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Science & Technology
Gravitational waves have been found
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<blockquote data-quote="Opmmur" data-source="post: 123662" data-attributes="member: 13"><p><span style="font-size: 26px"><span style="color: #00ff00"><em>© REUTERS/Caltech/MIT/LIGO Laboratory/Handout via Reuters </em></span></span></p><p><span style="font-size: 18px"><span style="color: #00ff00"> </span></span></p><p><span style="font-size: 18px"><span style="color: #00ff00"><em> One of Laser Interferometer Gravitational-wave Observatory (LIGO) test masses installed as the 4th element in a 4-element suspension system is shown in this September 5, 2013, photo released by Caltech/MIT/LIGO Laboratory on February 8, 2016. "Test masses" are what LIGO scientists call the mirrors that reflect the laser beams along the lengths of the detector arms. The 40 kg test mass is suspended below the metal mass above by 4 silica glass fibers. </em></span></span></p><p></p><p><span style="font-size: 18px"><span style="color: #00ff00"><em><img src="http://img-s-msn-com.akamaized.net/tenant/amp/entityid/BBpoF9W.img?h=768&w=1366&m=6&q=60&o=f&l=f" alt="" class="fr-fic fr-dii fr-draggable " style="" /></em></span></span></p><p><span style="font-size: 18px"><span style="color: #00ff00"></span></span></p><p><span style="font-size: 18px"><span style="color: #00ff00"><em>A Laser Interferometer Gravitational-wave Observatory (LIGO) technician performs a Large optic inspection in this undated photo released by Caltech/MIT/LIGO Laboratory on February 8, 2016.</em></span></span></p><p></p><p><span style="font-size: 18px"><span style="color: #00ff00"><em><img src="http://img-s-msn-com.akamaized.net/tenant/amp/entityid/BBpopxN.img?h=768&w=1366&m=6&q=60&o=f&l=f" alt="" class="fr-fic fr-dii fr-draggable " style="" /></em></span></span></p></blockquote><p></p>
[QUOTE="Opmmur, post: 123662, member: 13"] [SIZE=7][COLOR=#00ff00][I]© REUTERS/Caltech/MIT/LIGO Laboratory/Handout via Reuters [/I][/COLOR][/SIZE] [SIZE=5][COLOR=#00ff00] [I] One of Laser Interferometer Gravitational-wave Observatory (LIGO) test masses installed as the 4th element in a 4-element suspension system is shown in this September 5, 2013, photo released by Caltech/MIT/LIGO Laboratory on February 8, 2016. "Test masses" are what LIGO scientists call the mirrors that reflect the laser beams along the lengths of the detector arms. The 40 kg test mass is suspended below the metal mass above by 4 silica glass fibers. [/I][/COLOR][/SIZE] [SIZE=5][COLOR=#00ff00][I][IMG]http://img-s-msn-com.akamaized.net/tenant/amp/entityid/BBpoF9W.img?h=768&w=1366&m=6&q=60&o=f&l=f[/IMG][/I] [I]A Laser Interferometer Gravitational-wave Observatory (LIGO) technician performs a Large optic inspection in this undated photo released by Caltech/MIT/LIGO Laboratory on February 8, 2016.[/I][/COLOR][/SIZE] [SIZE=5][COLOR=#00ff00][I][IMG]http://img-s-msn-com.akamaized.net/tenant/amp/entityid/BBpopxN.img?h=768&w=1366&m=6&q=60&o=f&l=f[/IMG][/I][/COLOR][/SIZE] [/QUOTE]
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Gravitational waves have been found
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