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 html=html+unescape('<?xml version="1.0" encoding="UTF-8"?><div id="main" xmlns:atom="http://www.w3.org/2005/Atom"><a name="L0af31541a87218e2db87fb8996450482"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%270af31541a87218e2db87fb8996450482%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I0af31541a87218e2db87fb8996450482"/></a><a href="http://www.symmetrymagazine.org/breaking/2010/02/02/new-minos-results-%e2%80%9cstrongly-disfavor%e2%80%9d-sterile-neutrino-neutrino-decay/" target="_blank"><font color="#ff0080">New MINOS results ?strongly disfavor? sterile neutrino, neutrino decay</font></a><div class="entrydesc" id="0af31541a87218e2db87fb8996450482" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                In the search for a better understanding of neutrinos, the Main Injector Neutrino Oscillation Search, MINOS, recently put forth results that help rule out a theorized fourth neutrino and strengthen the case against the hypothesis of neutrino decay. MINOS cospokesperson Robert Plunkett says the results ?really start to close the loop? on some major theories that neutrino experiments set out to investigate.</div></div><a name="L6f348c182a151e256e836fa9b8e6000c"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%276f348c182a151e256e836fa9b8e6000c%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I6f348c182a151e256e836fa9b8e6000c"/></a><a href="http://www.interactions.org/cms/?pid=1029048" target="_blank"><font color="#ff8080">Newswire: Oak Ridge National Laboratory - New neutron studies support magnetism%27s role in superconductors </font></a><div class="entrydesc" id="6f348c182a151e256e836fa9b8e6000c" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                OAK RIDGE, Tenn., Feb. 2, 2010 -- Neutron scattering experiments performed at the Department of Energy%27s Oak Ridge National Laboratory give strong evidence that, if superconductivity is related to a material%27s magnetic properties, the same mechanisms are behind both copper-based high-temperature superconductors and the newly discovered iron-based superconductors.</div></div><a name="L8a3bc5cd2c478247199dd19c8f3a4ba6"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%278a3bc5cd2c478247199dd19c8f3a4ba6%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I8a3bc5cd2c478247199dd19c8f3a4ba6"/></a><a href="http://www.interactions.org/cms/?pid=1029045" target="_blank"><font color="#ff0080">Newswire: Announcement of the first ACFA/IPAC Accelerator Prizes </font></a><div class="entrydesc" id="8a3bc5cd2c478247199dd19c8f3a4ba6" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                With the introduction of a 3-year cycle among the Asian, European and North American Particle Accelerator Conferences, the Asian Committee for Future Accelerators, ACFA, has decided to award prizes in conjunction with the new series of International Particle Accelerator Conferences when they take place in Asia.</div></div><a name="Lae4c47af61f65434235a128136e44232"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27ae4c47af61f65434235a128136e44232%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Iae4c47af61f65434235a128136e44232"/></a><a href="http://axitronics.blogspot.com/2010/01/possible-detection-of-heavy-photons.html" target="_blank"><font color="#ff8080">A possible detection of heavy-photons</font></a><div class="entrydesc" id="ae4c47af61f65434235a128136e44232" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                : skip to main skip to sidebar Axitronics Dark energy solved By giving neutrino there own type of electric and magnetic forces . The force is known as the axial force , thus the title , axitronics , as the equivalent of electronics for . neutrinos Friday , 29 January 2010 A possible detection of heavy-photons Always on the lookout for strange physics , I was fascinated by a Paper by Boer and Fields at ArXiv . They analysised 7 previous experiment all which should something bizarre , A new Light Neutral Boson . There particle has a mass range of 1.5MeV to 20MeV , a lifespan of about 10^-15 to 10^-16 seconds . And strangely shows up only in experiment using photograph Emulsion . There X boson appears to be made in the decay on the neutral pion , one decay out of every thousand , and itself decays into an electron positron pair . They don%27t even have bad statistics ranging for 2.8 sigma to 8 sigma in the different experiments the . review A boson is a force carrying particle , given a mass of 1 MeV , Boer%27s and Field%27s particle would mediate a short range force novel to the standard model . Looking at previous limits to a fifth force this particle is in a range previously thought to</div></div><a name="L17b1bac112aca85a56ccc98c60bf2594"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%2717b1bac112aca85a56ccc98c60bf2594%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I17b1bac112aca85a56ccc98c60bf2594"/></a><a href="http://www.math.columbia.edu/~woit/wordpress/?p=2695" target="_blank"><font color="#ff0080">Are There Cosmic Microwave Anomalies?