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		<title>Which Earth-Size Planets are Habitable?</title>
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		<pubDate>Mon, 12 Jun 2017 13:28:37 +0000</pubDate>
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					<description><![CDATA[<p>A University of Oklahoma post-doctoral astrophysics researcher, Billy Quarles, has identified the possible compositions of the seven planets in the TRAPPIST-1 system. Using thousands of numerical simulations to identify the planets stable for millions of years, Quarles concluded that six of the seven planets are consistent with an Earth-like composition. The exception is TRAPPIST-1f, which [&#8230;]</p>
<p>The post <a href="https://www.totallabsupplies.co.uk/which-earth-size-planets-are-habitable/">Which Earth-Size Planets are Habitable?</a> appeared first on <a href="https://www.totallabsupplies.co.uk">Total Lab Supplies</a>.</p>
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										<content:encoded><![CDATA[<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">A University of Oklahoma<br />
post-doctoral astrophysics researcher, Billy Quarles, has identified the possible<br />
compositions of the seven planets in the TRAPPIST-1 system. Using thousands of<br />
numerical simulations to identify the planets stable for millions of years,<br />
Quarles concluded that six of the seven planets are consistent with an<br />
Earth-like composition. The exception is TRAPPIST-1f, which has a mass of 25<br />
percent water, suggesting that TRAPPIST-1e may be the best candidate for future<br />
habitability studies.</span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;"> </span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">&#8220;The goal of exoplanetary<br />
astronomy is to find planets that are similar to Earth in composition and potentially<br />
habitable,&#8221; said Quarles. &#8220;For thousands of years, astronomers have<br />
sought other worlds capable of sustaining life.&#8221;</span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;"> </span></div>
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<td style="text-align: center;"><a style="margin-left: auto; margin-right: auto;" href="http://ift.tt/2sTBp3p"><img decoding="async" src="https://ift.tt/2sTBp3p" border="0" /></a></td>
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<td class="tr-caption" style="text-align: center;"><span style="font-family: Verdana, sans-serif; font-size: xx-small;"><i>The Earth seen from space, by NASA/Apollo 17 crew; taken by either Harrison Schmitt or Ron Evans [Public domain or Public domain], via Wikimedia Commons</i></span></td>
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<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">Quarles, a researcher in the<br />
Homer L. Dodge Department of Physics and Astronomy, OU College of Arts and<br />
Sciences, collaborated with scientists, E.V. Quintana, E. Lopez, J.E. Schlieder<br />
and T. Barclay at NASA Goddard Space Flight Center on the project. Numerical<br />
simulations for this project were performed using the Pleiades Supercomputer<br />
provided by the NASA High-End Computing Program through the Ames Research<br />
Center and at the OU Supercomputing Center for Education and Research.</span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;"> </span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">TRAPPIST-1 planets are more<br />
tightly spaced than in Kepler systems, which allow for transit timing<br />
variations with the photometric observations. These variations tell the<br />
researchers about the mass of the planets and the radii are measured through<br />
the eclipses. Mass and radius measurements can then infer the density. By<br />
comparing Earth&#8217;s density (mostly rock) to the TRAPPIST-1 planets, Quarles can<br />
determine what the planets are likely composed of and provide insight into<br />
whether they are potentially habitable.</span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;"> </span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">TRAPPIST-1f has the tightest<br />
constraints with 25 percent of its mass in water, which is rare given its<br />
radius. The concern of this planet is that the mass is 70 percent the mass of<br />
Earth, but it is the same size as Earth. Because the radius is so large, the<br />
pressure turns the water to steam, and it is likely too hot for life as we know<br />
it. The search for planets with a composition as close to Earth&#8217;s as possible<br />
is key for finding places that we could identify as being habitable. Quarles<br />
said he is continually learning about the planets and will investigate them<br />
further in his studies.</span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;"> </span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">TRAPPIST-1 is a nearby ultra-cool<br />
dwarf about 40 light-years away from Earth and host to a remarkable planetary<br />
system consisting of seven transiting planets. The seven planets are known as<br />
TRAPPIST 1b, c, d, e, f, g and h.</span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;"> </span></div>
<div class="MsoNormal" style="text-align: justify;"><span style="font-family: Verdana, sans-serif;">For more information visit:-</span></div>
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<p>&nbsp;</p>
<p>The post <a href="https://www.totallabsupplies.co.uk/which-earth-size-planets-are-habitable/">Which Earth-Size Planets are Habitable?</a> appeared first on <a href="https://www.totallabsupplies.co.uk">Total Lab Supplies</a>.</p>
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