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Lecture
Van der Waals Interactions: Macroscopic Effects
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Van der Waals Gas: Introduction
Introduces the Van der Waals gas model for real fluids and its corrections to the ideal gas law.
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Explores adsorption, isotherms, and surface tension phenomena in nanoscale materials.
Adsorption Phenomena: Physi- vs. Chemisorption
Compares physisorption and chemisorption, covering interaction, strength, equilibrium, and gas adsorption isotherms.
Electrons in Periodic Potential: Band Structure
Covers electrons in periodic potential, band structure, intermolecular forces, and Van der Waals interactions in nanotechnology and surface science.
Thermodynamics: Heat Capacity of Ideal and Van der Waals Gases
Discusses the heat capacity of ideal gases and solids, and the Van der Waals equation's implications for real gases.
Polymer Collapse: Covolume and Free Energy
Explores polymer collapse, emphasizing covolume and free energy in the process.
Thermal Fluctuations in Gases
Explores thermal fluctuations in gases and the strength of various bonds, crucial in biological processes.
Surface Tension and Contact Angle
Explores surface tension, contact angle, wetting phenomena, and nanoparticle behaviors at different scales.
Kinetic Theory of Gases: Ideal and Van der Waals Models
Explains the kinetic theory of gases, focusing on ideal gas behavior and the van der Waals model.
Soft Matter Overview
Covers the properties of soft matter, including self-assembly, polymers, colloids, intermolecular forces, and the significance of soft materials in diverse applications.