</font></a><div class="entrydesc" id="17b1bac112aca85a56ccc98c60bf2594" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('The WMAP team has just released a new set of papers based upon seven years of data from their experiment.  For a summary of how this new data has sharpened some of their previous results, see the Cosmological Interpretation paper.  They have also gone over claims by many groups to have found deviations [...]</div></div><a name="L8fc38f1e9b1b34c194ca7348d0d55ea4"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%278fc38f1e9b1b34c194ca7348d0d55ea4%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I8fc38f1e9b1b34c194ca7348d0d55ea4"/></a><a href="http://www.symmetrymagazine.org/breaking/2010/01/27/next-generation-accelerators-neutrino-research-get-boost-with-new-test-beam/" target="_blank"><font color="#ff8080">Next-generation accelerators, neutrino research get boost with new test beam</font></a><div class="entrydesc" id="8fc38f1e9b1b34c194ca7348d0d55ea4" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('Fermilab has taken a major step toward laying the technical groundwork for Project X by creating a new test beam for superconducting radiofrequency cavities and components.');
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 html=html+unescape('Earlier this month, the High Intensity Neutrino Source (HINS) collaboration successfully accelerated a proton beam to 2.5 MeV in a radiofrequency quadrupole accelerator, or RFQ, for the first time at [...]</div></div><a name="L75423fe145fda3dbbf76069f54e5e327"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%2775423fe145fda3dbbf76069f54e5e327%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I75423fe145fda3dbbf76069f54e5e327"/></a><a href="http://www.symmetrymagazine.org/breaking/2010/01/22/strongly-interacting-dark-matter-ruled-out-by-observations/" target="_blank"><font color="#ff0080">Strongly interacting dark matter ruled out by observations</font></a><div class="entrydesc" id="75423fe145fda3dbbf76069f54e5e327" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                The possibility that dark matter could be made of strongly interacting particles has been ruled out by neutrino observations at the IceCube detector, according to physicists Ivone Albuquerque of Fermilab and Universidade de São Paulo and Carlos Pérez de los Heros of Uppsala University.</div></div><a name="Lbb9b8d7e1d2fded5399d93db2d452829"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27bb9b8d7e1d2fded5399d93db2d452829%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ibb9b8d7e1d2fded5399d93db2d452829"/></a><a href="http://www.symmetrymagazine.org/breaking/2010/01/22/fermilab-seeks-new-associate-director-steve-holmes-focuses-on-project-x/" target="_blank"><font color="#ff8080">Fermilab seeks new associate director, Steve Holmes focuses on Project X</font></a><div class="entrydesc" id="bb9b8d7e1d2fded5399d93db2d452829" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                The increasing momentum behind the proposed Project X experiment has swept Steve Holmes into a new position at the laboratory and put in motion the search for a new associate director.</div></div><a name="Ldf1cd6b91fa89222c2d79c3d49554069"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27df1cd6b91fa89222c2d79c3d49554069%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Idf1cd6b91fa89222c2d79c3d49554069"/></a><a href="http://www.symmetrymagazine.org/breaking/2010/01/21/phenix-rises-a-detector-gets-a-new-life/" target="_blank"><font color="#ff0080">PHENIX rises: A detector gets a new life</font></a><div class="entrydesc" id="df1cd6b91fa89222c2d79c3d49554069" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                Scientists in the PHENIX collaboration at Brookhaven National Laboratory have enlisted the expertise of a group of technicians at Fermilab?s SiDet facility in upgrading their particle detector, originally constructed in 2000.