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Lecture
Crystal Structures: Cubic Systems
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Related lectures (32)
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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.
Crystallographic Structures: Symmetry and Diffraction
Explores crystallography principles, X-ray diffraction, and atomic arrangement in crystals.
Solid State Characterization
Covers state-of-the-art methods for solid state characterization and emphasizes choosing the appropriate method for different materials.
Crystal Structures: Miller Indices and Atom Arrangement
Explores crystal structures, Miller indices, X-ray diffraction, and solid microstructures.
Electron Diffraction: Basics & Applications
Explores electron diffraction fundamentals, crystal symmetry, and advanced techniques for materials analysis.
Crystallography Fundamentals
Introduces crystallography basics, covering crystal structures, diffraction patterns, and atomic arrangements.
Crystal Structures: Cubic Lattices & Miller Indices
Explores cubic crystal structures, coordination numbers, and packing factors in metals and alloys.
Crystal Structures: Arrangement and Diffraction
Explores crystal structures, unit cells, Miller indices, and X-ray diffraction principles.
Crystal Packing of Conjugated Molecules
Explores the crystal packing of conjugated molecules, discussing shapes, structures, and packing arrangements in the solid state.
Algebraic Structures and Crystallography
Covers algebraic structures, crystallography, crystal structures, and Euclidean geometry with a focus on vectors and crystal planes.