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Related lectures (14)
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Crystallography: Unit Cells, Lattices, and Reciprocal Lattice
Introduces crystallography basics, covering unit cells, lattices, and reciprocal lattice concepts.
Modeling Class: Vesta Software Visualization
Explores crystal structure visualization using Vesta software for CCP and HCP arrangements.
Reciprocal Lattice and Diffraction
Explores reciprocal lattice in 2D systems, diffraction from lattice and atomic structures, emphasizing scattering and constructive interference.
Crystal Systems: Unit Cells and Symmetry
Explores crystal systems, unit cells, symmetry, and close-packed structures in solid state chemistry.
Synchrotrons and X-ray Techniques
Covers crystal diffraction basics, unit cells, lattice constants, and Miller indices.
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.
Biophysics: Molecular Crowding Effects
Delves into the effects of molecular crowding on cellular processes.
Understanding Diffraction: X-rays vs Neutrons
Compares x-rays and neutrons for material structure analysis using diffraction patterns.
Crystal Structures: Arrangement and Diffraction
Explores crystal structures, unit cells, Miller indices, and X-ray diffraction principles.
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.
Vector Analysis Review
Covers unit vectors, coordinate system conversion, divergence, and rotational concepts in vector analysis.
Electron Diffraction: Basics & Applications
Explores electron diffraction basics, including Bragg's law, reciprocal lattice, and applications like crystal phase discrimination.
Formation of Bands in Semiconductors: Understanding Silicon and Gallium Arsenide
Covers the formation of bands in semiconductors, focusing on silicon and gallium arsenide, and their electronic properties and crystalline structures.
Algebraic Structures and Crystallography
Covers algebraic structures, crystallography, crystal structures, and Euclidean geometry with a focus on vectors and crystal planes.
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