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Lecture
Suspensions and Emulsions: Phenomenology
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Related lectures (32)
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Rheology of Suspensions
Explores the rheology of suspensions, covering viscosity, particle interactions, and dynamic effects.
Powder Treatment: Rheology, Mixing and Granulation
Explores rheology, mixing, and granulation processes in powder treatment for ceramics and superplasticizers in suspensions.
Powder Treatment: Rheology, Mixing, and Granulation
Explores the rheology, mixing, and granulation of ceramic powders, emphasizing the importance of compound mixing and granulation methods.
Water: Properties and Solvent
Covers the essential properties of water, including its role as a solvent and the solubility of proteins, solutions, suspensions, and colloids.
Powder Treatment: Rheology, Mixing, Granulation
Covers powder treatment, rheology, mixing, granulation, and cement production in ceramic processing, emphasizing flow behavior and superplasticizers.
Mixing Properties of Infinite Measure Preserving Systems
Explores mixing properties of infinite measure preserving systems, focusing on suspensions, Govers transformations, and Lorentz gas.
Emulsions: Stabilization Mechanism
Explores how surfactants and colloidal particles stabilize emulsions through lowering interfacial tension and particle adsorption.
Control Systems: Chassis Dynamics
Analyzes control systems in chassis dynamics, focusing on automobile suspension systems.
Springs: Typical Functions
Covers the typical functions of springs, including exerting precise forces, storing and releasing energy, and filtering vibrations.
Colloids: Particle Motion and Stabilization
Explores colloids, particle motion, stabilization forces, and sedimentation speed, including electrostatic and steric stabilization, colloidal dispersions, and zeta potential measurements.