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Electron Theory: Crystallography Basics
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Related lectures (32)
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Deviation from Bragg scattering
Covers electron diffraction theory, Bragg's law, reciprocal lattice, Ewald sphere, and weak-beam dark-field imaging.
Crystal Structure Determination by 3D Electron Diffraction
Explores crystal structure determination using 3D electron diffraction and its applications in nanocrystallography, emphasizing challenges and advancements.
Crystal Structures: Arrangement and Diffraction
Explores crystal structures, unit cells, Miller indices, and X-ray diffraction principles.
Crystallography Fundamentals
Introduces crystallography basics, covering crystal structures, diffraction patterns, and atomic arrangements.
Atomic-scale Modeling: Interactive Exercises and Graded Assignments
Explores atomic-scale modeling through interactive exercises and graded assignments, covering crystallography, diffraction, defects, and regression models.
Fourier Transform: X-ray Diffraction and Reciprocal Space
Explores reciprocal space, Bragg condition, and X-ray diffraction in crystal lattices.
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: Atomic Bonding, Structures, and Diffraction
Covers crystallography, atomic bonding, structures, diffraction, and coordination numbers in materials.
Multiple beam scattering in electron diffraction
Explores multiple beam scattering in electron diffraction, focusing on zone axis diffraction patterns and theoretical approaches.
Algebraic Structures and Crystallography
Covers algebraic structures, crystallography, crystal structures, and Euclidean geometry with a focus on vectors and crystal planes.