerospace technology transfer core, a high precision and advanced technology, confidential technology, in order to avoid technical and commercial secrets leak, causing leaks and developers in major economic loss. Therefore, according to international practice, advanced security technology temporarily apply for international patents. You can later apply for an application in the relevant art decryption. It is noted. Technology transfer projects listed prices are reference price, the offer price, the specific projects where appropriate discount 15% -38%, will be agreed upon. International transfers in US dollars or other common international currency. Transfer technology transfer related technology required to sign trade agreement or contract, can be formal or electronic versions.
Contact, e-mail
banxin123 @ gmail.com, fangda337svb125 @ gmail.com, mdin.jshmith @ gmail.com,fangruid44o7@gmail.com, technology entry fee / $ 2,550,000, signed in accordance with international practice, after signing the contract, namely the delivery of technical entry fee of $ 2.55 million or international currency of payment, technology margin of 25%, after the delivery of technical drawings, the balance lump sum. Agreement or contract signed by both parties, the English, the French text, parts one and two, to take effect upon signature. Any breach will compensate the other party losses, liquidated damages of $ 1.25 million. But unforeseen exceptional circumstances In addition, the parties may agree to terminate the agreement and contract, no compensation. Peaceful Uses of Outer project uses technology, global commercial enterprises related establishments company may transferee. The transferee company Organziation enterprises according to related contracts and agreements, international patent applications, patent rights attributed to its purchase technical side, the licensor party no longer enjoys its technical invention patents. Transfer of technology patent formula category in the form of technology, drawings, text and other technical documents, assignment of patent drawings in accordance with the prevailing universal national patent drawings, English, French or other common international language. For detailed technical design diagrams, schematics, block diagrams, installation drawings transferor to the transferee not provided, only patented formula class technical drawings. Seller can provide technical advice or technical support, the transferee must be paid 3% to 15% of the technology consultancy. Transfer of technical drawings and technical drawings electronic version of a file each, contact e-mail encryption. Specific bank or bank transfer or electronic bank account and the other notified.
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Fangruida: human landing on Mars 10 cutting-edge technology
[Fangruida- human landing on Mars 10 innovative and sophisticated technologies]
Aerospace Science and space science and technology major innovation of the most critical of sophisticated technology R & D project
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Aerospace Science Space Science and Technology on behalf of the world's most cutting-edge leader in high technology, materials, mechatronics, information and communication, energy, biomedical, marine, aviation aerospace, microelectronics, computer, automation, intelligent biochips, use of nuclear energy, light mechanical and electrical integration, astrophysics, celestial chemistry, astrophysics and so a series of geological science and technology. Especially after the moon landing, the further development of mankind to Mars and other planets into the powerful offensive, the world's major powers eager to Daxian hand of God, increase investment, vigorously develop new sophisticated technology projects for space to space. Satellite, space station, the new spacecraft, the new space suits, the new radiation protection materials, intelligent materials, new manufacturing technology, communications technology, computer technology, detector technology, rover, rover technology, biomedical technology, and so one after another, is expected to greater breakthroughs and leaps. For example, rocket technology, spacecraft design, large power spacecraft, spacesuits design improvements, radiation multifunctional composite materials, life health care technology and space medicine, prevention against microgravity microgravity applicable drugs, tracking control technology, landing and return technology. Mars lander and returned safely to Earth as a top priority. Secondly, Mars, the Moon base and the use of transforming Mars, the Moon and other development will follow. Whether the former or the latter, are the modern aerospace science, space science basic research, applied basic research and applied research in the major cutting-edge technology. These major cutting-edge technology research and innovation, not only for human landing on Mars and the safe return of great significance, but for the entire space science, impact immeasurable universe sciences, earth sciences and human life. Here the most critical of the most important research projects of several sophisticated technology research and development as well as its core technology brief. Limit non-scientific techniques include non-technical limits of technology, the key lies in technology research and development of technology maturity, advanced technology, innovative, practical, reliable, practical application, business value and investment costs, and not simply like the idea mature technology achievements, difficult to put into things. This is the high-tech research and development, testing, prototype, test application testing, until the outcome of industrialization. Especially in aerospace technology, advanced, novelty, practicality, reliability, economy, maturity, commercial value and so on. For technical and research purely science fiction and the like may be irrelevant depth, but not as aerospace engineering and technology practice. Otherwise, Mars will become a dream fantasy, and even into settling crashed out of danger.
Regardless of the moon or Mars, many technical difficulties, especially a human landing on Mars and return safely to Earth, technical difficulties mainly in the following aspects. (Transformation of Mars and the Moon and other planets and detect other livable technology more complex and difficult, at this stage it is difficult to achieve and therefore not discussed in detail in this study). In fact, Mars will be the safe return of a full set of technology, space science, aerospace crucial scientific research development, its significance is not confined to Mars simply a return to scientific value, great commercial value, can not be measure.
1. Powered rocket, the spacecraft overall structural design not be too complex large, otherwise, the safety factor to reduce the risk of failure accidents. Fusion rocket engine main problem to be solved is the high-temperature materials and fuel ignition chamber (reaction chamber temperatures of up to tens of millions of supreme billion degrees), fissile class rocket engine whose essence is the miniaturization of nuclear reactors, and placed on the rocket. Nuclear rocket engine fuel as an energy source, with liquid hydrogen, liquid helium, liquid ammonia working fluid. Nuclear rocket engine mounted in the thrust chamber of the reactor, cooling nozzle, the working fluid delivery and control systems and other components. This engine due to nuclear radiation protection, exhaust pollution, reactor control and efficient heat exchanger design and other issues unresolved. Electrothermal rocket engine utilizing heat energy (resistance heating or electric arc heating) working medium (hydrogen, amines, hydrazine ), vaporized; nozzle expansion accelerated after discharged from the spout to generate thrust. Static rocket engine working fluid (mercury, cesium, hydrogen, etc.) from the tank enter the ionization chamber is formed thrust ionized into a plasma jet. Electric rocket engines with a high specific impulse (700-2500 sec), extremely long life (can be repeated thousands of times a starter, a total of up to thousands of hours of work). But the thrust of less than 100N. This engine is only available for spacecraft attitude control, station-keeping and the like. One nuclear - power rocket design is as follows: Firstly, the reactor heats water to make it into steam, and then the high-speed steam ejected, push the rocket. Nuclear rocket using hydrogen as working substance may be a better solution, it is one of the most commonly used liquid hydrogen rocket fuel rocket carrying liquid hydrogen virtually no technical difficulties. Heating hydrogen nuclear reactor, as long as it eventually reaches or exceeds current jet velocity hydrogen rocket engine jet speed, the same weight of the rocket will be able to work longer, it can accelerate the Rockets faster. Here there are only two problems: First, the final weight includes the weight of the rocket in nuclear reactors, so it must be as light as possible. Ultra-small nuclear reactor has been able to achieve. Furthermore, if used in outer space, we can not consider the problem of radioactive residues, simply to just one proton hydrogen nuclei are less likely to produce induced radioactivity, thus shielding layer can be made thinner, injected hydrogen gas can flow directly through the reactor core, it is not easy to solve, and that is how to get back at high speed heated gas is ejected.
