Related lectures (146)
Crystal Symmetry and Point Groups
Covers crystal symmetry, point groups, crystal classes, and space groups in relation to crystal structures and descriptions.
Symmetry in Materials Science
Explores symmetry in materials science, covering crystal elements, symmetry groups, crystal classes, and Bravais lattice system.
Deviation from Bragg scattering
Covers electron diffraction theory, Bragg's law, reciprocal lattice, Ewald sphere, and weak-beam dark-field imaging.
Crystal Structure: Real and Reciprocal Lattice
Explores crystal structure, real and reciprocal lattice, and Miller indices in the context of wave-particle duality and Schrodinger equation.
Crystallography: Describing Periodic Structures
Covers crystallography, lattice structures, vectors, and diffraction patterns.
Solid State Physics II: Tight-binding Model
Covers the tight-binding model for 1D atomic chains and its impact on energy levels.
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.
Diffraction Exercise
Covers the analysis of selected area diffraction patterns to identify crystal structures and calculate unit cell parameters.
Bragg's law: Transmission MicroscopyMOOC: Transmission Electron Microscopy for Materials Sciences
Explains Bragg's law in Transmission Electron Microscopy, focusing on the relationship between wavelength, crystal lattice spacing, and diffraction angle.
Polarization Methods
Explores linear polarization generation, birefringence, dichroism, and crystal classification.

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