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Related lectures (32)
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Van der Waals Materials: 2D Crystals
Delves into the properties of Van der Waals materials, emphasizing 2D crystals with distinct in-plane bonding and weak interlayer interactions.
Crystallography Basics: Symmetry and Crystal Classes
Introduces crystallography basics, covering symmetry elements, crystal classes, and their representations.
Crystalline Phase in Polymers
Explores the crystalline phase in polymeric materials, focusing on characterization, kinetics, and thermodynamics of crystallization.
Symmetry in Materials Science
Explores symmetry in materials science, covering crystal elements, symmetry groups, crystal classes, and Bravais lattice system.
Strain and Heteroepitaxy
Explores the impact of strain on semiconductor band structures, epitaxy, critical thickness, and defect formation, emphasizing the role of Hooke's law and elasticity theory.
Structure of Materials
Covers the structure of metallic alloys, ceramics, and organic materials, including crystalline structures and defects in crystals.
Crystallography: Atomic Bonding, Structures, and Diffraction
Covers crystallography, atomic bonding, structures, diffraction, and coordination numbers in materials.
Crystal Structure: Diffraction and Bragg's Law
Explores diffraction principles for observing atomic arrangements and determining crystal structures in solids.
Materials Science: Crystal Structures
Covers crystal structures in materials science, including bravais networks and miller indices.
Crystal Structures: Cubic Systems
Introduces crystal structures, focusing on cubic systems, explaining how to index crystal planes and directions.