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            <title>Faktaspot om klima: Lektor Jørgen Peder Steffensen, Københavns Universitet</title>
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            <description>&lt;p&gt;Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Lektor og iskernekurator Jørgen Peder Steffensen fortæller om sin forskning i iskerner og iskerneforskningens betydning for viden om klimaforandringer.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/7806637/faktaspot-om-klima-lektor-jorgen-peder"&gt;&lt;img src="http://video.ku.dk/7718126/7806637/00c99fc67086706720ef4201f2f4773b/standard/download-1-thumbnail.jpg" width="600" height="337"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <title>Faktaspot om klima: Professor Peter Pagh, Københavns Universitet</title>
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            <description>&lt;p&gt;Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Professor, dr.jur. Peter Pagh fortæller om sin forskning i klimaforandringers betydning for miljøret.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/7781543/faktaspot-om-klima-professor-peter-pagh"&gt;&lt;img src="http://video.ku.dk/7718126/7781543/53787f942114c93f34d3a40f1464c018/standard/download-1-thumbnail.jpg" width="600" height="337"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <pubDate>Thu, 28 Feb 2013 11:49:44 GMT</pubDate>
            <media:title>Faktaspot om klima: Professor Peter Pagh, Københavns Universitet</media:title>
            <itunes:summary>Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Professor, dr.jur. Peter Pagh fortæller om sin forskning i klimaforandringers betydning for miljøret.</itunes:summary>
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            <itunes:author>Københavns Universitets Videoportal</itunes:author>
            <itunes:duration>03:01</itunes:duration>
            <media:description type="html">&lt;p&gt;Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Professor, dr.jur. Peter Pagh fortæller om sin forskning i klimaforandringers betydning for miljøret.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/7781543/faktaspot-om-klima-professor-peter-pagh"&gt;&lt;img src="http://video.ku.dk/7718126/7781543/53787f942114c93f34d3a40f1464c018/standard/download-1-thumbnail.jpg" width="600" height="337"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
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            <title>Faktaspot om klima: Professor Katherine Richardson, Københavns Universitet</title>
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            <description>&lt;p&gt;Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Professor og prodekan for formidling Katherine Richardson fortæller om sin forskning i biologiens betydning for, hvor meget CO2 havet kan optage.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/7806481/faktaspot-om-klima-professor-katherine"&gt;&lt;img src="http://video.ku.dk/7718128/7806481/59653a622cc10c173f7d7d2a69208b51/standard/download-1-thumbnail.jpg" width="600" height="337"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <pubDate>Thu, 28 Feb 2013 11:43:21 GMT</pubDate>
            <media:title>Faktaspot om klima: Professor Katherine Richardson, Københavns Universitet</media:title>
            <itunes:summary>Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Professor og prodekan for formidling Katherine Richardson fortæller om sin forskning i biologiens betydning for, hvor meget CO2 havet kan optage.</itunes:summary>
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            <itunes:author>Københavns Universitets Videoportal</itunes:author>
            <itunes:duration>03:06</itunes:duration>
            <media:description type="html">&lt;p&gt;Faktaspot om klimaforskning ifm. Future Generation Klima Camp 2009 på Københavns Universitet. Professor og prodekan for formidling Katherine Richardson fortæller om sin forskning i biologiens betydning for, hvor meget CO2 havet kan optage.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/7806481/faktaspot-om-klima-professor-katherine"&gt;&lt;img src="http://video.ku.dk/7718128/7806481/59653a622cc10c173f7d7d2a69208b51/standard/download-1-thumbnail.jpg" width="600" height="337"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
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            <title>MARS: The Phoenix Mission, Part 2</title>
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            <description>&lt;p&gt;After having flown 250 million kilometres through the solar system, Phoenix landed on the 25th of May 2008 in the northern polar region.&lt;/p&gt;
&lt;p&gt;Here there is water in the form of ice under the surface and now researchers can begin to investigate the habitability of the planet.  Just below the surface there could be traces of life – life in the form of microorganisms. Just a week after the landing researchers dig down with the robot arm and take the first spoonful of Martian soil, which will be examined by an instrument on the lander’s deck.&lt;/p&gt;
&lt;p&gt;Produced by: The Niels Bohr Institute&lt;br /&gt;
Duration: 14:52 minutes&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/4431177/mars-the-phoenix-mission-part-2"&gt;&lt;img src="http://video.ku.dk/4309457/4431177/c85899d57a0ee722fcb940017e366584/standard/download-1-thumbnail.jpg" width="600" height="338"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <pubDate>Wed, 01 Feb 2012 12:09:23 GMT</pubDate>
            <media:title>MARS: The Phoenix Mission, Part 2</media:title>
            <itunes:summary>After having flown 250 million kilometres through the solar system, Phoenix landed on the 25th of May 2008 in the northern polar region.
