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electronic imaging in
electronic imaging in

... emulsion for a long period of time. It is therefore called an "integrating" detector. The eye cannot do this to any significant extent. Moreover, the plate provides a permanent record which may be saved for future comparison and study by others. By using a photographic plate as the recording device ...
October, 2014 - Mahoning Valley Astronomical Society
October, 2014 - Mahoning Valley Astronomical Society

... It will be a chance to study how it warms up, and how it responds to the Sun's radiation as it goes around the Sun. Scientist hope to study seasonal changes of the comet, as well as the dustier dynamics of the post-perihelion outbound journey. The mission officially ends on Jan 1, 2016. A Sea Change ...
CS3_Ch 4 - Leon County Schools
CS3_Ch 4 - Leon County Schools

... universe with Earthbased and spacebased telescopes. They explore the solar system with crewed and uncrewed space probes. ...
airborne survey instrument - Portable Spectrometer FTIR
airborne survey instrument - Portable Spectrometer FTIR

... one ruggedized for use outside in the environment. One is a linear scan device, the Micro FT, which is optimized for optical throughput. The other is a rotary scan device, the Turbo FT, which is capable of the high scan rates. The linear scan reciprocates, and thus requires a reference laser to prov ...
CAC Kids Astronomy evening
CAC Kids Astronomy evening

... Aristarchus (the crater), brings us neatly back to William Hershel. For several nights during April 1787, Herschel was convinced that he could see active erupting volcanoes in this region, he even wrote to the King inviting him to watch this with his own eyes. Although active volcanism on the moon i ...
Astronomical Instruments
Astronomical Instruments

... – So, if you had X-ray eyes, you would be in the dark and would be unable to see anything. – Even when you looked up at the sky, you would see nothing, because Earth’s atmosphere is not transparent to X rays. – So, if Superman can see through walls, it is not because his eyes can detect X rays. ...
Chap. 36 - UF Physics
Chap. 36 - UF Physics

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Adaptive Optics 101 - Shaping Light Blog

... including jitter and a limited fill factor. Janelia Farm’s Reto Fiolka addressed these obstacles by using a MEMS SLM for laser pulse shaping and the results established that the precision and stability of the device allowed close to perfect restoration of transform limited laser pulses. Fiolka concl ...
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... The planets don’t stay put like the stars, so to find them you should refer to our to charts published monthly in our newsletter Night Sky or astronomy magazines like Sky and Space, Sky and Telescope. Venus, Mars, Jupiter and Saturn are the brightest objects in the sky after the Sun and the Moon. Th ...
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... a. Provide examples of ideas and theories of light used in the past to explain observed properties. (Pythagoras, Michelson) (132-134) b. Compare the Speed of Light vs. Sound using thunder and lightning as an example. ...
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... Replace capabilities? • Technology since 1980: lots cheaper. Thin flexible mirrors, lightweight structures, stabilize mirrors rather than structure… • Unique access to optical/UV range • Plan on table to fly 2.4m mirror with existing HST instruments (Hubble Origins Probe or HOP); could be as low as ...
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...  German ground based solar science needs access to large solar facilities to stay competitive  A modern 1.5 m solar telescope opens new scientific opportunities  The 35 years old Gregory Coudé Telescope has outlived its scientific life  Izaña is a developed observatory with established administr ...
Your Presentation Title
Your Presentation Title

... Some quantitative context • Consider an observation of a bright quasar: ...
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Very Large Telescope



The Very Large Telescope (VLT) is a telescope operated by the European Southern Observatory on Cerro Paranal in the Atacama Desert of northern Chile. The VLT consists of four individual telescopes, each with a primary mirror 8.2 m across, which are generally used separately but can be used together to achieve very high angular resolution. The four separate optical telescopes are known as Antu, Kueyen, Melipal and Yepun, which are all words for astronomical objects in the Mapuche language. The telescopes form an array which is complemented by four movable Auxiliary Telescopes (ATs) of 1.8 m aperture.The VLT operates at visible and infrared wavelengths. Each individual telescope can detect objects roughly four billion times fainter than can be detected with the naked eye, and when all the telescopes are combined, the facility can achieve an angular resolution of about 0.001 arc-second (This is equivalent to roughly 2 meters resolution at the distance of the Moon).In single telescope mode of operation angular resolution is about 0.05 arc-second.The VLT is the most productive ground-based facility for astronomy, with only the Hubble Space Telescope generating more scientific papers among facilities operating at visible wavelengths. Among the pioneering observations carried out using the VLT are the first direct image of an exoplanet, the tracking of individual stars moving around the supermassive black hole at the centre of the Milky Way, and observations of the afterglow of the furthest known gamma-ray burst.
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