Rocket engine with a nuclear fission reactor, based on the heating liquid hydrogen propellant, rather than igniting flammable propellant
High-speed heavy rocket is a major cutting-edge technology. After all, space flight and aircraft carriers, submarines, nuclear reactors differ greatly from the one hand, the use of traditional fuels, on the one hand can be nuclear reactor technology. From the control, for security reasons, the use of nuclear power rocket technology, safe and reliable overriding indicators. Nuclear atomic energy in line with the norms and rules of outer space. For the immature fetal abdominal hatchery technology, and resolutely reject use. This is the most significant development of nuclear-powered rocket principle.
Nuclear-powered spaceship for Use of nuclear power are three kinds:
The first method: no water or air space such media can not be used propeller must use jet approach. Reactor nuclear fission or fusion to produce a lot of heat, we will propellant (such as liquid hydrogen) injection, the rapid expansion of the propellant will be heated and then discharged from the engine speed tail thrust. This method is most readily available.
The second method: nuclear reactor will have a lot of fast-moving ions, these energetic particles moving very fast, so you can use a magnetic field to control their ejection direction. This principle ion rocket similar to the tail of the rocket ejected from the high-speed mobile ions, so that the recoil movement of a rocket. The advantage of this approach is to promote the unusually large ratio, without carrying any medium, continued strong. Ion engine, which is commonly referred to as "electric rocket", the principle is not complicated, the propellant is ionized particles,
Plasma Engine
Electromagnetic acceleration, high-speed spray. From the development trend, the US research scope covers almost all types of electric thrusters, but mainly to the development of ion engines, NASA in which to play the most active intake technology and preparedness plans. "
The third method: the use of nuclear explosions. It is a bold and crazy way, no longer is the use of a controlled nuclear reaction, but to use nuclear explosions to drive the ship, this is not an engine, and it is called a nuclear pulse rocket. This spacecraft will carry a lot of low-yield atomic bombs out one behind, and then detonated, followed by a spacecraft propulsion installation disk, absorbing the blast pushing the spacecraft forward. This was in 1955 to Orion (Project Orion) name of the project, originally planned to bring two thousand atomic bombs, Orion later fetal nuclear thermal rocket. Its principle is mounted on a small rocket reactor, the reactor utilizing thermal energy generated by the propellant is heated to a high temperature, high pressure and high temperature of the propellant from the high-speed spray nozzle, a tremendous impetus.
Common nuclear fission technologies, including nuclear pulse rocket engines, nuclear rockets, nuclear thermal rocket and nuclear stamping rockets to nuclear thermal rocket, for example, the size of its land-based nuclear power plant reactor structure than the much smaller, more uranium-235 purity requirements high, reaching more than 90%, at the request of the high specific impulse engine core temperature will reach about 3000K, require excellent high temperature properties of materials.
Research and test new IT technologies and new products and new technology and new materials, new equipment, things are difficult, design is the most important part, especially in the overall design, technical solutions, technical route, technical process, technical and economic particularly significant. The overall design is defective, technology there are loopholes in the program, will be a major technical route deviation, but also directly related to the success of research trials. so, any time, under any circumstances, a good grasp of the overall control of design, technical design, is essential. otherwise, a done deal, it is difficult save. aerospace technology research and product development is true.
3, high-performance nuclear rocket
Nuclear rocket nuclear fission and fusion energy can rocket rocket two categories. Nuclear fission and fusion produce heat, radiation and shock waves and other large amounts of energy, but here they are contemplated for use as a thermal energy rocket.
Uranium and other heavy elements, under certain conditions, will split their nuclei, called nuclear fission reaction. The atomic bomb is the result of nuclear fission reactions. Nuclear fission reaction to release energy, is a million times more chemical rocket propellant combustion energy. Therefore, nuclear fission energy is a high-performance rocket rockets. Since it requires much less propellant than chemical rockets can, so to its own weight is much lighter than chemical rockets energy. For the same quality of the rocket, the rocket payload of nuclear fission energy is much greater than the chemical energy of the rocket. Just nuclear fission energy rocket is still in the works.
Use of nuclear fission energy as the energy of the rocket, called the atomic rockets. It is to make hydrogen or other inert gas working fluid through the reactor, the hydrogen after the heating temperature quickly rose to 2000 ℃, and then into the nozzle, high-speed spray to produce thrust.
A vision plan is to use liquid hydrogen working fluid, in operation, the liquid hydrogen tank in the liquid hydrogen pump is withdrawn through the catheter and the engine cooling jacket and liquid hydrogen into hydrogen gas, hydrogen gas turbine-driven, locally expansion. Then by nuclear fission reactors, nuclear fission reactions absorb heat released, a sharp rise in temperature, and finally into the nozzle, the rapid expansion of high-speed spray. Calculations show that the amount of atomic payload rockets, rocket high chemical energy than 5-8 times.
Hydrogen and other light elements, under certain conditions, their nuclei convergent synthesis of new heavy nuclei, and release a lot of energy, called nuclear fusion reaction, also called thermonuclear reaction.
Using energy generated by the fusion reaction for energy rocket, called fusion energy rocket or nuclear thermal rockets. But it is also not only take advantage of controlled nuclear fusion reaction to manufacture hydrogen bombs, rockets and controlled nuclear fusion reaction needs still studying it.
Of course there are various research and development of rocket technology and technical solutions to try.