</div></div><a name="Lb6bfb9f2545bd42d63d60644fa140977"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27b6bfb9f2545bd42d63d60644fa140977%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ib6bfb9f2545bd42d63d60644fa140977"/></a><a href="http://www.symmetrymagazine.org/breaking/2010/01/19/us-flexes-its-developing-srf-muscles/" target="_blank"><font color="#ff8080">US flexes its developing SRF muscles</font></a><div class="entrydesc" id="b6bfb9f2545bd42d63d60644fa140977" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                US researchers recently proved their ability to process and test world-class superconducting radiofrequency, SRF, cavities. In preparing two dressed, high-gradient nine-cell ILC-type cavities for use in the S1-global effort, a prototype at KEK of the International Linear Collider main linac, researchers had to climb multiple technical hurdles.</div></div><a name="Lb8e7af239cc0a5308f32f1416e7e8a63"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27b8e7af239cc0a5308f32f1416e7e8a63%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ib8e7af239cc0a5308f32f1416e7e8a63"/></a><a href="http://www.interactions.org/cms/?pid=1028964" target="_blank"><font color="#ff0080">Newswire: STFC - Quantum leap for ISIS second target station</font></a><div class="entrydesc" id="b8e7af239cc0a5308f32f1416e7e8a63" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                First published science results from new UK neutron source support Newton%27s ideas and quantum theory.  Scientists have used the UK%27s newest major science facility to finally make the connection between the reflection of particles and waves as required by quantum mechanics.  The phenomenon is a long established theory, but has not until now been seen. The result is the first to be published from the Â£200 million second target station recently opened at the ISIS Neutron Source in Oxfordshire and appears online today (January 8 2010) at Physical Review Letters. Whilst the discovery currently lies in the realm of pure physics, these results may initiate new developments in electronics, complementing the wave equivalent already used for photonics and metrology.</div></div><a name="L7ef440d31ecfdeb82e5ac38a97fe449d"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%277ef440d31ecfdeb82e5ac38a97fe449d%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I7ef440d31ecfdeb82e5ac38a97fe449d"/></a><a href="http://www.scientificblogging.com/quantum_diaries_survivor/more_physics_questions" target="_blank"><font color="#ff8080">More Physics Questions</font></a><div class="entrydesc" id="7ef440d31ecfdeb82e5ac38a97fe449d" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                The turnaround of the three physics questions I offered a few days ago, to stimulate your neurons and extract you from the chocolate and alcohol flood caused by the usual string of Christmas parties and dinners, was rather scarce. Despite that, I wish to repeat the offer today, making some adjustments to reach a wider public. The questions I offer here are easier but still not accessible to everybody. However, my plans are that at least the answers I will give in a couple of days will be understandable. Further, anyone can try the bonus question I ask at the bottom of this piece...');
 html=html+unescape('read more</div></div><a name="Lc5650a3112cfff940fe36a42c40b5605"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27c5650a3112cfff940fe36a42c40b5605%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ic5650a3112cfff940fe36a42c40b5605"/></a><a href="http://www.interactions.org/cms/?pid=1028881" target="_blank"><font color="#ff0080">Newswire: CERN - LHC ends 2009 run on a high note</font></a><div class="entrydesc" id="c5650a3112cfff940fe36a42c40b5605" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                Geneva, 18 December 2009. At its 153rd session today, the CERN[1] Council heard that the Large Hadron Collider ended its first full period of operation in style on Wednesday 16 December. Collisions at 2.36TeV recorded since last weekend have set a new world record and brought to a close a successful first run for the world%27s most powerful particle accelerator. The LHC has now been put into standby mode, and will restart in February 2010 following a short technical stop to prepare for higher energy collisions and the start of the main research programme.