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Chemical Equilibrium: Reactions and Constants
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Related lectures (42)
Chemical Equilibrium
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Explores chemical equilibrium, including equilibrium constant, Le Chatelier's principle, and temperature effects.
Water Quality Modeling: Kinetics in PHREEQC
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Explores water quality modeling, focusing on reaction kinetics, equilibrium constants, and temperature effects, with practical examples of calcite precipitation and iron oxidation.
Untitled
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Arrhenius Equation: Kinetics and Equilibrium
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Covers the Arrhenius equation and its application to chemical equilibrium, as well as the transition state theory and chemical kinetics principles.
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.
Structural Mechanics Principles: Equilibrium and Stability
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Explores the principles of structural mechanics, including internal loads, equilibrium stability, and the superposition principle.
Water Quality Modelling: Equilibrium Phases
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Explores equilibrium phases in water quality modelling, illustrating with examples of mineral precipitation and pH adjustment.
Water Quality Modelling: Thermodynamics and Equilibrium
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Covers thermodynamics, reaction types, equilibrium constants, and the density of water and seawater.
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Chemical Equilibrium: Solubility and Reactivity
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Explores chemical equilibrium, solubility, and reactivity of organic compounds in various environments.
Hyperstatic Systems: Equilibrium and Strain Energy
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Explores hyperstatic systems, equilibrium, and strain energy in structures, including the application of the Menabrea theorem.
Thermo-Calc Software Overview
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Covers the history and usage trends of Thermo-Calc software for materials engineering.
Reaction Kinetics: Complex Mechanisms
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Explores reaction kinetics, rate laws, reversible reactions, and complex mechanisms, including parallel and consecutive reactions.
Static Equilibrium: Forces and Moments in Mechanics
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Covers the principles of static equilibrium and the balance of forces in mechanical systems.
Entropy and Thermodynamics: Microstates and Macrostates
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Covers the concepts of microstates and macrostates in thermodynamics, focusing on entropy and its implications for isolated systems.
Potential Energy, Mechanical Energy, and Resonance
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Explores potential energy, mechanical energy, and resonance in mechanical systems, including equilibrium, stability, and energy transformation.
Frames and Machines: Distributed Forces I
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Covers frames, machines, and distributed forces analysis in structures, including equilibrium, moment equations, and internal forces distribution.
Newton's Laws: Forces and Motion
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Discusses Newton's laws, momentum, action-reaction principle, and force equilibrium.
Static Equilibrium Modeling
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Explores modeling static equilibrium using nodes, forces, and bars, and discusses force identification and adjustment in structures.
Prestressed Structures: Internal Forces and Displacements
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Explores deformable structures, internal forces, displacements, prestressed structures, and wheel spokes tension.
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