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Cell Biology: Thermodynamics
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Related lectures (51)
Thermodynamics: Entropy and State Functions
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Explores entropy, state functions, reversible processes, and the Carnot cycle in thermodynamics.
Specific Heat: Experimental Techniques & ESR
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Covers the challenges of measuring specific heat and the experimental procedure.
Exergy and Thermodynamics
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Explores exergy, entropy, and thermodynamic efficiencies in closed and open systems.
Entropy and Irreversibility
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Explores entropy, irreversible processes, reversible cycles, and the significance of reversible thermodynamic processes.
Thermodynamics: Second Principle
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Explores irreversible thermodynamic transformations, entropy increase, reciprocal relationships, and sound speed.
Polymer Blends: Thermodynamics and Phase Diagrams
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Explores the thermodynamics of polymer blends, phase diagrams, miscible blends, phase segregation, block copolymers, and applications in thermoplastic elastomers and nanotechnology.
Entropy and Disorder: Statistical Interpretation
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Explores entropy, order, and disorder in systems, emphasizing the role of metabolism in maintaining order in living organisms.
Chemical Thermodynamics: Principles and Applications
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Covers the principles of chemical thermodynamics, focusing on energy changes in reactions and the concept of enthalpy.
Thermodynamics: Second Principle and Engine Efficiency
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Explains the second principle of thermodynamics and its impact on engine efficiency.
Thermodynamics Basics
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Introduces the fundamental concepts of thermodynamics, including energy conservation, system definitions, and different forms of work.
Energy System Performance: Thermodynamics and Efficiency
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Explores thermodynamics, energy efficiency, and entropy generation in energy systems.
Chemical Equilibrium: Acids and Bases
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Explores chemical equilibrium, acids, bases, pH calculations, buffer solutions, and thermodynamic principles.
Graph Coloring: Entropy and Free Energy
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Explains entropy and free energy computation in graph coloring.
Heat Transfer Fundamentals
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Covers the basics of heat transfer, including conduction, convection, and radiation, as well as the principles of thermodynamics and phase changes.
Thermodynamic Systems: Basics
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Covers the basics of thermodynamic systems, energy transfer, state functions, forms of work, and energy conservation.
Nanoscale Heat Transfer: Fundamentals and Applications
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Covers the fundamentals of nanoscale heat transfer and energy conversion, exploring conduction, convection, and radiation.
Surface Energy: Definitions and Applications
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Covers the definitions of surface energy and interfacial energy, as well as the Wulff Plot and key questions about crystallographic planes.
States of Matter: Compressibility and Thermal Expansion
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Explores compressibility, thermal expansion, and specific heat capacity of materials.
First Law of Thermodynamics: Work and Thermodynamic Cycles
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Explores the concept of work in thermodynamics and its relation to thermodynamic cycles.
Energy Conservation in Open Systems
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Explores energy conservation in open systems, analyzing mass and energy transfer in turbines, compressors, and heat exchangers.
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