It is envisaged that the rocket deuterium, an isotope of hydrogen with deuterium nuclear fusion reaction of helium nuclei, protons and neutrons, and release huge amounts of energy, just polymerized ionized helium to temperatures up to 100 million degrees the plasma, and then nozzle expansion, high-speed ejection, the exhaust speed of up to 15,000 km / sec, atomic energy is 1800 times the rocket, the rocket is the chemical energy of 3700 times.
Nuclear rocket engine fuel as an energy source, with liquid hydrogen, liquid helium, liquid ammonia working fluid. Nuclear rocket engine mounted in the thrust chamber of the reactor, cooling nozzle, the working fluid delivery and control systems and other components. In a nuclear reactor, nuclear energy into heat to heat the working fluid, the working fluid is heated after expansion nozzle to accelerate to the speed of 6500 ~ 11,000 m / sec from the discharge orifice to produce thrust. Nuclear rocket engine specific impulse (250 to 1000 seconds) long life, but the technology is complex, apply only to long-term spacecraft. This engine due to nuclear radiation protection, exhaust pollution, reactor control and efficient heat exchanger design and other issues not resolved, is still in the midst of trials. Nuclear rocket technology is cutting-edge aerospace science technology, centralized many professional and technical sciences and aerospace, nuclear physics, nuclear chemistry, materials science, the long term future ___-- wide width. The United States, Russia and Europe, China, India, Japan, Britain, Brazil and other countries in this regard have studies, in particular the United States and Russia led the way, impressive. Of course, at this stage of nuclear rocket technology, technology development there are still many difficulties. Fully formed, still to be. But humanity marching to the universe, nuclear reactor applications is essential.
Outer Space Treaty (International Convention on the Peaceful Uses of Outer Space) ****
Use of Nuclear Power Sources in Outer Space Principle 15
General Assembly,
Having considered the report of its thirty-fifth session of the Committee on the Peaceful Uses of Outer Space and the Commission of 16 nuclear
It can be attached in principle on the use of nuclear power sources in outer space of the text of its report, 17
Recognize that nuclear power sources due to small size, long life and other characteristics, especially suitable for use even necessary
For some missions in outer space,
Recognizing also that the use of nuclear power sources in outer space should focus on the possible use of nuclear power sources
Those uses,
Recognizing also that the use of nuclear power sources should include or probabilistic risk analysis is complete security in outer space
Full evaluation is based, in particular, the public should focus on reducing accidental exposure to harmful radiation or radioactive material risk
risk,
Recognizing the need to a set of principles containing goals and guidelines in this regard to ensure the safety of outer space makes
With nuclear power sources,
Affirming that this set principles apply exclusively on space objects for non-power generation, which is generally characteristic
Mission systems and implementation of nuclear power sources in outer space on similar principles and used by,
Recognizing this need to refer to a new set of principles for future nuclear power applications and internationally for radiological protection
The new proposal will be revised
By the following principles on the use of nuclear power sources in outer space.
Principle 1. Applicability of international law
Involving the use of nuclear power sources in outer space activities should be carried out in accordance with international law, especially the "UN
Principles of the Charter "and" States in the Exploration and Use of Outer Space, including the Moon and Other Celestial Bodies Activities
Treaty "3
.
2. The principle terms
1. For the purpose of these principles, "launching State" and "launching State ......" two words mean, in related
Principles related to a time of nuclear power sources in space objects exercises jurisdiction and control of the country.
2. For the purpose of principle 9, wherein the definition of the term "launching State" as contained in that principle.
3. For the purposes of principle 3, the terms "foreseeable" and "all possible" two words are used to describe the actual hair
The overall likelihood of students that it is considered for safety analysis is credible possibilities for a class of things
Member or circumstances. "General concept of defense in depth" when the term applies to nuclear power sources in outer space refers to various settings
Count form and space operations replace or supplement the operation of the system in order to prevent system failures or mitigate thereafter
"Official Records of the General Assembly, Forty-seventh Session, Supplement No. 20" 16 (A / 47/20).
17 Ibid., Annex.
38
fruit. To achieve this purpose is not necessarily required for each individual member has redundant safety systems. Given space
Use and special requirements of various space missions, impossible to any particular set of systems or features can be specified as
Necessary to achieve this purpose. For the purpose of Principle 3 (d) of paragraph 2, "made critical" does not include
Including such as zero-power testing which are fundamental to ensuring system safety required.
Principle 3. Guidelines and criteria for safe use
To minimize the risk of radioactive material in space and the number involved, nuclear power sources in outer space
Use should be limited to non-nuclear power sources in space missions can not reasonably be performed
1. General goals for radiation protection and nuclear safety
(A) States launching space objects with nuclear power sources on board shall endeavor to protect individuals, populations and the biosphere
From radiation hazards. The design and use of space objects with nuclear power sources on board shall ensure that risk with confidence
Harm in the foreseeable operational or accidental circumstances, paragraph 1 (b) and (c) to define acceptable water
level.
Such design and use shall also ensure that radioactive material does not reliably significant contamination of outer space.
(B) the normal operation of nuclear power sources in space objects, including from paragraph 2 (b) as defined in foot
High enough to return to the track, shall be subject to appropriate anti-radiation recommended by the International Commission on Radiological Protection of the public
Protection goals. During such normal operation there shall be no significant radiation exposure;
(C) To limit exposure in accidents, the design and construction of nuclear power source systems shall take into account the international
Relevant and generally accepted radiological protection guidelines.
In addition to the probability of accidents with potentially serious radiological consequences is extremely low, the nuclear power source
Design systems shall be safely irradiated limited limited geographical area, for the individual radiation dose should be
Limited to no more than a year 1mSv primary dose limits. Allows the use of irradiation year for some years 5mSv deputy agent
Quantity limit, but the average over a lifetime effective dose equivalent annual dose not exceed the principal limit 1mSv
degree.
Should make these conditions occur with potentially serious radiological consequences of the probability of the system design is very
small.
Criteria mentioned in this paragraph Future modifications should be applied as soon as possible;
(D) general concept of defense in depth should be based on the design, construction and operation of systems important for safety. root
According to this concept, foreseeable safety-related failures or malfunctions must be capable of automatic action may be
Or procedures to correct or offset.
It should ensure that essential safety system reliability, inter alia, to make way for these systems
Component redundancy, physical separation, functional isolation and adequate independence.
It should also take other measures to increase the level of safety.
