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Colloidal Stability: DLVO Theory
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Interfacial Chemistry: Surface Tension, Adsorption, Electrokinetics
Covers surface tension, adsorption, and electrokinetics, including gas/liquid interface, Langmuir isotherm, and electro-osmosis.
Colloidal Crystals: Assembly and Applications
Explores the assembly of particles on solid surfaces, the formation of coffee ring patterns, and the creation of colloidal crystals.
Powder Treatment: Rheology, Mixing and Granulation
Explores rheology, mixing, and granulation processes in powder treatment for ceramics and superplasticizers in suspensions.
Polymer Collapse: Covolume and Free Energy
Explores polymer collapse, emphasizing covolume and free energy in the process.
Dispersion Forces: Interactions and Applications
Explores dispersion forces, Van der Waals interactions, and magnetic attractions in ceramics and biomedical applications.
Dispersion and Van der Waals Forces
Explores dispersion production, interparticle forces, and colloidal stability.
Colloidal Particles: Stabilization and Characterization
Explores colloidal particle stabilization, polymer binding, SEM characterization, and particle assembly into crystals.
Powder Treatment: Rheology, Mixing, and Granulation
Explores the rheology, mixing, and granulation of ceramic powders, emphasizing the importance of compound mixing and granulation methods.
Electrokinetic Phenomena: Double Layer and Flow Dynamics
Explores electrokinetic phenomena, including colloidal particle motion and the diffuse double layer model in chemical separations.
Interfacial Chemistry: Introduction & Importance
Covers the basics of interfacial chemistry, including emulsions, surface tension, and the importance of interfaces in various applications.