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Exascale Co-design for Materials in Extreme Environments: Heterogeneous Algorithms for Heterogeneous Architectures
30 May 2012 | | Contributor(s):: Timothy C. Germann
Computational materials scientists have been among the earliest and heaviest users of leadership-class supercomputers. The codes and algorithms which have been developed span a wide range of physical scales and have been useful not only for gaining scientific insight, but also as testbeds for...
Aug 12 2013
ICANM 2013: International Conference (& Exhibition) on Advanced & Nano Materials
ICME 2008 NAP Report
29 Oct 2014 |
Posted by Tanya Faltens
Introduction to Materials Science & Engineering
08 Jul 2016
An undergraduate level course designed to provide an introduction to materials science.
Jeffrey E Kuhn
Jorge Mario Patino
KRISHNANAND SAHADEV PRASAD SHUKLA
Nanomaterial Mechanics Explorer
30 Jun 2015 | | Contributor(s):: Sam Reeve, Christopher Chow, Michael N Sakano, shuhui tang, Alexis Belessiotis, Mitchell Anthony Wood, Kiettipong Banlusan, Saaketh Desai, Alejandro Strachan
Simulate dislocation dynamics, crack propagation, nanowire tensile tests, and phase transitions
Nanomaterials for Bone & Neural Tissue Engineering
out of 5 stars
11 Sep 2008 | | Contributor(s):: S. Swaminathan
Tissue engineering is defined as “the application of biological, chemical and engineering principles towards the repair, restoration or regeneration of tissues using scaffolds, cells, factors alone or in combination.” The goal lis to design and develop biodegradable, biocompatible...
NCN Nanomaterials: Simulation Tools for Research
02 Jun 2009 |
Purdue Workshop—Predictive materials modeling and simulations: nano- and micro-mechanics
This by-invitation-only workshop will focus on recent progress and current challenges in the area of experimentally validated, predictive modeling of mechanical properties of nano-...
Thermoelectric Power Factor Calculator for Superlattices
18 Oct 2008 | | Contributor(s):: Terence Musho, Greg Walker
Quantum Simulation of the Seebeck Coefficient and Electrical Conductivity in 1D Superlattice Structures using Non-Equilibrium Green's Functions