2. The nuclear reactor
(A) nuclear reactor can be used to:
39
(I) On interplanetary missions;
(Ii) the second high enough orbit paragraph (b) as defined;
(Iii) low-Earth orbit, with the proviso that after their mission is complete enough to be kept in a nuclear reactor
High on the track;
(B) sufficiently high orbit the orbital lifetime is long enough to make the decay of fission products to approximately actinides
Element active track. The sufficiently high orbit must be such that existing and future outer space missions of crisis
Risk and danger of collision with other space objects to a minimum. In determining the height of the sufficiently high orbit when
It should also take into account the destroyed reactor components before re-entering the Earth's atmosphere have to go through the required decay time
between.
(C) only 235 nuclear reactors with highly enriched uranium fuel. The design shall take into account the fission and
Activation of radioactive decay products.
(D) nuclear reactors have reached their operating orbit or interplanetary trajectory can not be made critical state
state.
(E) nuclear reactor design and construction shall ensure that, before reaching the operating orbit during all possible events
Can not become critical state, including rocket explosion, re-entry, impact on ground or water, submersion
In water or water intruding into the core.
(F) a significant reduction in satellites with nuclear reactors to operate on a lifetime less than in the sufficiently high orbit orbit
For the period (including during operation into the sufficiently high orbit) the possibility of failure, there should be a very
Reliable operating system, in order to ensure an effective and controlled disposal of the reactor.
3. Radioisotope generators
(A) interplanetary missions and other spacecraft out of Earth's gravitational field tasks using radioactive isotopes
Su generator. As they are stored after completion of their mission in high orbit, the Earth can also be used
track. We are required to make the final treatment under any circumstances.
(B) Radioisotope generators shall be protected closed systems, design and construction of the system should
Ensure that in the foreseeable conditions of the track to withstand the heat and aerodynamic forces of re-entry in the upper atmosphere, orbit
Conditions including highly elliptical or hyperbolic orbits when relevant. Upon impact, the containment system and the occurrence of parity
Physical morpheme shall ensure that no radioactive material is scattered into the environment so you can complete a recovery operation
Clear all radioactive impact area.
Principle 4. Safety Assessment
1. When launching State emission consistent with the principles defined in paragraphs 1, prior to the launch in applicable under the
Designed, constructed or manufactured the nuclear power sources, or will operate the space object person, or from whose territory or facility
Transmits the object will be to ensure a thorough and comprehensive safety assessment. This assessment shall cover
All relevant stages of space mission and shall deal with all systems involved, including the means of launching, the space level
Taiwan, nuclear power source and its equipment and the means of control and communication between ground and space.
2. This assessment shall respect the principle of 3 contained in the guidelines and criteria for safe use.
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3. The principle of States in the Exploration and Use, including the Moon and Other Celestial Bodies Outer Space Activities Article
Results of about 11, this safety assessment should be published prior to each transmit simultaneously to the extent feasible
Note by the approximate intended time of launch, and shall notify the Secretary-General of the United Nations, how to be issued
This safety assessment before the shot to get the results as soon as possible.
Principle 5. Notification of re-entry
1. Any State launching a space object with nuclear power sources in space objects that failed to produce discharge
When radioactive substances dangerous to return to the earth, it shall promptly notify the country concerned. Notice shall be in the following format:
(A) System parameters:
(I) Name of launching State, including which may be contacted in the event of an accident to Request
Information or assistance to obtain the relevant authorities address;
(Ii) International title;
(Iii) Date and territory or location of launch;
(Iv) the information needed to make the best prediction of orbit lifetime, trajectory and impact region;
(V) General function of spacecraft;
(B) information on the radiological risk of nuclear power source:
(I) the type of power source: radioisotopes / reactor;
(Ii) the fuel could fall into the ground and may be affected by the physical state of contaminated and / or activated components, the number of
The amount and general radiological characteristics. The term "fuel" refers to as a source of heat or power of nuclear material.
This information shall also be sent to the Secretary-General of the United Nations.
2. Once you know the failure, the launching State shall provide information on the compliance with the above format. Information should as far as possible
To be updated frequently, and in the dense layers of the Earth's atmosphere is expected to return to a time when close to the best increase
Frequency of new data, so that the international community understand the situation and will have sufficient time to plan for any deemed necessary
National contingency measures.
3. It should also be at the same frequency of the latest information available to the Secretary-General of the United Nations.
Principle 6. consultation
5 According to the national principles provide information shall, as far as reasonably practicable, other countries
Requirements to obtain further information or consultations promptly reply.
Principle 7. Assistance to States
1. Upon receipt of expected with nuclear power sources on space objects and their components will return through the Earth's atmosphere
After know that all countries possessing space monitoring and tracking facilities, in the spirit of international cooperation, as soon as possible to
The Secretary-General of the United Nations and the countries they may have made space objects carrying nuclear power sources
A fault related information, so that the States may be affected to assess the situation and take any
It is considered to be the necessary precautions.
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2. In carrying space objects with nuclear power sources back to the Earth's atmosphere after its components:
(A) launching State shall be requested by the affected countries to quickly provide the necessary assistance to eliminate actual
And possible effects, including nuclear power sources to assist in identifying locations hit the Earth's surface, to detect the re substance
Quality and recovery or cleanup activities.
(B) All countries with relevant technical capabilities other than the launching State, and with such technical capabilities
International organizations shall, where possible, in accordance with the requirements of the affected countries to provide the necessary co
help.
When according to the above (a) and subparagraph (b) to provide assistance, should take into account the special needs of developing countries.
Principle 8. Responsibility
In accordance with the States in the Exploration and Use of Outer Space, including the Moon and Other Celestial Bodies activities, including the principles of Article
About Article, States shall bear international responsibility for their use of nuclear power sources in outer space relates to the activities
Whether such activities are carried on by governmental agencies or non-governmental entities, and shall bear international responsibility to ensure that this
Such activities undertaken by the country in line with the principles of the Treaty and the recommendations contained therein. If it involves the use of nuclear power sources
Activities in outer space by an international organization, should be done by the international organizations and States to participate in the organization
Undertakes to comply with the principles of the Treaty and the recommendations contained in these responsibilities.
