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Crystallography
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Related lectures (32)
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Synchrotrons and X-ray Free-Electron Lasers
Explores synchrotrons, X-ray lasers, and the crystallographic phase problem.
X-ray diffraction: history and basics
Explores the history, principles, and applications of X-ray diffraction in cement studies, highlighting key scientific contributions.
Magnetic Properties: Ferromagnetics & Miller Indices
Discusses stationary creep, material properties, magnetic properties of ferromagnetics, and Miller indices in crystallography.
Crystallography: Unit Cells, Lattices, and Reciprocal Lattice
Introduces crystallography basics, covering unit cells, lattices, and reciprocal lattice concepts.
X-rays: From Discovery to Applications
Explores the historical perspective, properties, and applications of X-rays, including diffraction, atomic resolution, and spectral colors of elements.
EBSD Basics: Applications and Data Analysis
Introduces EBSD basics, applications, data analysis, and practical aspects in materials science.
Crystal Diffraction: Phases and Structure Factor
Explores crystal diffraction techniques, phases of scattered waves, and the structure factor.
Magnetic Anisotropy: Observations in Iron, Nickel, and Cobalt
Analyzes magnetization curves in iron, nickel, and cobalt to explain magnetic anisotropy.
Crystallographic Structures: Symmetry and Diffraction
Explores crystallography principles, X-ray diffraction, and atomic arrangement in crystals.
EBSD Basics: Applications and Data Analysis
Introduces EBSD basics, applications, data analysis, and practical examples in material science.