{"id":97193,"date":"2008-07-20T14:33:00","date_gmt":"2008-07-20T14:33:00","guid":{"rendered":"http:\/\/weblogs.madrimasd.org\/\/astrofisica\/archive\/2008\/07\/20\/97193.aspx"},"modified":"2017-02-26T20:25:17","modified_gmt":"2017-02-26T19:25:17","slug":"el-sistema-tierra-luna-transitos-desde-50-millones-de-kilometros","status":"publish","type":"post","link":"https:\/\/www.madrimasd.org\/blogs\/astrofisica\/2008\/07\/20\/97193","title":{"rendered":"El Sistema Tierra-Luna: tr\u00e1nsitos desde 50 millones de kil\u00f3metros"},"content":{"rendered":"<div align=\"justify\">\n<p>David ByN<\/p>\n<p>En ocasiones hay que alejarse, distanciarse, para poder apreciar la magnitud de un fen\u00f3meno. Eso es lo que est\u00e1 haciendo la sonda \u00abDeep impact\u00bb, que ha sido capaz de observar un tr\u00e1nsito lunar: c\u00f3mo el disco de nuestro sat\u00e9lite bloquea parte la luz que emite la superficie de nuestro planeta. Justamente una de las t\u00e9cnicas m\u00e1s poderosas que ahora se utilizan para descubrir y estudiar exoplanetas.<\/p>\n<\/div>\n<p><!--more-->La sonda <a href=\"http:\/\/www.nasa.gov\/mission_pages\/deepimpact\/main\/index.html\" target=\"blank\"> \u00abDeep Impact\u00bb<\/a>, ahora denominada <a href=\"http:\/\/www.nasa.gov\/mission_pages\/epoxi\/index.html\" target=\"blank\">EPOXI<\/a>, despu\u00e9s de cumplir su misi\u00f3n al cometa Temple 1 en el 2004, se encamina al cometa Hartley, al que sobrevolar\u00e1 en el 2010. En el \u00ednterin, ha apuntado su instrumentaci\u00f3n hacia la Tierra, y ha <a href=\"http:\/\/www.nasa.gov\/topics\/solarsystem\/features\/epoxi_transit.html\" target=\"blank\">sido testigo de un tr\u00e1nsito de la Luna <\/a>, proporcion\u00e1ndonos una bella secuencia de im\u00e1genes.<\/p>\n<p><img decoding=\"async\" src=\"http:\/\/laeff.cab.inta-csic.es\/users\/barrado\/weblog\/EarthMoon_DeepImpact_EPOXI.jpg\" alt=\"\" width=\"450\" \/><br \/>\n<em>Cuatro im\u00e1genes con el tr\u00e9nsito de la Luna sobre el disco terreste, seg\u00fan fueron observadas por la nave EPOXI (Deep Impact). Cr\u00e9dito Donald J. Lindler, Sigma Space Corporation\/GSFC; EPOCh\/DIXI Science Teams <\/em><\/p>\n<p>Montadas como v\u00eddeo, la secuencia queda mucho m\u00e1s impresionante, tanto es su <a href=\"http:\/\/www.nasa.gov\/mov\/260503main_red_green_blue2.mov\" target=\"blank\">versi\u00f3n con filtros en el rango \u00f3ptico <\/a>del espectro, como la <a href=\"http:\/\/www.nasa.gov\/mov\/260502main_nir_green_blue2.mov\" target=\"blank\"> mezcla de \u00f3ptico e infrarrojo<\/a>.<\/p>\n<p><strong><br \/>\nENLACES: <\/strong><\/p>\n<ul>\n<li><a href=\"http:\/\/www.nasa.gov\/topics\/solarsystem\/features\/epoxi_transit.html\" target=\"blank\"> NASA&#8217;s Deep Impact Films Earth as an Alien World<\/a><\/li>\n<li><a href=\"http:\/\/www.nasa.gov\/mission_pages\/deepimpact\/main\/index.html\" target=\"blank\"> NASA. Deep Impact<\/a><\/li>\n<li><a href=\"http:\/\/www.nasa.gov\/mission_pages\/epoxi\/index.html\" target=\"blank\"> NASA. EPOXI<\/a><\/li>\n<li><a href=\"http:\/\/www.nasa.gov\/mov\/260503main_red_green_blue2.mov\" target=\"blank\"> V\u00eddeo I (filtros \u00f3pticos) <\/a><\/li>\n<li><a href=\"http:\/\/www.nasa.gov\/mov\/260502main_nir_green_blue2.mov\" target=\"blank\"> V\u00eddeo II (filtros \u00f3pticos e infrarrojos) <\/a><\/li>\n<li><a href=\"http:\/\/weblogs.madrimasd.org\/astrofisica\/archive\/2007\/11\/24\/79472.aspx\" target=\"blank\"> CBE. Misiones actuales de la NASA<\/a><\/li>\n<\/ul>\n<p>PD (2008\/VIII\/23)<br \/>\n<a href=\"http:\/\/earthobservatory.nasa.gov\/Newsroom\/NewImages\/images.php3?img_id=18096\">NASA\/EarthObservatory<\/a><\/p>\n<hr align=\"justify\" size=\"1\" \/>\n<p><a href=\"http:\/\/weblogs.madrimasd.org\/astrofisica\/\" target=\"blank\"> <strong> P\u00e1gina principal del \u00abCuaderno de Bit\u00e1cora Estelar\u00bb <\/strong><\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>David ByN En ocasiones hay que alejarse, distanciarse, para poder apreciar la magnitud de un fen\u00f3meno. Eso es lo que est\u00e1 haciendo la sonda \u00abDeep impact\u00bb, que ha sido capaz de observar un tr\u00e1nsito lunar: c\u00f3mo el disco de nuestro sat\u00e9lite bloquea parte la luz que emite la superficie de nuestro planeta. Justamente una de las t\u00e9cnicas m\u00e1s poderosas que ahora se utilizan para descubrir y estudiar exoplanetas.<\/p>\n","protected":false},"author":32,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"ngg_post_thumbnail":0},"categories":[64,557,564],"tags":[],"blocksy_meta":{"styles_descriptor":{"styles":{"desktop":"","tablet":"","mobile":""},"google_fonts":[],"version":4}},"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 4.9.10 - aioseo.com -->\n\t<meta name=\"description\" content=\"David ByN En ocasiones hay que alejarse, distanciarse, para poder apreciar la magnitud de un fen\u00f3meno. Eso es lo que est\u00e1 haciendo la sonda &quot;Deep impact&quot;, que ha sido capaz de observar un tr\u00e1nsito lunar: c\u00f3mo el disco de nuestro sat\u00e9lite bloquea parte la luz que emite la superficie de nuestro planeta. 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Eso es lo que est\u00e1 haciendo la sonda &quot;Deep impact&quot;, que ha sido capaz de observar un tr\u00e1nsito lunar: c\u00f3mo el disco de nuestro sat\u00e9lite bloquea parte la luz que emite la superficie de nuestro planeta. 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Eso es lo que est\u00e1 haciendo la sonda &quot;Deep impact&quot;, que ha sido capaz de observar un tr\u00e1nsito lunar: c\u00f3mo el disco de nuestro sat\u00e9lite bloquea parte la luz que emite la superficie de nuestro planeta. 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