Principle 9. Liability and Compensation
1. In accordance with the principle of States in the Exploration and Use, including the Moon and Other Celestial Bodies Outer Space Activities Article
And the Convention on International Liability for Damage Caused by Space Objects covenant of Article 7
Provisions, which launches or on behalf of the State
Each State launching a space object and each State from which territory or facility a space object is launched
Kinds of space object or damage caused by components shall bear international liability. This fully applies to this
Kind of space object carrying a nuclear power source case. Two or more States jointly launch a space object,
Each launching State shall in accordance with the above Article of the Convention for any damages jointly and severally liable.
2. Such countries under the aforesaid Convention shall bear the damages shall be in accordance with international law and fair and reasonable
The principles set out in order to provide for damages to make a claim on behalf of its natural or juridical persons, national or
International organizations to restore to the state before the occurrence of the damage.
3. For the purposes of this principle, compensation should be made to include reimbursement of the duly substantiated expenses for search, recovery and clean
Cost management work, including the cost of providing assistance to third parties.
10. The principle of dispute settlement
Since the implementation of these principles will lead to any dispute in accordance with the provisions of the UN Charter, by negotiation or
Other established procedures to resolve the peaceful settlement of disputes.
Here quoted the important provisions of the United Nations concerning the use of outer space for peaceful nuclear research and international conventions, the main emphasis on the Peaceful Uses of provisions related constraints .2 the use of nuclear rockets in outer space nuclear studies, etc., can cause greater attention in nuclear power nuclear rocket ship nuclear research, manufacture, use and other aspects of the mandatory hard indicators. this scientists, engineering and technical experts are also important constraints and requirements. as IAEA supervision and management as very important.
2. radiation. Space radiation is one of the greatest threats to the safety of the astronauts, including X-rays, γ-rays, cosmic rays and high-speed solar particles. Better than aluminum protective effect of high polymer composite materials.
3. Air. Perhaps the oxygen needed to rely on oxidation-reduction reaction of hydrogen and ilmenite production of water, followed by water electrolysis to generate oxygen. Mars oxygen necessary for survival but also from the decomposition of water, electrolytically separating water molecules of oxygen and hydrogen, this oxygen equipment has been successfully used in the International Space Station. Oxygen is released into the air to sustain life, the hydrogen system into the water system.
4. The issue of food waste recycling. At present, the International Space Station on the use of dehumidifiers, sucked moisture in the air to be purified, and then changed back to drinkable water. The astronauts' urine and sweat recycling. 5. water. The spacecraft and the space station on purification system also makes urine and other liquids can be purified utilization. 6. microgravity. In microgravity or weightlessness long-term space travel, if protective measures shall not be treated, the astronauts will be muscle atrophy, bone softening health. 7. contact. 8. Insulation, 9 energy. Any space exploration are inseparable from the energy battery is a new super hybrid energy storage device, the asymmetric lead-acid batteries and supercapacitors in the same compound within the system - and the so-called inside, no additional separate electronic control unit, this is an optimal combination. The traditional lead-acid battery PbO2 monomer is a positive electrode plate and a negative electrode plate spongy Pb composition, not a super cell. : Silicon solar cells, multi-compound thin film solar cells, multi-layer polymer-modified electrode solar cells, nano-crystalline solar cells, batteries and super class. For example, the solar aircraft .10. To protect the health and life safety and security systems. Lysophosphatidic acid LPA is a growth factor-like lipid mediators, the researchers found that this substance can on apoptosis after radiation injury and animal cells was inhibited. Stable lysophosphatidic acid analogs having the hematopoietic system and gastrointestinal tract caused by acute radiation sickness protection, knockout experiments show that lysophosphatidic acid receptors is an important foundation for the protection of radiation injury. In addition to work under high pressure, the astronauts face a number of health threats, including motion sickness, bacterial infections, blindness space, as well as psychological problems, including toxic dust. In the weightless environment of space, the astronaut's body will be like in preadolescents, as the emergence of various changes.
Plantar molt
After the environment to adapt to zero gravity, the astronaut's body will be some strange changes. Weightlessness cause fluid flow around the main flow torso and head, causing the astronauts facial swelling and inflammation, such as nasal congestion. During long-term stay in space
Bone and muscle loss
Most people weightlessness caused by the impact may be known bone and muscle degeneration. In addition, the calcium bones become very fragile and prone to fracture, which is why some of the astronauts after landing need on a stretcher.
Space Blindness
Space Blindness refers astronaut decreased vision.
Solar storms and radiation is one of the biggest challenges facing the long-term space flight. Since losing the protection of Earth's magnetic field, astronauts suffer far more than normal levels of radiation. The cumulative amount of radiation exposure in low earth orbit them exceeded by workers close to nuclear reactors, thereby increasing the risk of cancer.
Prolonged space flight can cause a series of psychological problems, including depression or mood swings, vulnerability, anxiety and fear, as well as other sequelae. We are familiar with the biology of the Earth, the Earth biochemistry, biophysics, after all, the Earth is very different astrophysics, celestial chemistry, biophysics and astrophysics, biochemistry and other celestial bodies. Therefore, you must be familiar with and adapt to these differences and changes.
Osteoporosis and its complications ranked first in the space of disease risk.
Long-term health risks associated with flying Topics
The degree of influence long-term biological effects of radiation in human flight can withstand the radiation and the maximum limit of accumulated radiation on physiology, pathology and genetics.
Physiological effects of weightlessness including: long-term bone loss and a return flight after the maximum extent and severity of the continued deterioration of other pathological problems induced by the; maximum flexibility and severity of possible long-term Flight Center in vascular function.
Long-term risk of disease due to the high risk of flight stress, microbial variation, decreased immune function, leading to infections
Radiation hazards and protection
1) radiation medicine, biology and pathway effects Features
Radiation protection for interplanetary flight, since the lack of protective effect of Earth's magnetic field, and by the irradiation time is longer, the possibility of increased radiation hazard.
Analysis of space flight medical problems that may occur, loss of appetite topped the list, sleep disorders, fatigue and insomnia, in addition, space sickness, musculoskeletal system problems, eye problems, infections problems, skin problems and cardiovascular problems
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Development of diagnostic techniques in orbit, the development of the volume of power consumption, features a wide range of diagnostic techniques, such as applied research of ultrasound diagnostic techniques in the abdominal thoracic trauma, bone, ligament damage, dental / sinus infections and other complications and integrated;
Actively explore in orbit disposal of medical technology, weightlessness surgical methods, development of special surgical instruments, the role of narcotic drugs and the like.
