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I created these illustrations for a video that promotes Philadelphia as the perfect testbed for the google high speed fiber initiative. The video will go live on Friday, but I thought I'd get them up ahead of time. To find out more about the public-private partnership in Philly to promote the City of Firsts as a site for this project, please visit gigabitphilly.com And if you have ideas for how Philly could use an ultra high bandwidth data network that connects individuals, industry, and government, please submit your ideas here. You can also show your support by coming to the press conference with Philadelphia Mayor tomorrow (Thursday, March 25) at 2:30 at City Hall on the 2nd floor. A high speed data network in Philly has the potential to accelerate our medical, film production, university, technology, financial services, and community sectors by letting people share massive amounts of data rapidly---that means rich interactivity, problem solving, and communication. Gigabit Philly Videos GigabitPhilly Site GigabitPhilly Facebook Fanpage Follow GigabitPhilly on Twitter Can you imagine Gigabit Philly? ---Jonny Goldstein

Out of this world public domain images from NASA. All original images and many more can be found from the NASA Image Library

 

Curated higher resolutions with digital enhancement without attribution required can be downloaded: www.rawpixel.com/board/418580/nasa

 

This is a free download under CC Attribution ( CC BY 4.0) Please credit NASA and rawpixel.com.

 

The team fills the Morpheus lander's tanks with liquid oxygen.

 

Location: Johnson Space Center

Photographer: Kris Kehe

technology testbed for Agile UAV programme

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

  

Reference shot.

 

Taken with my Nokia N86 8MP mobile.

  

Copyright © 2010 A380spotter. All rights reserved.

The team fills the Morpheus lander's tanks with liquid oxygen.

 

Location: Johnson Space Center

Photographer: Kris Kehe

The Airborne Laser program, formerly of the 452nd Flight Test Squadron, now falls under the 417th Flight Test Squadron, which was activated in a ceremony Thursday. The 417th FLTS, comprised of about 750 people, including the contractor workforce and the government workforce, is responsible for flight testing the YAL-1A "Airborne Laser" aircraft, shown above. The aircraft is currently in Wichita, Kan., receiving modifications to the sub-structure of the aircraft to accommodate the integration of the weapons system-un-edited-Not part of my personal collection

Boeing 747-446 c/n 26355/1024

Inside JPL's Mars Sample Return (MSR) Sample Transfer Testbed where MSR Lead Engineer Austin Nicholas shows off a prototype Orbiting Sample canister.

 

NASA opened its doors to media and social media its annual "State of NASA" event, Monday, Feb. 10, 2020, at the agency’s locations across the country, including the Jet Propulsion Laboratory in Pasadena, California. JPL hosted 29 digital creators to learn how the center’s robotic missions help future human exploration of the Moon and Mars. Participants met scientists and engineers, and went behind the scenes in mission control, an indoor "Mars Yard" for testing landers and rovers, and the Spacecraft Assembly Facility, where Mars 2020, NASA's next rover, is preparing for launch later this year. www.nasa.gov/social/state-of-nasa

 

Credit: NASA/JPL-Caltech

Reshade 0.18.1 Framework Extreme Eyecancer Mod Testbed 0.2B

 

Blackfire's mod + TOD + Reli2

Ini tweaks + POM enabled

 

Lite TOD, light shadows, nohud, dof %25-50, adjusted brightess, contrast and gamma + exposure. MSAA Disabled. SSAO enabled.

80º FoV,

 

Custom helmet mesh lens texture (reworked)

------

Framework Config

 

SweetFX

{ SMAA

Tonemap

Vibrance

Film Grain

Letterbox }

 

McFX

{ Fisheye CA }

 

GemFX

{ LensDirt

Ambient Light + ambient light controls for Bloom, Lens and vibrance + advanced eye adaptation }

 

& Improved performance again, render mode 8bit

  

11/2014 - Altoona, PA

Inside the cab of NS 1000, formerly Conrail Q1, the SD45 engine testbed used at the Juniata Shops. Built 6/1968.

ATR 72-600 test-bed and demonstrator visiting Guernsey. It performed several circuits in low visibility conditions before returning to Toulouse.

 

Airfield: Guernsey Airport (GCI/EGJB)

Arriva London Ltd.:

 

DW411 was retrofitted with a new driveline, as a testbed for what would become the Wrightbus StreetDeck. The original 6-cyl Cummins ISBe engine was replaced with the Mercedes-Benz (Daimler) OM934. The vehicle caught fire shortly after arrival to the London fleet in 2011, so instead of being written off, she was given a new lease of life, and a slightly different identity!

