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Lecture
Solid State Characterization
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Related lectures (31)
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Crystal Structure: Diffraction and Bragg's Law
Explores diffraction principles for observing atomic arrangements and determining crystal structures in solids.
Crystal Symmetry and Point Groups
Covers crystal symmetry, point groups, crystal classes, and space groups in relation to crystal structures and descriptions.
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.
Characterization Techniques in Solid State Chemistry
Explores standard characterization techniques, focusing on x-ray diffraction and its importance in determining crystal structures.
Introduction to Materials Science: Atomic Bonds and Crystal Structures
Explores atomic bonds, crystal structures, states of matter, and the cubic crystal system.
Crystallography: Describing Periodic Structures
Covers crystallography, lattice structures, vectors, and diffraction patterns.
Crystal Structures: Determination and Analysis
Covers the determination and analysis of crystal structures using techniques such as X-ray diffraction and electron microscopy.
Diffusion in Solids: Atomic Theory and Examples
Explores diffusion in gases, liquids, and solids, including atomic theory and examples in cubic crystals.
Solid State Chemistry: Fundamentals and Applications
Delves into the fundamentals and applications of solid state chemistry, covering classification, characterization techniques, and various practical uses.
Diffraction Exercise
Covers the analysis of selected area diffraction patterns to identify crystal structures and calculate unit cell parameters.