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However, space technology itself is integrated with the use of the most advanced technology, its challenging technical reserves and periodic demanding
With the continuous development of science and technology, space agencies plan a manned landing on the moon and Mars, space exploration emergency medicine current concern.
Space sickness
In the weightless environment of space, in the weightless environment of space, surgery may be extremely difficult and risky.
Robot surgeons
Space disease in three days after entering the space started to ease, although individual astronauts might subsequently relapse. January 2015 NASA declared working on a fast, anti-nausea and nasal sprays. In addition, due to the zero-gravity environment, and anti-nausea drugs can only be administered by injection or transdermal patches manner.
Manned spaceflight in the 21st century is the era of interplanetary flight, aerospace medicine is closely watched era is the era of China's manned space flourish. Only the central issue, and grasp the opportunity to open up a new world of human survival and development.
Various emergency contingency measures in special circumstances. Invisible accident risk prevention. Enhancing drugs and other screening methods immunity aerospace medicine and tissue engineering a microgravity environment. Drug mixture of APS, ginseng polysaccharides, Ganoderma lucidum polysaccharides, polysaccharides and Lentinan, from other compounds. Drug development space syndrome drug, chemical structure modification will be an important part.
These issues are very sensitive, cutting-edge technology is a major difficulty landing on Mars. Countries in the world, especially the world's major space powers in the country strategies and technical research, the results of all kinds continue to emerge. United States, Russia, China, Europe, India, Japan and other countries is different. United States, Russia extraordinary strength. Many patented technology and health, and most belong to the top-secret technology. Especially in aerospace engineering and technological achievements is different from the general scientific literature, practical, commercial, industrial great, especially the performance of patents, know-how, technical drawings, engineering design and other aspects. Present Mars and return safely to Earth, the first manned, significance, everything is hard in the beginning, especially the first person to land on Mars This Mars for Human Sciences Research Mars, the moon, the earth, the solar system and the universe, life and other significant. Its far greater than the value of direct investments and business interests.
In addition, it is the development of new materials, suitable for deep space operations universe, life, and other detection, wider field.
Many aerospace materials, continuous research and development of materials are key areas of aerospace development, including material rocket, the spacecraft materials, the suit materials, radiation materials, materials and equipment, instruments, materials and so on biochemistry.
Temperature metal-based compound with a metal matrix composite body with a more primordial higher temperature strength, creep resistance, impact resistance, thermal fatigue and other excellent high temperature performance.
In B, C, SiC fiber reinforced Ti3Al, TiAl, Ni3Al intermetallic matrix composites, etc.
W Fiber Reinforced with nickel-based, iron-based alloys as well as SiC, TiB2, Si3N4 and BN particle reinforced metal matrix composites
High temperature service conditions require the development of ceramic and carbon-based composite materials, etc., not in this eleven Cheung said.
Fuel storage
In order to survive in space, people need many things: food, oxygen, shelter, and, perhaps most importantly, fuel. The initial quality Mars mission somewhere around 80 percent of the space launch humans will be propellant. The fuel amount of storage space is very difficult.
This difference in low Earth orbit cause liquid hydrogen and liquid oxygen - rocket fuel - vaporization.
Hydrogen is particularly likely to leak out, resulting in a loss of about 4% per month.
When you want to get people to Mars speed to minimize exposure to weightlessness and space radiation hazards
Mars
Landings on the Martian surface, they realized that they reached the limit. The rapid expansion of the thin Martian atmosphere can not be very large parachute, such as those that will need to be large enough to slow down, carry human spacecraft.
Therefore, the parachute strong mass ratio, high temperature resistance, Bing shot performance and other aspects of textile materials used have special requirements, in order to make a parachute can be used in rockets, missiles, Yu arrows spacecraft and other spacecraft recovery, it is necessary to improve the canopy heat resistance, a high melting point polymeric fiber fabric used, the metal fabric, ceramic fiber fabrics, and other devices.
Super rigid parachute to help slow the landing vehicle.
Spacecraft entered the Martian atmosphere at 24,000 km / h. Even after slowing parachute or inflatable, it will be very
Once we have the protection of the Earth magnetic field, the solar radiation will accumulate in the body, a huge explosion threw the spacecraft may potentially lethal doses of radiation astronauts.
In addition to radiation, the biggest challenge is manned trip to Mars microgravity, as previously described.
The moon is sterile. Mars is another case entirely.
With dust treatment measures.
Arid Martian environment to create a super-tiny dust particles flying around the Earth for billions of years.
Apollo moon dust encountered. Ultra-sharp and abrasive lunar dust was named something that can clog the basic functions of mechanical damage. High chloride salt, which can cause thyroid problems in people.
Mars geological structure and geological structure of the moon, water on Mars geology, geology of the Moon is very important, because he, like the Earth's geology is related to many important issues. Water, the first element of life, air, temperature, and complex geological formations are geological structure. Cosmic geology research methods, mainly through a variety of detection equipment equipped with a space probe, celestial observations of atmospheric composition, composition and distribution of temperature, pressure, wind speed, vertical structure, composition of the solar wind, the water, the surface topography and Zoning, topsoil the composition and characteristics of the component surface of the rock, type and distribution, stratigraphic sequence, structural system and the internal shell structure.
Mars internal situation only rely on its surface condition of large amounts of data and related information inferred. It is generally believed that the core radius of 1700 km of high-density material composition; outsourcing a layer of lava, it is denser than the Earth's mantle some; outermost layer is a thin crust. Compared to other terrestrial planets, the lower the density of Mars, which indicates that the Martian core of iron (magnesium and iron sulfide) with may contain more sulfur. Like Mercury and the Moon, Mars and lack active plate movement; there is no indication that the crust of Mars occurred can cause translational events like the Earth like so many of folded mountains. Since there is no lateral movement in the earth's crust under the giant hot zone relative to the ground in a stationary state. Slight stress coupled with the ground, resulting in Tharis bumps and huge volcano. For the geological structure of Mars is very important, which is why repeated explorations and studies of Martian geological reasons.
Earth's surface
Each detector component landing site soil analysis:
Element weight percent
Viking 1
Oxygen 40-45
Si 18-25
Iron 12-15
K 8
Calcium 3-5
Magnesium 3-6
S 2-5
Aluminum 2-5
Cesium 0.1-0.5
Core
Mars is about half the radius of the core radius, in addition to the primary iron further comprises 15 to 17% of the sulfur content of lighter elements is also twice the Earth, so the low melting point, so that the core portion of a liquid, such as outside the Earth nuclear.
