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Lecture
Symmetry in Materials Science
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Related lectures (29)
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Electron Diffraction: Basics and Applications
Covers the fundamentals of electron diffraction and its applications in understanding crystal structures and symmetry, including lattice vectors, lattice planes, and dark-field imaging techniques.
Symmetry Operations in Materials Science
Covers symmetry operations in materials science, including rotations and helical axes.
Crystallography Basics: Symmetry and Crystal Classes
Introduces crystallography basics, covering symmetry elements, crystal classes, and their representations.
Symmetry in Modern Space
Explores the classification and practical applications of symmetries in 3D space, emphasizing user-driven determination of object symmetries.
Crystallographic Structures: Symmetry and Diffraction
Explores crystallography principles, X-ray diffraction, and atomic arrangement in crystals.
Geometric Transformations in R2 and R3: Visualizations and Rotations
Covers visualizations in orthonormal bases in R2, focusing on rotations and reflections.
Advanced Physics I
Covers velocity, acceleration, dynamics, moments of inertia, and kinetic energy storage systems.
Symmetry Elements in Materials Science
Covers the fundamental concepts of symmetry elements in materials science.
Isometries in Euclidean Spaces
Explores isometries in Euclidean spaces, including translations, rotations, and linear symmetries, with a focus on matrices.
Crystal Structures: Cubic Lattices & Miller Indices
Explores cubic crystal structures, coordination numbers, and packing factors in metals and alloys.