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Related lectures (32)
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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.
Crystal Structure: Diffraction and Bragg's Law
Explores diffraction principles for observing atomic arrangements and determining crystal structures in solids.
TEM imaging with diffraction contrast
Covers the basics of electron diffraction, diffraction theory, image formation, and X-ray diffraction techniques.
X-ray Diffraction Applied to Cement
Covers the basics of X-ray diffraction applied to cement and advanced data analysis techniques.
Glass Transition: Polymer Properties
Explores glass and melting transitions in polymers, including characterization methods and specific polymer properties.
New Magnetic Materials: Skyrmion-hosting Candidates
Explores new magnetic materials with potential skyrmion-hosting capabilities and discusses non-trivial magnetic textures in chiral semiconductors.
Fourier transforms: Light-matter interaction
Explores Fourier and Laplace transforms in materials science, focusing on light-matter interaction, diffraction patterns, and crystal properties.
Crystallographic Structures: Symmetry and Diffraction
Explores crystallography principles, X-ray diffraction, and atomic arrangement in crystals.
Crystallography: Atomic Bonding, Structures, and Diffraction
Covers crystallography, atomic bonding, structures, diffraction, and coordination numbers in materials.
Synchrotrons and X-ray Techniques
Explores Laue diffraction principles, applications, and modern techniques in materials science and time-resolved experiments.