Mantle
Nuclear outer coating silicate mantle.
Crust
The outermost layer of the crust.
Crustal thickness obtained, the original thickness of the low north 40 km south plateau 70 kilometers thick, an average of 50 kilometers, at least 80 km Tharsis plateau and the Antarctic Plateau, and in the impact basin is thin, as only about 10 kilometers Greece plains.
Canyon of Mars there are two categories: outflow channels (outflow channel) and tree valley (valley network). The former is very large, it can be 100 km wide, over 2000 km long, streamlined, mainly in the younger Northern Hemisphere, such as the plain around Tyre Chris Canyon and Canyon jam.
In addition, the volcanic activity sometimes lava formation lava channels (lava channel); crustal stress generated by fissures, faults, forming numerous parallel extending grooves (fossa), such as around the huge Tharsis volcanic plateau radially distributed numerous grooves, which can again lead to volcanic activity.
Presumably, Mars has an iron as the main component of the nucleus, and contains sulfur, magnesium and other light elements, the nuclear share of Mars, the Earth should be relatively small. The outer core is covered with a thick layer of magnesium-rich silicate mantle, the surface of rocky crust. The density of Earth-like planets Mars is the lowest, only 3.93g / cc.
Hierarchy
The crust
Lunar core
The average density of the Moon is 3.3464 g / cc, the solar system satellites second highest (after Aiou). However, there are few clues mean lunar core is small, only about 350 km radius or less [2]. The core of the moon is only about 20% the size of the moon, the moon's interior has a solid, iron-rich core diameter of about 240 kilometers (150 miles); in addition there is a liquid core, mainly composed of iron outer core, about 330 km in diameter (205 miles), and for the first time compared with the core of the Earth, considered as the earth's outer core, like sulfur and oxygen may have lighter elements [4].
Chemical elements on the lunar surface constituted in accordance with its abundance as follows: oxygen (O), silicon (Si), iron (Fe), magnesium (Mg), calcium (Ca), aluminum (Al), manganese (Mn), titanium ( Ti). The most abundant is oxygen, silicon and iron. The oxygen content is estimated to be 42% (by weight). Carbon (C) and nitrogen (N) only traces seem to exist only in trace amounts deposited in the solar wind brings.
Lunar Prospector from the measured neutron spectra, the hydrogen (H) mainly in the lunar poles [2].
Element content (%)
Oxygen 42%
Silicon 21%
Iron 13%
Calcium 8%
Aluminum 7%
Magnesium 6%
Other 3%
Lunar surface relative content of each element (% by weight)
Moon geological history is an important event in recent global magma ocean crystallization. The specific depth is not clear, but some studies have shown that at least a depth of about 500 kilometers or more.
Lunar landscape
Lunar landscape can be described as impact craters and ejecta, some volcanoes, hills, lava-filled depressions.
Regolith
TABLE bear the asteroid and comets billions of years of bombardment. Over time, the impact of these processes have already broken into fine-grained surface rock debris, called regolith. Young mare area, regolith thickness of about 2 meters, while the oldest dated land, regolith thickness of up to 20 meters. Through the analysis of lunar soil components, in particular the isotopic composition changes can determine the period of solar activity. Solar wind gases possible future lunar base is useful because oxygen, hydrogen (water), carbon and nitrogen is not only essential to life, but also may be useful for fuel production. Lunar soil constituents may also be as a future source of energy.
Here, repeatedly stressed that the geological structure and geological structure of celestial bodies, the Earth, Moon, Mars, or that this human existence and development of biological life forms is very important, especially in a series of data Martian geological structure geological structure is directly related to human landing Mars and the successful transformation of Mars or not. for example, water, liquid water, water, oxygen, synthesis, must not be taken lightly.
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Mars landing 10 Technology
Aerospace Science and space science and technology major innovation of the most critical of sophisticated technology R & D project
[
"1" rocket propulsion technology ion fusion nuclear pulse propulsion rocket powered high-speed heavy rocket technology, space nuclear reactors spacecraft] brought big problems reflected in the nuclear reaction, nuclear radiation on spacecraft launch, control, brakes and other impact.
In particular, for the future of nuclear power spacecraft, the need to solve the nuclear reactor design, manufacture, control, cooling, radiation shielding, exhaust pollution, high thermoelectric conversion efficiency and a series of technical problems.
In particular, nuclear reactors produce radiation on astronauts' health will pose a great threat, which requires the spacecraft to be nuclear radiation shielding to ensure astronaut and ship the goods from radiation and heat from the reactor influence, but this will greatly increase the weight of the detector.
Space nuclear process applications, nuclear reaction decay is not a problem, but in a vacuum, ultra-low temperature environment, the nuclear reaction materials, energy transport materials have very high demands.
Space facing the reality of a nuclear reactor cooling cooling problems. To prevent problems with the reactor, "Washington" aircraft carrier to take four heavy protective measures for the radiation enclosed in the warship. These four measures are: the fuel itself, fuel storage pressure vessel, reactor shell and the hull. US Navy fuel all metal fuel, designed to take the impact resistance of the war, does not release fission product can withstand more than 50 times the gravity of the impact load; product of nuclear fission reactor fuel will never enter loop cooling water. The third layer of protection is specially designed and manufactured the reactor shell. The fourth layer is a very strong anti-impact combat ship, the reactor is arranged in the center of the ship, very safe. Engage in a reactor can only be loaded up to the aircraft, so as to drive the motor, and then drive the propeller. That is the core advantage of the heat generated by the heated gas flow, high temperature high pressure gas discharge backward, thereby generating thrust.
.
After installation AMPS1000 type nuclear power plant, a nuclear fuel assembly: He is a core member of the nuclear fuel chain reaction. Usually made into uranium dioxide, of which only a few percent uranium-235, and most of it is not directly involved in the nuclear fission of uranium 238. The uranium dioxide sintered into cylindrical pieces, into a stainless steel or a zirconium alloy do metal tubes called fuel rods or the original, then the number of fuel rods loaded metal cylinder in an orderly composition of the fuel assembly, and finally put a lot of vertical distribution of fuel assemblies in the reactor.
