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Polymer Solutions & Colloidal Stability
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Related lectures (30)
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Adsorption at Interfaces: Challenges and Isotherms
Explores challenges in defining interfaces and various isotherms used in adsorption studies.
Adsorption at Interfaces: Gibbs, Langmuir, and BET Models
Covers the fundamental concepts of adsorption at interfaces, focusing on the Gibbs, Langmuir, and BET models.
Emulsions: Production and Stabilization
Explores the production and stabilization of emulsions, including the role of surfactants and nanoparticles in enhancing stability.
Liquid Crystals: Structure and Properties
Covers liquid crystal formation, micelle structure, amphiphilic molecules, and surface tension in fluids.
Interfacial Chemistry: Introduction & Importance
Covers the basics of interfacial chemistry, including emulsions, surface tension, and the importance of interfaces in various applications.
Ceramic Powders: Fragmentation Operations
Explores ceramic powder transformation through fragmentation operations, particle rupture mechanisms, and interparticle forces like van der Waals forces.
Powder Treatment: Rheology, Mixing and Granulation
Explores rheology, mixing, and granulation processes in powder treatment for ceramics and superplasticizers in suspensions.
Electrokinetic Phenomena: Double Layer and Flow Dynamics
Explores electrokinetic phenomena, including colloidal particle motion and the diffuse double layer model in chemical separations.
Dispersion Forces: Interactions and Applications
Explores dispersion forces, Van der Waals interactions, and magnetic attractions in ceramics and biomedical applications.
Polymer Physics: Ideal Chains
Explores ideal chains in polymer physics, discussing conformation, random walks, entropy, and the Schrodinger equation.