2015年1月20日 星期二

Astronaut Buzz Aldrin in the Apollo 11 Lunar Module



This July 20, 1969 photograph of the interior view of the Apollo 11 Lunar Module shows astronaut Edwin E. “Buzz” Aldrin, Jr. during the lunar landing mission. The picture was taken by astronaut Neil A. Armstrong, commander, prior to the landing. Buzz Aldrin was born in Montclair, New Jersey, on Jan. 20, 1930. Aldrin became an astronaut during the selection of the third group by NASA in October 1963. On Nov. 11, 1966 he orbited aboard the Gemini XII spacecraft, a 4-day 59-revolution flight that successfully ended the Gemini program. During Project Gemini, Aldrin became one of the key figures working on the problem of rendezvous of spacecraft in Earth or lunar orbit, and docking them together for spaceflight. Aldrin was chosen as a member of the three-person Apollo 11 crew that landed on the moon on July 20, 1969, fulfilling the mandate of President John F. Kennedy to send Americans to the moon before the end of the decade. Aldrin was the second American to set foot on the lunar surface. Image Credit: NASA via NASA http://ift.tt/1C3pGiR

New Dawn images of Ceres: comparable to Hubble

Dawn has captured a series of photos of a rotating Ceres whose resolution is very close to Hubble's, and they show tantalizing surface details.



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NASA's Pluto Mission Seeks to Confuse People

Pluto fans complained that demotion from planet status would confuse students who were taught about "9 planets" & make textbooks wrong 1/2— plutotoday (@plutotoday) January 20, 2015 Now were are told by Pluto fans that planets are moons and...



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Pretty Picture: Comet Lovejoy

Astrophotgrapher Adam Block shares an image of Comet Lovejoy, which is currently visible with binoculars.



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Why NASA Did Not Pick SNC

NASA Releases Commercial Crew Source Selection Statement, SpaceRef "[HEOMD AA Bill Gerstenmaier]: On August 6, 2014, the Source Evaluation Board (SEE!) appointed to evaluate proposals for the Commercial Crew Transportation Capability Contract (CCtCap) under Request for Proposals (RFP) NNK14467515R presented...



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Please Consider Supporting "Fight for Space"

Fight for Space: NASA & Space Exploration Documentary, Kickstarter "Fight for Space" is a feature length documentary film that explores the economic and cultural benefits of human space exploration, and examines the historical and political events that have led to...



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Dawn Approaches Ceres

Ceres is the largest asteroid in the solar system—about 970 km in diameter—but so far from Earth that it generally just looks like a blurry disk at best.


But that’s about to change. A lot. The Dawn spacecraft is slowly edging toward the asteroid, and on Jan. 13, 2015 it took a series (haha! I love homonyms) of images that have been stitched together to make this nifty animation:


Dawn was about 383,000 km (238,000 miles) from Ceres when it took those shots, which is the same distance the Earth is from the Moon. Details are still difficult to make out (the pictures were taken with the framing camera, which has lower resolution than the science camera that will be used) but you can see a bright spot (I suspect the same one seen in earlier Hubble images) and some large craters. You can also see Ceres is noticeably flattened; it’s about seven percent wider across the equator than through the poles (though to be fair I think that looks a bit exaggerated due to the location of the terminator, the day-night line).


These images are tantalizing—they rival but don’t quite surpass the best images of Ceres taken by Hubble—but in a little while we’ll be seeing much, much more detailed images of this world. It’ll eventually orbit only a few hundred kilometers over the surface, and the images returned will be quite high resolution indeed.


Dawn launched in 2007 after an interesting history (it was canceled by NASA, then reinstated), and reached the asteroid Vesta in 2011. It orbited Vesta for over a year, mapping its surface in exquisite detail. It left Vesta in September 2012, and spent the next couple of years moving toward Ceres. It’s approaching now, and is expected to achieve orbit in early March.


Dawn uses an innovative engine called an ion drive. Any engine to move a spacecraft uses Newton’s Third Law of Motion: Every action has an opposite and equal reaction. If you throw something really hard in one direction, it pushes on you equally hard in the opposite direction.


Rockets usually combine a huge amount of chemicals together, which get very hot, expand rapidly, and blow out the back of the rocket. This is a pretty violent effect, and produces a lot of thrust.


Ion engines are different. They use either magnets or electric fields to accelerate and shoot individual atoms out the back of the engine. The atoms have a lot less mass than what’s used in chemical rockets, but they move a lot faster. The overall effect is a very low but extremely efficient thrust, and you can keep the engine blowing out atoms for years at a time, building up a huge speed. Dawn’s engines use an electric field to fling out xenon ions, and its fuel tank only carries about 425 kg (940 pounds) of fuel; in a day it only uses about 280 grams.


But that’s why it’s taken so long to go from Vesta to Ceres; it thrusts low but long. Now it’s approaching the giant asteroid, and soon it will go from a fuzzy disk to a fantastically detailed and amazing world. Stay tuned. This is going to be great.






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