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Lecture
Chemical Kinetics: Basic Concepts
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Related lectures (46)
Basic Concepts of Kinetics: Reactions and Rate Constants
Covers the basic concepts of kinetics, including elementary reactions and rate constants.
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Energy Transfer by Waves
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Explores energy transfer by waves, including photons, electrons, and phonons, discussing interfaces, evanescent waves, and tunneling.
Quantum Chemistry: Postulates and Harmonic Oscillator
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Explores the historical perspective and postulates of quantum mechanics, focusing on the harmonic oscillator and approximation methods.
Heterogeneous Catalysis: Basics and Kinetics
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Covers the basics of heterogeneous catalysis and the importance of transition state theory in predicting reaction rates.
Nanoscale Heat Transfer: Fundamentals and Applications
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Quantum Chemistry
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Covers topics in Quantum Chemistry, including history, tools, color & draw techniques, shapes, and mathematical conversions.
Quantum Chemistry: Eigenfunctions and Hermitian Operators
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Discusses eigenfunctions of Hermitian operators in quantum chemistry and the quantization of energy levels.
Infiltration using the Horton method
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Covers the principles and applications of infiltration using the Horton method.
Wave and Particle View
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Chemical Engineering of Heterogeneous Reactions: Kinetics and Catalysis
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Covers the analysis and understanding of heterogeneous reactions and reaction kinetics.
Heterogeneous Catalysis: Kinetics and Mechanisms
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Heterogeneous Catalysis: Kinetics and Transport Effects
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Explores heterogeneous catalysis, reaction kinetics, and transport effects in catalytic reactions.
Receptor-Ligand Interaction
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Explores receptor-ligand interactions, covering binding, dissociation, equilibrium, and quantification methods.
Entropy in Thermodynamics
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Green Chemistry Principles: Process Intensification Overview
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Heat Transfer from Extended Surfaces: Fins
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Covers the heat transfer from fins, exploring their behavior and optimization for efficiency.
Rubber Elasticity: Thermodynamic Considerations and Entropic Forces
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Explores the thermodynamic nature of rubber elasticity and the entropic forces involved in polymer deformation.
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