 

VDLbus DB300 (Daimler) /

Wrightbus Gemini 2DL (10.5m)

H41/24D - 2011

 

Clapton Common, Stamford Hill (A107)

 

Saturday 1st August 2015

+++ DISCLAIMER +++

Nothing you see here is real, even though the conversion or the presented background story might be based on historical facts. BEWARE!

 

An experiment with A.I.-based picture generation, using a still/portrait as a starting point.

  

Some background:

The MBR-07 Spartan was born as a humanoid-type weapon from the United Nations Military ambulatory weapons program. The MBR-07 Spartan was the second-place participant, the winning design became the Main Battle Robot-Series 04 family of Destroids that included the Tomahawk and specialized variants like the Defender and the Phalanx. However, soon after the 04 family’s introduction field experience suggested that a higher hand-to-hand combat capability was required to protect the MBRs which rather carried medium- and long-range weapons. This tactical gap led to the MBR-07 Spartan and its unique chassis, which had been specifically designed for unarmed close combat, but its development encompassed a series of prototypes that honed the technical aspects of this task.

 

Joint development of the MBR-07 by Centinental and the Kransmann followed one year and two months after the first MBR-04 series Destroids began design in 2003 at Viggers Chrauler. One of the experimental designs that supported its optimization as a close combat Battle Robot was the XMBR-04-Mk. VII, unofficially nicknamed “Pollux” (after the mythical Greek siblings (Castor being Pollux’ brother); during the expedition of the Argonauts, Pollux took part in a boxing contest and defeated King Amycus of the Bebryces, a savage mythical people in Bithynia).

As straightforward proof-of-concept vehicles for the required powerful and highly articulated arms as well as the corresponding reinforced internal structures that would support them when deployed as contact weapons, two MBR-04-Mk. VI “Tomahawk” Destroid chassis’ were set aside by Viggers Chrauler as testbeds.

One of them (“Pollux I”) was used to develop and test new rigid arms and their mounts, provided by Centinental, plus highly articulated claw hands made by Norman Banks with 5-finger manipulators, while the second one (“Pollux II”) received a new upper body to improve the swivel capability of the waist and test a new balancing system designed by Kransmann. This system would allow much more dynamic movements of the massive Destroid, including kicks, punches, and even complex martial arts stunts. Both elements would later be combined into the new MBR-07 chassis and the Spartan family of Destroids based on it.

 

The two Pollux prototypes went through quick but thorough testing in late 2003 and in early 2004 the U.N. Spacy Ground Forces ordered a small pre-production series of the experimental type to test the systems under field conditions. Outwardly the serial MBR-04-Mk. VII looked like the 1st prototype, but it already used the new balance system for the MBR-07 as well as improved servos to deliver much more effective close combat attacks than any other humanoid weapon in the U.N. Spacy's inventory, coming close to the VF-1's agility but adding considerably more force to the punch. These tests lasted until early 2005 and a total of twenty MBR-04-Mk. VIIs, which retained the unofficial "Pollux" moniker in service, were built.

 

By the same time the Spartan Mk. I entered trial production in February 2005, too, and by January 2008 Mk I units were beginning first rollout but were quickly superseded by the redesigned Mk. II variant after it had become clear that a pure close-combat robot was too vulnerable, esp. against air attacks. All Mk I units were later upgraded into Mk II units, and the small Pollux force retired from frontline service and rather relegated to pioneer/marines units where its power and manual agility became welcome asset.

  

General characteristics:

Equipment Type: main battle robot, Series 04, optimized for close/hand-to-hand combat

Government: U.N. Spacy

Manufacturer: Viggers Chrauler (chassis)

Centinental/Kransmann (arms and corresponding ambulatrory system)

Introduction: Prototypes 01 & 02 in September 2003

Pre-production models in March 2004

Accommodation: 1 pilot only

 

Dimensions:

Height: 11.27 meters (to shoulder), 12.7 meters (overall)

Length: 5.1 meters

Width: 7.9 meters

Mass: 27.8 metric tons

 

Power Plant:

Kranss-Maffai MT808 thermonuclear reactor developing 2800 bhp;

auxiliary generator GE EM9G fuel generator rated at 450 kW

 

Propulsion:

Multiple low-thrust vernier thrusters beneath multipurpose hook/handles

 

Armament:

2x Norman Banks CH2-TYPED claw hand with 5-finger manipulators

Provisions for 2x Bifors close-in self-guided rocket launchers, 12 rockets each (not mounted)

1x optional metallic club (for hand-to-hand combat)

  

The kit and its assembly:

This kitbashing project was inspired by a sketch I recently came across while doing internet research. I assume that it is not an official Macross design, rather a fan-art/dojinshi design, because I could not find reference to it in official sources, any other media with or, or even come up with a name. However, what triggered me was the fact that it looks like a prototype/test rig for the close-combat Spartan, just based on a Tomahawk chassis? Overall, this made it a plausible missing link, and since I have already built/scratched/converted a Spartan Mk. II into its earlier Mk. I variant, adding another (probably fictional, bu6t who knows?” ancestor to the collection of 1:100 Destroid models was a logical step.

