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This course is an introduction to high-throughput experimental methods that accelerate the discovery and development of new materials.
This course is the first of three in a series of mechanics courses from the Department of Materials Science and Engineering at MIT. Part 1 covers stress-strain behavior, topics...
This course explores the analysis and design of thin-walled pressure vessels and engineering structures subjected to torsion.
This online course program explores statistical thermodynamics and was designed for learners working in advanced fields such as combustion, high temperature gas dynamics,...
This course provides an introduction to the mechanical behavior of materials, from both the continuum and atomistic points of view. This is part 2, which covers stress...
This online lecture covers the derivation of symmetry theory; lattices, point groups, space groups, and their properties; use of symmetry in tensor representation of crystal...
Fluid-Solid Interactions happen when the motion of solids and fluids are coupled. The aim of the course is to give students the basic tools to be able to understand, predict and...
This course explores the analysis and design of beam bending problems.
This online course program explores various materials science and engineering concepts. Topics include strengthening of metal, polymers, ceramic materials, and composite.
This online course explores the fundamentals of functional ceramics and the materials design rules for developing advanced ceramics with ultimate physical and chemical properties.
This online lecture uses the theory and application of atomistic computer simulations to model, understand, and predict the properties of real materials.
This online course explores materials from the atomic to the continuum level, and apply the learning to mechanics and engineering problems.
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