MECH&AE 258A
Nanomechanics and Micromechanics
Mechanical and Aerospace Engineering · 4 units · Graduate courses (200-299)
Analytical and computational modeling methods to describe mechanics of materials at scales ranging from atomistic through microstructure or transitional and up to continuum. Discussion of atomistic simulation methods (e.g., molecular dynamics, Langevin dynamics, and kinetic Monte Carlo) and their applications at nanoscale. Developments and applications of dislocation dynamics and statistical mechanics methods in areas of nanostructure and microstructure self-organization, heterogeneous plastic deformation, material instabilities, and failure phenomena. Presentation of technical applications of these emerging modeling techniques to surfaces and interfaces, grain boundaries, dislocations and defects, surface growth, quantum dots, nanotubes, nanoclusters, thin films (e.g., optical thermal barrier coatings and ultrastrong nanolayer materials), nano-identification, smart (active) materials, nanobending and microbending, and torsion.
Letter grading.
When it runs
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Requisites
Official UCLA wording
Requisite: course M256A.
BruinTree reads · Prerequisite
confidence 1.00 · from textRequires
Everything that has to come before this course, not just the courses named in the requisite above.
MECH&AE 258A
- MECH&AE M256ALinear Elasticity
- MECH&AE 156AAdvanced Strength of Materials
- MECH&AE 166AAnalysis of Aerospace Structures
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What this course is a requisite for, and what those courses lead to in turn.
No course in the catalog lists this as a requisite.