 

Another selling point was that I had an Imai Tomahawk kit stashed away with no concrete plan yet, and at first glance only a Spartan's arms would be necessary as donorparts to bring the illustration into hardware form. Finding a suitable donor kit turned out to be almost impossible: Arii Spartan kits in 1:100 have become rare and mind-boggingly expensive, and things became so desperate that I eventually procured one of those ugly chrome-plated "Metal" kits as donor source. This had two drawbacks: despite being quite cheap the kit’s postage from the USA more than doubled its price, and the plating had to go before could use the parts for my plans.

 

Stripping the sprues’ plating off took several weeks and the help of sodium hydroxide, foamed oven cleaner, and patience. This procedure revealed, to my surprise, that the "Metal Spartan"'s polystyrene color of the individual sprues was different, ranging from mint green to a greenish ochre!

 

Technically the model is a kitbashing, but in order to improve the kit(s) and/or make life a little easier I made some visible and invisible mods. Most obvious difference are the shoulder mounts that attach the Spartan arms to the Tomahawk torso. Taken OOB they are mechanically not compatible, and to make life easier I decided to transplant the Spartan’s complete arms, including the upper arms/shoulder sections, what was easier than trying to adapt the Tomahawk shoulders to the Spartan's lower arms AND to improve the shoulder joints so far that they would be movable at all when the body would be completed. This is just one of the Tomahawk kit’s many issues, in this case because the Tomahawk kit is a very early mecha model, a very simple construction and without any vinyl caps for the joints (which the 1:100 Spartan kit already has!). Another selling point of the Spartan's shoulders is that their diameter is slightly bigger than the openings in the Tomahawk's torso flanks, so that they would cover them well.

To center and align the “foreign objects” properly I had to build an internal carrier structure with the Spartan's vinyl-cap-bearing sockets for the arms, scratched from styrene profiles, and mounted into the right position. Similar material was used to create a new vertical pelvic joint that would allow to keep upper and lower body separate for painting, and I scratched a two-dimensional hip joint from steel wire and styrene tubes that would allow a much more dynamic, "open" leg position (and even slight movement). Another small measure that improves the model's looks is to fill the hollow heels of the legs. All hardly visible efforts which are nevertheless IMHO worthwhile to make this old 1:100 Destroid model look much more convincing.

 

Other small mods are additional surface details created with styrene bits, and I added shoulder hardpoints that carry a searchlight (left over from a 1:72 ESCI M48 tank) and something that I’d interpret as a camera, inspired by the mecha’s drawing. The Tomahawk’s prominent gun clusters on the lower torso as well as the machine guns at the cockpit flanks were deleted and faired over. On the torso they were replaced with 3D shapes made from 2C putty, which extend the shoulder missile launchers' covers downwards.

  

Painting and markings:

While I am not a fan of pop colors like violet (esp. on “real robots”!) I decided to stay true to the mecha drawing and adopt the shown purple/white paint scheme. I (still) had a tin of ancient Humbrol Authentic "IJN Purple" (then called HJ04 "Mauve") at hand which turned out to be an almost perfect match as basic overall color, with the benefit that it IS a purplish tone, but very dull and with lots of grey. The light contrast areas were painted with RAL 9002 (Grauweiß). Once thoroughly dry the parts received a black ink washing and some post-shading as well as dry-brushing with ModelMaster's "Napoleonic Violet" and medium grey (Revell 47) around the edges to emphasize details and add a worn look.

 

The black-and-yellow warning stripes on arms and feet are generic decals from TL-Modellbau, and I decided to add some tactical markings and stencils from the Tomahawk's OOB sheet and the scrap box, to give the model a more realistic look. After a coat with matt acrylic varnish, I added mud and dust stains esp. around the feet with watercolors and mineral pigments, as a result of thorough "field tests".

VX-1 Operational Test and Evaluation Force P-3A Orion BuNo 150509, JA-42, DELTIC testbed (NADC 1972-1973). Official U.S. Navy photo.

