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Interface and colloid science
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Related lectures (20)
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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.
Nanoparticles: Colloidal Systems and Particle Stabilization
Explores nanoparticles, colloids, and soft materials, covering particle motion, forces in dispersions, and stabilization mechanisms.
Colloidal Stability: DLVO Theory
Explores the DLVO theory for colloidal stability, covering zeta potential, interaction forces, and aggregation kinetics.
Emulsions: Stabilization Mechanism
Explores how surfactants and colloidal particles stabilize emulsions through lowering interfacial tension and particle adsorption.
Polymer Solutions: Steric Stabilization & Micelles
Explores polymer solutions, steric stabilization, micelles, and colloids with a focus on surfactants.
Small-angle X-ray Scattering: Techniques and Applications
Explores Small-angle X-ray Scattering principles, applications, and intensity calculations in various scientific fields.
Colloidal Particles: Stabilization and Characterization
Explores colloidal particle stabilization, polymer binding, SEM characterization, and particle assembly into crystals.
Surface Potential Measurement: Zeta Potential
Explores zeta potential measurement, DLVO theory, and colloidal stability in surface interactions and aggregation kinetics of colloidal suspensions.
Interfacial Chemistry: Introduction & Importance
Covers the basics of interfacial chemistry, including emulsions, surface tension, and the importance of interfaces in various applications.
Suspensions and Emulsions: Phenomenology
Explores suspensions, emulsions, interaction forces, stability factors, and emulsion types.