Materials Science: Difference between revisions
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| Electronic, Optical and Magnetic Properties of Materials |
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| http://ocw.mit.edu/courses/materials-science-and-engineering/3-024-electronic-optical-and-magnetic-properties-of-materials-spring-2013/ |
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| MIT |
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| non-degree |
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| Prof. Polina Anikeeva, Prof. Geoffrey Beach, Niels Holten-Andersen |
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| Browser |
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| Start anytime |
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| English |
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| Undergraduate |
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| Information Exploration: Becoming a Savvy Scholar |
| Information Exploration: Becoming a Savvy Scholar |
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===Select References=== |
===Select References=== |
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Chandler, David L. 2013. [http://web.mit.edu/newsoffice/2013/how-to-make-ceramics-that-bend-without-breaking-0926.html How to make ceramics that bend without breaking: New materials developed at MIT could lead to actuators on a chip and self-deploying medical devices]. September 26. Cambridge, MA: MIT News Office. |
Chandler, David L. 2013. [http://web.mit.edu/newsoffice/2013/how-to-make-ceramics-that-bend-without-breaking-0926.html How to make ceramics that bend without breaking: New materials developed at MIT could lead to actuators on a chip and self-deploying medical devices]. September 26. Cambridge, MA: MIT News Office. |
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Chandler, David L. 2013. [http://web.mit.edu/newsoffice/2013/better-cladding-for-nuclear-reactors-0726.html Improved nuclear fuel-rod cladding might prevent future Fukushimas: A substitute for traditional zircaloy could greatly reduce the danger of hydrogen explosions]. Cambridge, MA: MIT News Office. |
Chandler, David L. 2013. [http://web.mit.edu/newsoffice/2013/better-cladding-for-nuclear-reactors-0726.html Improved nuclear fuel-rod cladding might prevent future Fukushimas: A substitute for traditional zircaloy could greatly reduce the danger of hydrogen explosions]. Cambridge, MA: MIT News Office. |
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===World University and School Links=== |
===World University and School Links=== |
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