Preserved as a testbed in front of Tudor Tech Scan factory at Saint-Imier, Switzerland. Seen from the train at Saint-Imier. Located west of railway station, around 20 minutes of walk.

As the file name says. I picked up these photos (one more to come) recently, in a bric-a-brac/ephemera shop. They weren't cheap-the guy knew their value to an aircraft enthusiast. From a newspaper cutting in the album containing all the photos, I know they were taken by a young woman who went out to Japan in about 1953, to join her US Serviceman husband.

 

For full story on this photo/how I've managed-approximately/likely to date and locate it, click on this link:

www.flickr.com/photos/48975048@N06/14398520840/in/photost...

 

From some research on Google, quite a few Lancastrians were used as jet test beds, so I can't precisely ID this aircraft. But perhaps someone a good deal older than me, here, could possibly do that and locate the air show, plus give us its date.

 

When I saw this photo, I thought "Great, a Lancastrian" (a type I never saw-way before my time). But when I had scanned it in and blew up it up, I was then "blown away" to discover that it wasn't just any old Lancastrian (tho that was marvellous enough in itself), but a part jet-powered one, making it even rarer!

 

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

  

Copyright © 2012 A380spotter. All rights reserved.

Geared Turbo Fan First Flight, Pure Power Engines, Pure Power 1000G, 747 SP Flying Testbed.

A Bristol Siddeley-Maybach MD655 engine, from a BR Western Region Class 52 diesel-hydraulic locomotive, under stationary test at Swindon Works. Taken on an open day, Saturday 13th September 1975. The engineer in charge ...a white-coated, bespectacled, middle-aged man... sat behind the window of a control room at the top of a flight of steps. From time to time he would notch up a handle on his console to increase the engine revs, which were displayed as flickering red numerals on a screen. In the confined space this produced a most satisfying din.

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

  

Reference shot.

 

Taken with my Nokia N86 8MP mobile.

 

I created these illustrations for a video that promotes Philadelphia as the perfect testbed for the google high speed fiber initiative. The video will go live on Friday, but I thought I'd get them up ahead of time. To find out more about the public-private partnership in Philly to promote the City of Firsts as a site for this project, please visit gigabitphilly.com And if you have ideas for how Philly could use an ultra high bandwidth data network that connects individuals, industry, and government, please submit your ideas here. You can also show your support by coming to the press conference with Philadelphia Mayor tomorrow (Thursday, March 25) at 2:30 at City Hall on the 2nd floor. A high speed data network in Philly has the potential to accelerate our medical, film production, university, technology, financial services, and community sectors by letting people share massive amounts of data rapidly---that means rich interactivity, problem solving, and communication. Gigabit Philly Videos GigabitPhilly Site GigabitPhilly Facebook Fanpage Follow GigabitPhilly on Twitter Can you imagine Gigabit Philly? ---Jonny Goldstein

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

  

Reference shot.

 

Taken with my Nokia N86 8MP mobile.

 

The immaculate "Speckled Trout" transport/testbed aircraft on show at the 1999 RIAT, RAF Fairford.

 

"Speckled Trout" is the official name of a combined SAF/CSAF support mission and concurrent test mission. It was also the official nickname given to this modified C-135C used by the Secretary and the Chief of Staff of the Air Force for executive transport requirements. Fully equipped with an array of communications equipment, data links and cryptographic sets, the aircraft served a secondary role as a testbed for proposed command and control systems and was also used to evaluate future transport aircraft design. The 412th Flight Test Squadron (412 FLTS) of the Air Force Material Command (AFMC) at Edwards AFB, California operated the C-135 Speckled Trout airframe and managed its test mission.

 

The name Speckled Trout applies to both the organization and the aircraft. The name was chosen in honor of an early program monitor, Faye Trout, who assisted in numerous phases of the project. The word "speckled" was added because Trout apparently had "a lot of freckles."

 

Speckled Trout acquired C-135C 61-2669 in 1974 and retired the aircraft on 13 Jan 2006. The current aircraft used in this role is KC-135R 63-7980. The KC-135R Speckled Trout also supports additional tests and air refueling requirements that the C-135C could not.

Geared Turbo Fan First Flight, Pure Power Engines, Pure Power 1000G, 747 SP Flying Testbed.

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

  

Copyright © 2010 A380spotter. All rights reserved.

 

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

  

Copyright © 2010 A380spotter. All rights reserved.

