Please use this identifier to cite or link to this item: http://dspace.mediu.edu.my:8181/xmlui/handle/1721.1/3970
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dc.creatorCarter, W. Craig-
dc.date2003-12-20T19:05:20Z-
dc.date2003-12-20T19:05:20Z-
dc.date2002-01-
dc.date.accessioned2013-10-09T02:33:20Z-
dc.date.available2013-10-09T02:33:20Z-
dc.date.issued2013-10-09-
dc.identifierhttp://hdl.handle.net/1721.1/3970-
dc.identifier.urihttp://koha.mediu.edu.my:8181/xmlui/handle/1721-
dc.descriptionMethods for and computed results of including the physics and spatial attributes of microstructures are presented for a number of materials applications in devices. The research in our group includes applications of computation of macroscopic response of material microstructures, the development of methods for calculating microstructural evolution, and the morphological stability of structures. In this review, research highlights are presented for particular methods for computing the response in: 1) ferroelectric materials for actuator devices; 2) coarse-graining of atomistic data for simulations of microstructural evolution during processing; 3) periodic and non-periodic photonic composites; and 4) re-chargeable battery microstructures.-
dc.descriptionSingapore-MIT Alliance (SMA)-
dc.format1514395 bytes-
dc.formatapplication/pdf-
dc.languageen_US-
dc.relationAdvanced Materials for Micro- and Nano-Systems (AMMNS);-
dc.subjectmacroscopic response of material microstructures-
dc.subjectcalculating microstructural evolution-
dc.subjectmorphological stability of structures-
dc.subjectferroelectric materials for actuator devices-
dc.subjectperiodic and non-periodic photonic composites-
dc.subjectre-chargeable battery microstructures-
dc.titleComputation and Simulation of the Effect of Microstructures on Material Properties-
dc.typeArticle-
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