Nuclear reactor pressure vessel is a housing for containing nuclear fuel and reactor internals, for producing high-quality high-strength steel is made to withstand the pressure of dozens MPa. Import and export of the coolant in the pressure vessel.
The top of the pressure vessel closure, and can be used to accommodate the fixed control rod drive mechanism, pressure vessel head has a semi-circular, flat-topped.
Roof bolt: used to connect the locking pressure vessel head, so that the cylinder to form a completely sealed container.
Neutron Source: Plug in nuclear reactors can provide sufficient neutron, nuclear fuel ignition, to start to enhance the role of nuclear reactors and nuclear power. Neutron source generally composed of radium, polonium, beryllium, antimony production. Neutron source and neutron fission reactors are fast neutron, can not cause fission of uranium 235, in order to slow down, we need to moderator ---- full of pure water in a nuclear reactor. Aircraft carriers, submarines use nuclear reactor control has proven more successful.
Rod: has a strong ability to absorb neutrons, driven by the control rod drive mechanism, can move up and down in a nuclear reactor control rods within the nuclear fuel used to start, shut down the nuclear reactor, and maintain, regulate reactor power. Hafnium control rods in general, silver, indium, cadmium and other metals production.
Control rod drive mechanism: He is the executive body of nuclear reactors operating system and security protection systems, in strict accordance with requirements of the system or its operator control rod drives do move up and down in a nuclear reactor, nuclear reactor for power control. In a crisis situation, you also can quickly control rods fully inserted into the reactor in order to achieve the purpose of the emergency shutdown
Upper and lower support plate: used to secure the fuel assembly. High temperature and pressure inside the reactor is filled with pure water (so called pressurized water reactors), on the one hand he was passing through a nuclear reactor core, cooling the nuclear fuel, to act as a coolant, on the other hand it accumulates in the pressure vessel in play moderated neutrons role, acting as moderator.
Water quality monitoring sampling system:
Adding chemical system: under normal circumstances, for adding hydrazine, hydrogen, pH control agents to the primary coolant system, the main purpose is to remove and reduce coolant oxygen, high oxygen water suppression equipment wall corrosion (usually at a high temperature oxygen with hydrogen, especially at low temperatures during startup of a nuclear reactor with added hydrazine oxygen); when the nuclear reactor control rods stuck for some reason can not shutdown time by the the system can inject the nuclear reactor neutron absorber (such as boric acid solution), emergency shutdown, in order to ensure the safety of nuclear submarines.
Water system: a loop inside the water will be reduced at work, such as water sampling and analysis, equipment leaks, because the shutdown process cooling water and reduction of thermal expansion and contraction.
Equipment cooling water system:
Pressure safety systems: pressure reactor primary coolant system may change rapidly for some reason, the need for effective control. And in severe burn nuclear fuel rods, resulting in a core melt accident, it is necessary to promptly increase the pressure. Turn the regulator measures the electric, heating and cooling water. If necessary, also temporary startup booster pump.
Residual Heat Removal System: reactor scram may be due to an accident, such as when the primary coolant system of the steam generator heat exchanger tube is damaged, it must be urgently closed reactors.
Safety Injection System: The main components of this system is the high-pressure injection pump.
Radioactive waste treatment systems:
Decontamination Systems: for the removal of radioactive deposits equipment, valves, pipes and accessories, and other surfaces.
Europe, the United States and Russia and other countries related to aircraft carriers, submarines, icebreakers, nuclear-powered research aircraft, there are lots of achievements use of nuclear energy, it is worth analysis. However, nuclear reactor technology, rocket ships and the former are very different, therefore, requires special attention and innovative research. Must adopt a new new design techniques, otherwise, fall into the stereotype, it will avail, nothing even cause harm Aerospace.
[ "2" spacecraft structure]
[ "3"] radiation technology is the use of deep-sea sedimentation fabric fabrics deepwater technology development precipitated silver metal fibers or fiber lint and other materials and micronaire value between 4.1 to 4.3 fibers made from blends. For radiation protection field, it greatly enhances the effects of radiation and service life of clothing. Radiation resistant fiber) radiation resistant fiber - fiber polyimide polyimide fibers
60 years the United States has successfully developed polyimide fibers, it has highlighted the high temperature, radiation-resistant, fire-retardant properties.
[ "4" cosmic radiation resistant clothing design multifunctional anti-aging, wear underwear] ① comfort layer: astronauts can not wash clothes in a long flight, a lot of sebum, perspiration, etc. will contaminate underwear, so use soft, absorbent and breathable cotton knitwear making.
② warm layer: at ambient temperature range is not the case, warm layer to maintain a comfortable temperature environment. Choose warm and good thermal resistance large, soft, lightweight material, such as synthetic fibers, flakes, wool and silk and so on.
③ ventilation and cooling clothes clothes
Spacesuit
In astronaut body heat is too high, water-cooled ventilation clothing and clothing to a different way of heat. If the body heat production more than 350 kcal / h (ventilated clothes can not meet the cooling requirements, then that is cooled by a water-cooled suit. Ventilating clothing and water-cooled multi-use compression clothing, durable, flexible plastic tubing, such as polyvinyl chloride pipe or nylon film.
④ airtight limiting layer:
⑤ insulation: astronaut during extravehicular activities, from hot or cold insulation protection. It multilayer aluminized polyester film or a polyimide film and sandwiched between layers of nonwoven fabric to be made.
⑥ protective cover layer: the outermost layer of the suit is to require fire, heat and anti-space radiation on various factors (micrometeorites, cosmic rays, etc.) on the human body. Most of this layer with aluminized fabric.
New space suits using a special radiation shielding material, double design.
And also supporting spacesuit helmet, gloves, boots and so on.
[ "5" space - Aerospace biomedical technology, space, special use of rescue medication Space mental health care systems in space without damage restful sleep positions - drugs, simple space emergency medical system
]
[ "6" landing control technology, alternate control technology, high-performance multi-purpose landing deceleration device (parachute)]
[ "7" Mars truck, unitary Mars spacecraft solar energy battery super multi-legged (rounds) intelligent robot] multifunction remote sensing instruments on Mars, Mars and more intelligent giant telescope
[8 <> Mars warehouse activities, automatic Mars lander - Automatic start off cabin
]
[ "9" Mars - spacecraft docking control system, return to the system design]
Space flight secondary emergency life - support system
Spacecraft a
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