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Estimating the Costs of Extremely Large Telescopes
Estimating the Costs of Extremely Large Telescopes

... Diffraction-limited resolution in J, H, K bands over 0.5-1’ fields ...
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Space Mission Scrapbook - Willoughby
Space Mission Scrapbook - Willoughby

... study the surface with its lander. Finally, it will take unbelievably detailed pictures of many objects orbiting Saturn. General Narrative: The Cassini spacecraft was designed to study Saturn and its moons. It consists of two parts, the orbiter and the lander named Huygens. Once established in orbit ...
“Baby Stars in the Universe”
“Baby Stars in the Universe”

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... Lacertae class of AGN jets are pointed almost directly along the line of sight, resulting in large amplitude, erratic brightness variations. Our primary goal is the monitoring of the brightness variations of BL Lac objects and using these variations to investigate the physics at work in these object ...
Optical Telescopes and Instrumentation by Christian Clemens
Optical Telescopes and Instrumentation by Christian Clemens

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Astronomy Invention and Exploration Timeline
Astronomy Invention and Exploration Timeline

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astro20 telescopes - Las Positas College
astro20 telescopes - Las Positas College

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... lowest rotational lines of many of the most abundant molecules in the interstellar medium (e.g. CO, HCN and HCO+). Mopra will also be able to provide complementary information to the sub-mm telescopes now being built in Chile, which will record the higher rotational transitions of the same molecules ...
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... – Radio Telescopes study radio waves from earth. – Space Telescopes travel out of Earth’s atmosphere to study the other types of radiation not visible to the naked eye, and the radiation that cannot make it through earth’s protective atmosphere. ...
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... As a result, different colors do not focus at the same point, and stars viewed through a telescope that uses a simple lens are surrounded by fuzzy, rainbowcolored halos If the telescope designer carefully chooses two different kinds of glass for two lenses that make up the one, different colors of l ...
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Proposal memo example - University of Portland
Proposal memo example - University of Portland

... The purpose of this project is to design and construct an easily transportable telescope. The telescope shall pack in to as small of a volume as is practical. Having designed and built a previous telescope, and having several years of design experience in various fields, the author is qualified to d ...
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James Webb Space Telescope



The James Webb Space Telescope (JWST), previously known as Next Generation Space Telescope (NGST), is a space observatory under construction and scheduled to launch in October 2018. The JWST will offer unprecedented resolution and sensitivity from long-wavelength visible to the mid-infrared, and is a successor instrument to the Hubble Space Telescope and the Spitzer Space Telescope. The telescope features a segmented 6.5-meter (21 ft) diameter primary mirror and will be located near the Earth–Sun L2 point. A large sunshield will keep its mirror and four science instruments below 50 K (−220 °C; −370 °F).JWST's capabilities will enable a broad range of investigations across the fields of astronomy and cosmology. One particular goal involves observing some of the most distant objects in the Universe, beyond the reach of current ground and space based instruments. This includes the very first stars, the epoch of reionization, and the formation of the first galaxies. Another goal is understanding the formation of stars and planets. This will include imaging molecular clouds and star-forming clusters, studying the debris disks around stars, direct imaging of planets, and spectroscopic examination of planetary transits.In gestation since 1996, the project represents an international collaboration of about 17 countries led by NASA, and with significant contributions from the European Space Agency and the Canadian Space Agency. It is named after James E. Webb, the second administrator of NASA, who played an integral role in the Apollo program.The JWST has a history of major cost overruns and delays. The first realistic budget estimates were that the observatory would cost $1.6 billion and launch in 2011. NASA has now scheduled the telescope for a 2018 launch. In 2011, the United States House of Representatives voted to terminate funding, after about $3 billion had been spent and 75 percent of its hardware was in production. Funding was restored in compromise legislation with the US Senate, and spending on the program was capped at $8 billion. As of December 2014, the telescope remained on schedule and within budget, but at risk of further delays.
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