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Bus 142 upon its arrival at the University of Alaska Museum of the North in Fairbanks. Credit: Roger Topp, UAMN Photo.
Der Bahnhof von Kaukehmen lag an der Kleinbahnstrecke von Groß Brittanien nach Karkeln.
Das Foto wurde vom Bildarchiv Elchniederung übernommen.
Setup shot for 142/365 My Birthday Suit.
Camera Info:
Canon 7D, Sigma DC 17-70mm 1:2.8-4 Macro HSM @17mm, f/5.0, 1/100s, ISO 200
Strobist Info:
-Canon 430EXII's Behind and above camera in front of subject, 1/8 Power, @24mm zoom, about 8 feet high, 3 feet away from subject inside 40 inch Wescott softbox.
-Canon 430EXII Camera right and behind subject, 1/32 at 70mm Zoom fired bare, 7 feet high and 5 feet away from subject, fired bare.
-Canon 430EXII Camera left and behind subject, 1/32 at 70mm Zoom fired bare, 7 feet high and 5 feet away from subject, fired bare.
-Flashes triggered with Interfit Strobies.
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Northern 142 011 accelerates its All Stations Warrington Bank Quay to Liime St train from its trundle across Sankey Junction which is over the photographer's left shoulder.
Please compare with series 3024 and 2862 photos to assess recent progress.
Taken through a hole in the fence at the south west corner of the disused part of the trading estate south of Earle Street, Earlestown, looking west.
142 has arrived at it's destination and is running round it's train. A healthy contingent of passengers from Limerick has disembarked and is now waiting for the Cork - Dublin express.
20.10.2012.
i suppose a more interesting shot would have been to take a photo when i was actually having a bath because the water had a nice ripple effect going on because my tap drips -- but i forgot to grab my camera before getting in and once i was in there was no way i was getting out again for a while. and also it seems like a very bad idea to be hovering my camera over water.
Edited Spitzer Space Telescope (along with Hubble Space Telescope data) infrared image of Arp 142, two interacting galaxies. Color/processing variant.
Original caption: This image of distant interacting galaxies, known collectively as Arp 142, bears an uncanny resemblance to a penguin guarding an egg. Data from NASA's Spitzer and Hubble space telescopes have been combined to show these dramatic galaxies in light that spans the visible and infrared parts of the spectrum.
This dramatic pairing shows two galaxies that couldn't look more different as their mutual gravitational attraction slowly drags them closer together.
The "penguin" part of the pair, NGC 2336, was probably once a relatively normal-looking spiral galaxy, flattened like a pancake with smoothly symmetric spiral arms. Rich with newly-formed hot stars, seen in visible light from Hubble as bluish filaments, its shape has now been twisted and distorted as it responds to the gravitational tugs of its neighbor. Strands of gas mixed with dust stand out as red filaments detected at longer wavelengths of infrared light seen by Spitzer.
The "egg" of the pair, NGC 2937, by contrast, is nearly featureless. The distinctly different greenish glow of starlight tells the story of a population of much older stars. The absence of glowing red dust features informs us that it has long since lost its reservoir of gas and dust from which new stars can form. While this galaxy is certainly reacting to the presence of its neighbor, its smooth distribution of stars obscures any obvious distortions of its shape.
Eventually these two galaxies will merge to form a single object, with their two populations of stars, gas and dust intermingling. This kind of merger was likely a significant step in the history of most large galaxies we see around us in the nearby universe, including our own Milky Way.
At a distance of about 23 million light-years, these two galaxies are roughly 10 times farther away than our nearest major galactic neighbor, the Andromeda galaxy. The blue streak at the top of the image is an unrelated background galaxy that is farther away than Arp 142.
Combining light from across the visible and infrared spectrums helps astronomers piece together the complex story of the life cycles of galaxies. While this image required data from both the Spitzer and Hubble telescopes to cover this range of light, NASA's upcoming James Webb Space Telescope will be able to see all of these wavelengths of light, and with dramatically better clarity.