</div></div><a name="L70f0795c458b8f0c82add12d5c82fd17"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%2770f0795c458b8f0c82add12d5c82fd17%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="I70f0795c458b8f0c82add12d5c82fd17"/></a><a href="http://www.interactions.org/cms/?pid=1028880" target="_blank"><font color="#ff8080">Newswire: KEK - KEKB/Belle integrated luminosity reached 1000 fb-1</font></a><div class="entrydesc" id="70f0795c458b8f0c82add12d5c82fd17" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                At the KEKB B-Factory, the total integrated luminosity accumulated by the Belle detector reached 1000 fb-1 on November 29th 2009, which was one of the initial goals of the KEKB project.</div></div><a name="Lbed52a01c58a1f514473eda3517a9e85"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27bed52a01c58a1f514473eda3517a9e85%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ibed52a01c58a1f514473eda3517a9e85"/></a><a href="http://www.interactions.org/cms/?pid=1028879" target="_blank"><font color="#ff0080">Newswire: DESY - DESY turns 50!</font></a><div class="entrydesc" id="bed52a01c58a1f514473eda3517a9e85" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                Germany%27s largest accelerator centre celebrates its anniversary today  Germany%27s largest accelerator centre celebrates its birthday on 18 December: the research centre Deutsches Elektronen-Synchrotron DESY turns 50. Since its foundation in 1959, DESY has developed into an internationally renowned centre for fundamental research. "DESY stands for top-level research in the development of particle accelerators and in the utilisation of these facilities to study the structure and function of matter," says Professor Helmut Dosch, Chairman of the DESY Board of Directors.</div></div><a name="Le4b9c0ad1cdc70e278f1a883805650e5"/><div class="entry" style="background-color: #ffffc0; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27e4b9c0ad1cdc70e278f1a883805650e5%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ie4b9c0ad1cdc70e278f1a883805650e5"/></a><a href="http://www.interactions.org/cms/?pid=1028863" target="_blank"><font color="#ff8080">Newswire: INFN - The first Italian website dedicated to the LHC</font></a><div class="entrydesc" id="e4b9c0ad1cdc70e278f1a883805650e5" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                The first Italian website dedicated exclusively to the Large Hadron Collider (LHC), the large particle accelerator located at CERN in Geneva, has been created. The site is managed by the Press Office of Italy%27s National Institute of Nuclear Physics (INFN) and was activated simultaneously with the completion of the first complete cycle of the particles within the accelerator%27s 27-km ring, after the accident that occurred last year.  The address is: http://www.infn.it/lhcitalia/</div></div><a name="Lb322740d76c16c0021f4b7089ed9fc02"/><div class="entry" style="background-color: #ffff80; font-family: Arial; font-size: 14px; max-height: 200px; overflow: hidden;&#10;&#9;        "><a href="javascript:toogle(%27b322740d76c16c0021f4b7089ed9fc02%27);"><img src="http://www.feeddistiller.com/images/rarrow.gif" width="16" height="16" align="top" border="0" id="Ib322740d76c16c0021f4b7089ed9fc02"/></a><a href="http://www.interactions.org/cms/?pid=1028843" target="_blank"><font color="#ff0080">Newswire: CERN - Colour X-ray Technology Set to Save Lives</font></a><div class="entrydesc" id="b322740d76c16c0021f4b7089ed9fc02" style="background-color: #ffc080; color: #000000; font-family: Arial; font-size: 10px; display: none;&#10;&#9;&#9;&#9; max-height: 200px; overflow: hidden; &#10;&#9;&#9;    ">');
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 html=html+unescape('                Geneva, 14 December 2009 Medical studies are soon to start with the MARS scanner, a revolutionary CT scanner developed by the University of Canterbury[1], New Zealand. The scanner, which incorporates technology developed at the world%27s leading particle physics research centre, CERN[2], was recently shipped to research partners in North America. Today a student from Canterbury arrives in North America to use the scanner to study heart disease. This development puts the technology, known as Medipix[3], firmly on the path to saving lives.</div></div></div>');

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