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Lecture
Crystal Structure: Miller Indices and Compactness
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Crystal Systems: Unit Cells and Symmetry
Explores crystal systems, unit cells, symmetry, and close-packed structures in solid state chemistry.
Crystal Structures: Determination and Analysis
Covers the determination and analysis of crystal structures using techniques such as X-ray diffraction and electron microscopy.
Diffraction Exercise
Covers the analysis of selected area diffraction patterns to identify crystal structures and calculate unit cell parameters.
Crystal Symmetry and Point Groups
Covers crystal symmetry, point groups, crystal classes, and space groups in relation to crystal structures and descriptions.
Crystallography Basics: Symmetry and Crystal Classes
Introduces crystallography basics, covering symmetry elements, crystal classes, and their representations.
Crystal Structures: Miller Indices and Atom Arrangement
Explores crystal structures, Miller indices, X-ray diffraction, and solid microstructures.
Untitled
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.
Polarization Methods
Explores linear polarization generation, birefringence, dichroism, and crystal classification.
Multipole Expansion in Electrostatics and Magnetostatics
Explores multipole expansion in electrostatics and magnetostatics, focusing on monopole, dipole, and higher-order moments, and their mathematical representations.