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Structures and Properties of Silicate Materials
Explores the structures and properties of silicate materials, including crystalline formations, ceramics production, and energy of surface tension.
Algebraic Structures and Crystallography
Covers algebraic structures, crystallography, crystal structures, and Euclidean geometry with a focus on vectors and crystal planes.
Crystal Growth and Characterization
Explores crystal thinning, phase observation, and grain optimization for improved crystal growth and characterization.
Gems Tutorial: Simulating Diffraction Patterns
Covers the use of GEMS software for simulating diffraction patterns in materials science applications.
Formation of Bands in Semiconductors: Understanding Silicon and Gallium Arsenide
Covers the formation of bands in semiconductors, focusing on silicon and gallium arsenide, and their electronic properties and crystalline structures.
Catalyst Synthesis II: Deposition and Precipitation
Explores catalyst synthesis through deposition and precipitation, covering principles, applications, (co-)precipitation, zeolites, carbon supports, and perovskites.
Magnetoelectric Coupling in Cobalt-Based Tellurium Oxides
Explores magnetoelectric coupling in cobalt-based tellurium oxides with complex spin structures and their dynamic behavior using Brillouin Light Scattering.
Quantum Mechanics: 1D Crystals
Covers the quantum mechanics of 1D crystals with periodic boundary conditions.
Thermodynamics: Surface Energy & Crystal Growth
Explores surface energy, crystal growth, adhesion, and nucleation theories in thermodynamics and materials science.
Cyclic Deformation and Recrystallization
Explores cyclic deformation, dislocation structures, fatigue resistance, and recrystallization kinetics.