 

Kawasaki UP-3C Flying Testbed (9151), 51st SQ, JMSDF Atsugi AB

ISS034-E-013942 (2 Jan. 2013) --- In the International Space Station’s Destiny laboratory, Robonaut 2 is pictured during a round of testing for the first humanoid robot in space. Ground teams put Robonaut through its paces as they remotely commanded it to operate valves on a task board. Robonaut is a testbed for exploring new robotic capabilities in space, and its form and dexterity allow it to use the same tools and control panels as its human counterparts do aboard the station.

D1628 is seen stabled inside one of the roundhouses at Saltley. This loco would be remembered as 47601, the Class 56 engine testbed, and finally 47901. This was scrapped by MC Metals in 1992.

Airbus A380-841

MSN 001

F-WWOW '001 GD' [Prototype/Rolls-Royce Trent testbed]

 

Airbus S.A.S.

  

Copyright © 2014 A380spotter. All rights reserved.

Stagecoach in the Fens, Dennis Dart, 33297 (N199PYJ), turns into Queensgate bus station, Peterborough - 9th May 2008.

 

This vehicle has an interesting history, beginning life as a testbed/development vehicle for Dennis and originally fitted with Marshall bodywork. In 1999 the vehicle was stripped of its bodywork and the chassis exported to South Africa where it was rebodied by Neoplan using Alexander parts and spent several years as a demonstrator. Then in 2003 the Dart was repatriated, being bought by Cavalier.

Honeywell's Boeing 757-225 N757HW at the 2023 Australian International Airshow

GN&C lead, Tim Crain, and prop engineer, Rafael Jimenez, making some final checks.

  

Location:

Vertical Testbed Flight Complex

Johnson Space Center

 

Photographer: Kris Kehe

The C111 was a series of experimental automobiles produced by Mercedes-Benz in the 1960s and 1970s.

The company was experimenting with new engine technologies, including Wankel engines, Diesel engines, and turbochargers, and used the basic C111 platform as a testbed. Other experimental features included gullwing doors and a luxurious interior with leather trim and air conditioning.

 

The first version of the C111 was completed in 1969. It used a fiberglass body shell and had a three-rotor direct fuel injected Wankel engine mounted in the middle. The next C111 appeared in 1970. It used a four-rotor engine producing 370 hp (275 kW). The car could reportedly hit 290 km/h (180 mph).

 

The company decided not to adopt the Wankel engine and turned to Diesel experiments for the third C111. With its 230 horsepower (170 kW)@ 4,400-4,600 5-speed manual straight-5 turbo-Diesel, the C111 broke nine diesel and gas speed records. With more aerodynamic bodywork that gave it an air drag coefficient of an incredible .191, the C111 eventually hit 200 mph (322 km/h) at Nardò in 1978, and averaged 14.7mpg@ 316 km/h (195.4 mph) over a 12 hour cruise. A later 500 hp (372 kW) 4.8 L twin KKK-turbocharged V8 version set another record, with an average lap-speed of 403.78 km/h (250.958 mph). It was achieved by Dr. Hans Leibold in 1 minute, 56.67 seconds on May 5, 1979.

 

en.wikipedia.org/wiki/Mercedes-Benz_C111

Douglas A-26 converted postwar to On Mark Marksman (#6) N26GT (ex 41-39221) Was a flying testbed now used for training at the South Mountain High School, Phoenix, Arizona.

Geared Turbo Fan First Flight, Pure Power Engines, Pure Power 1000G, 747 SP Flying Testbed.

Airbus A380-861

MSN 004 [Engine Alliance testbed]

F-WWDD 'VNO'

 

Airbus S.A.S.

 

[300 mm - NO CROP]

  

Copyright © 2012 A380spotter. All rights reserved.

Note the flared radiators on this SD40...it started life as one of the 645 engine testbeds, built on an SD35 frame. Nailed this on June 22, 1975.

I created these illustrations for a video that promotes Philadelphia as the perfect testbed for the google high speed fiber initiative. The video will go live on Friday, but I thought I'd get them up ahead of time. To find out more about the public-private partnership in Philly to promote the City of Firsts as a site for this project, please visit gigabitphilly.com And if you have ideas for how Philly could use an ultra high bandwidth data network that connects individuals, industry, and government, please submit your ideas here. You can also show your support by coming to the press conference with Philadelphia Mayor tomorrow (Thursday, March 25) at 2:30 at City Hall on the 2nd floor. A high speed data network in Philly has the potential to accelerate our medical, film production, university, technology, financial services, and community sectors by letting people share massive amounts of data rapidly---that means rich interactivity, problem solving, and communication. Gigabit Philly Videos GigabitPhilly Site GigabitPhilly Facebook Fanpage Follow GigabitPhilly on Twitter Can you imagine Gigabit Philly? ---Jonny Goldstein

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