Here there is water in the form of ice under the surface and now researchers can begin to investigate the habitability of the planet.  Just below the surface there could be traces of life – life in the form of microorganisms. Just a week after the landing researchers dig down with the robot arm and take the first spoonful of Martian soil, which will be examined by an instrument on the lander’s deck.
Produced by: The Niels Bohr Institute
Duration: 14:52 minutes</itunes:summary>
            <itunes:subtitle>After having flown 250 million kilometres through the solar system, Phoenix landed on the 25th of May 2008 in the northern polar region.
Here there is water in the form of ice under the surface and now researchers can begin to investigate the...</itunes:subtitle>
            <itunes:author>Københavns Universitets Videoportal</itunes:author>
            <itunes:duration>14:52</itunes:duration>
            <media:description type="html">&lt;p&gt;After having flown 250 million kilometres through the solar system, Phoenix landed on the 25th of May 2008 in the northern polar region.&lt;/p&gt;
&lt;p&gt;Here there is water in the form of ice under the surface and now researchers can begin to investigate the habitability of the planet.  Just below the surface there could be traces of life – life in the form of microorganisms. Just a week after the landing researchers dig down with the robot arm and take the first spoonful of Martian soil, which will be examined by an instrument on the lander’s deck.&lt;/p&gt;
&lt;p&gt;Produced by: The Niels Bohr Institute&lt;br /&gt;
Duration: 14:52 minutes&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/4431177/mars-the-phoenix-mission-part-2"&gt;&lt;img src="http://video.ku.dk/4309457/4431177/c85899d57a0ee722fcb940017e366584/standard/download-1-thumbnail.jpg" width="600" height="338"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
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            <title>MARS: The Phoenix Mission, Part 3</title>
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            <description>&lt;p&gt;The Phoenix Mars Lander produces power using large solar panels, so it is only during the summer months that the mission has enough sunlight to carry out all of the experiments and  the researchers work around the clock. The experiments show, that there is water in the form of ice just below the surface. But are there also other conditions for biological life? That is what the chemical analysis of the soil can reveal. Violent storms blow the dust around in the air and it is captured by the Danish dust magnets on the lander. The dust is being studied by the Danish research team from the Niels Bohr Institute. The actual airborne dust can tell about water’s effect and with that the basis for life on the harsh planet.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/4431159/mars-the-phoenix-mission-part-3"&gt;&lt;img src="http://video.ku.dk/4309457/4431159/0ac96cc0b6c57dcaf1ed1ce8be46f77f/standard/download-1-thumbnail.jpg" width="600" height="338"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <pubDate>Wed, 01 Feb 2012 11:14:50 GMT</pubDate>
            <media:title>MARS: The Phoenix Mission, Part 3</media:title>
            <itunes:summary>The Phoenix Mars Lander produces power using large solar panels, so it is only during the summer months that the mission has enough sunlight to carry out all of the experiments and  the researchers work around the clock. The experiments show, that there is water in the form of ice just below the surface. But are there also other conditions for biological life? That is what the chemical analysis of the soil can reveal. Violent storms blow the dust around in the air and it is captured by the Danish dust magnets on the lander. The dust is being studied by the Danish research team from the Niels Bohr Institute. The actual airborne dust can tell about water’s effect and with that the basis for life on the harsh planet.</itunes:summary>
            <itunes:subtitle>The Phoenix Mars Lander produces power using large solar panels, so it is only during the summer months that the mission has enough sunlight to carry out all of the experiments and  the researchers work around the clock. The experiments show, that...</itunes:subtitle>
            <itunes:author>Københavns Universitets Videoportal</itunes:author>
            <itunes:duration>14:45</itunes:duration>
            <media:description type="html">&lt;p&gt;The Phoenix Mars Lander produces power using large solar panels, so it is only during the summer months that the mission has enough sunlight to carry out all of the experiments and  the researchers work around the clock. The experiments show, that there is water in the form of ice just below the surface. But are there also other conditions for biological life? That is what the chemical analysis of the soil can reveal. Violent storms blow the dust around in the air and it is captured by the Danish dust magnets on the lander. The dust is being studied by the Danish research team from the Niels Bohr Institute. The actual airborne dust can tell about water’s effect and with that the basis for life on the harsh planet.&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/4431159/mars-the-phoenix-mission-part-3"&gt;&lt;img src="http://video.ku.dk/4309457/4431159/0ac96cc0b6c57dcaf1ed1ce8be46f77f/standard/download-1-thumbnail.jpg" width="600" height="338"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
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