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Lecture
Crystallography Fundamentals
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Related lectures (32)
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TEM imaging with diffraction contrast
Covers the basics of electron diffraction, diffraction theory, image formation, and X-ray diffraction techniques.
Solid State Characterization
Covers state-of-the-art methods for solid state characterization and emphasizes choosing the appropriate method for different materials.
Crystal Structures: Reciprocal Lattice and Brillouin Zones
Covers crystallography concepts, including veganicide cells, reciprocal lattices, and Brillouin zones, essential for understanding electron behavior in crystal structures.
Crystal Structures: Determination and Analysis
Covers the determination and analysis of crystal structures using techniques such as X-ray diffraction and electron microscopy.
Imaging modes in TEM
Explores imaging modes in TEM, covering electron interactions, diffraction, contrast formation, and astigmatism correction.
Deviation from Bragg scattering
Covers electron diffraction theory, Bragg's law, reciprocal lattice, Ewald sphere, and weak-beam dark-field imaging.
Diffraction exercises
Covers exercises on electron diffraction to identify crystal structures and analyze diffraction patterns accurately.
Diffraction and Interference: Waves Phenomena
Explores diffraction, interference, X-ray diffraction, and light diffusion efficiency.
Crystallography: Atomic Bonding, Structures, and Diffraction
Covers crystallography, atomic bonding, structures, diffraction, and coordination numbers in materials.
Fourier transforms: Light-matter interaction
Explores Fourier and Laplace transforms in materials science, focusing on light-matter interaction, diffraction patterns, and crystal properties.