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Videos tagged with "materials"

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Real-time microwave dielectric measurement of polystyrene microparticles flowing inside a microfluidic channel

Real-time microwave dielectric measurement of polystyrene microparticles flowing inside a microfluidic channel

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<!--IMEDIA--><div class="imedia standard image-left"><div id="imedia-6314"><img src="http://wwwf.imperial.ac.uk/imedia/images/view/6314/medium/image.jpg" width="320" height="240" /> <a href="http://wwwf.imperial.ac.uk/imedia/content/view/6314/Real-time+microwave+dielectric+measurement+of+polystyrene+microparticles+flowing+inside+a+microfluidic+channel"><h2>Real-time microwave dielectric measurement of polystyrene microparticles flowing inside a microfluidic channel</h2></a><p><a href="http://wwwf.imperial.ac.uk/imedia/content/tagged/tag:materials">materials</a></p></div></div><!--END IMEDIA-->

HexMat – A story of hexagonal metals used in aerospace and nuclear power

The EPSRC funded HexMat programme grant ran from 2013-2018 tasked develop state-of-the-art understanding and researchers focussing on metals with hexagonal close packed structures.

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<!--IMEDIA--><div class="imedia standard image-left"><div id="imedia-6231"><img src="http://wwwf.imperial.ac.uk/imedia/images/view/6231/medium/image.jpg" width="320" height="240" /> <a href="http://wwwf.imperial.ac.uk/imedia/content/view/6231/HexMat+%E2%80%93+A+story+of+hexagonal+metals+used+in+aerospace+and+nuclear+power"><h2>HexMat – A story of hexagonal metals used in aerospace and nuclear power</h2></a><p><a href="http://wwwf.imperial.ac.uk/imedia/content/tagged/tag:materials">materials</a></p></div></div><!--END IMEDIA-->

Bouncy bio-glass scaffolds: computer animation

The bio-glass material could be used in the future to re-grow cartilage or as a cartilage replacement material. In the computer animation, the team show how a scaffold could be implanted behind the knee to encourage cartilage cells to grow.

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<!--IMEDIA--><div class="imedia standard image-left"><div id="imedia-5332"><img src="http://wwwf.imperial.ac.uk/imedia/images/view/5332/medium/image.jpg" width="320" height="240" /> <a href="http://wwwf.imperial.ac.uk/imedia/content/view/5332/Bouncy+bio-glass+scaffolds%3A+computer+animation+"><h2>Bouncy bio-glass scaffolds: computer animation </h2></a><p><a href="http://wwwf.imperial.ac.uk/imedia/content/tagged/tag:materials">materials</a></p></div></div><!--END IMEDIA-->

Bouncy bio-glass: team demonstrate self-healing properties

The bio-glass material could be used in the future to re-grow cartilage or as a cartilage replacement material. In the video the researchers demonstrate how it can self-heal, which could make it a more resilient and reliable implant.

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<!--IMEDIA--><div class="imedia standard image-left"><div id="imedia-5331"><img src="http://wwwf.imperial.ac.uk/imedia/images/view/5331/medium/image.jpg" width="320" height="240" /> <a href="http://wwwf.imperial.ac.uk/imedia/content/view/5331/Bouncy+bio-glass%3A+team+demonstrate+self-healing+properties"><h2>Bouncy bio-glass: team demonstrate self-healing properties</h2></a><p><a href="http://wwwf.imperial.ac.uk/imedia/content/tagged/tag:materials">materials</a></p></div></div><!--END IMEDIA-->

Bouncy bio-glass: team demonstrate bouncy properties

The bio-glass material could be used in the future to re-grow cartilage or as a cartilage replacement material. In the video the researchers demonstrate its shock-absorbing qualities, similar to how cartilage cushions our bones, by bouncing.

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<!--IMEDIA--><div class="imedia standard image-left"><div id="imedia-5330"><img src="http://wwwf.imperial.ac.uk/imedia/images/view/5330/medium/image.jpg" width="320" height="240" /> <a href="http://wwwf.imperial.ac.uk/imedia/content/view/5330/Bouncy+bio-glass%3A+team+demonstrate+bouncy+properties"><h2>Bouncy bio-glass: team demonstrate bouncy properties</h2></a><p><a href="http://wwwf.imperial.ac.uk/imedia/content/tagged/tag:materials">materials</a></p></div></div><!--END IMEDIA-->
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