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Lecture
Crystal Structures of Metals and Ceramics
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Related lectures (29)
Crystal Structures: Cubic Lattices & Miller Indices
Explores cubic crystal structures, coordination numbers, and packing factors in metals and alloys.
Deformation and Creep in Materials
Explores deformation, creep, material properties, mechanical tests, ceramics, polymers, metals, and atomic bonds.
Materials Science: Elasticity and Structures
Explores the properties of materials, elasticity, crystal structures, and polymers.
Ceramic Materials: Structures and Properties
Explores atomic bonds, crystal structures, and polymorphism in ceramics, highlighting the importance of atomic size in crystal packing.
Crystal Packing of Conjugated Molecules
Explores the crystal packing of conjugated molecules, discussing shapes, structures, and packing arrangements in the solid state.
Supramolecular Organisation: Solid State
Explores the supramolecular organization of π-conjugated molecules in the solid state, covering crystal structures and packing preferences.
Crystal Packing of Conjugated Molecules
Explores the shapes and crystal structures of conjugated molecules, discussing packing arrangements, polymorphism, and the impact of substituents on crystal packing.
Density of States in Semiconductor Devices
Explores density of states in semiconductor devices, covering electron gas, energy bands, Fermi-Dirac distribution, and band structures.
Metals and Alloys: Properties and Applications
Explores the properties, extraction, and applications of metals and alloys, including historical evolution and recycling rates.
Introduction to Materials Science
Introduces materials science, covering crystal structures, metal alloys, defects in crystals, and ceramics.
Metals and Alloys: Properties and Production
Covers stress-strain curves, specific moduli, and energy footprint of metals production.
Crystal Structures: Miller Indices and Atom Arrangement
Explores crystal structures, Miller indices, X-ray diffraction, and solid microstructures.
Metals: from atom to solid
Explores the properties and applications of metals, emphasizing optimization of microstructures and mechanical behaviors.
Structure of Materials
Covers the structure of metallic alloys, ceramics, and organic materials, including crystalline structures and defects in crystals.
Phase Transformations: Fundamentals and Applications
Introduces phase transformations in materials science, covering thermodynamics, phase diagrams, and their applications in material development.
Structure of Materials: Metals, Ceramics, Polymers
Covers the structure of metals, ceramics, and polymers, discussing coordination, defects, and polymer classification.
Metals and Alloys: Microstructures and Transformations
Explores metals and alloys, focusing on microstructures, transformations, energy footprints, and extraction processes.
Glass Transition: Polymer Properties
Explores glass and melting transitions in polymers, including characterization methods and specific polymer properties.
Chemistry: Atomic Structure and Thermodynamics
Covers atomic structure, thermodynamics, material properties, and ideal gas law.
Metal Alloys: Structure and Properties
Explores the structure of metal alloys, coordination of atoms, phases at different temperatures, and the arrangement of atoms in nanocrystals.
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