Thermal Physics Tutorials with Python Simulations
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Thermal Physics Tutorials with Python Simulations
Kouh, Taejoon; Kouh, Minjoon
Taylor & Francis Ltd
12/2024
224
Mole
9781032263434
Pré-lançamento - envio 15 a 20 dias após a sua edição
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Chapter 1. Calculating ?. Chapter 2. Kinetic Theory of Gas. Chapter 3. Velocity Distribution. Chapter 4. Thermal Processes. Chapter 5. Premise of Statistical Mechanics. Chapter 6. Revisiting Ideal Gas. Chapter 7. Revisiting Thermal Processes. Chapter 8. Entropy, Temperature, Energy, and Other Potentials. Chapter 9. Two-State System. Chapter 10. Specific Heat. Chapter 11. Random and Guided Walks. Appendix. Epilogue.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
computational;mathematical;classical thermodynamics;statistical mechanics;visualizations;simulations;scientific computing;engineering;Code Block;Import Numpy;dW;Optional Input Argument;Energy Conservation;Ideal Gas;Partition Function;Import Matplotlib;Internal Energy;Average Internal Energy;Integer Lattice Point;Thermal System;Gas Particles;Int;Quantum Number;Adiabatic Process;Energy Conservation Principle;Average Kinetic Energy;Boltzmann Distribution;Isothermal Process;Positive Octant;Electrical Potential Energy;Multiple Particles;Gravitational Potential Energy;Thermal Processes
Chapter 1. Calculating ?. Chapter 2. Kinetic Theory of Gas. Chapter 3. Velocity Distribution. Chapter 4. Thermal Processes. Chapter 5. Premise of Statistical Mechanics. Chapter 6. Revisiting Ideal Gas. Chapter 7. Revisiting Thermal Processes. Chapter 8. Entropy, Temperature, Energy, and Other Potentials. Chapter 9. Two-State System. Chapter 10. Specific Heat. Chapter 11. Random and Guided Walks. Appendix. Epilogue.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
computational;mathematical;classical thermodynamics;statistical mechanics;visualizations;simulations;scientific computing;engineering;Code Block;Import Numpy;dW;Optional Input Argument;Energy Conservation;Ideal Gas;Partition Function;Import Matplotlib;Internal Energy;Average Internal Energy;Integer Lattice Point;Thermal System;Gas Particles;Int;Quantum Number;Adiabatic Process;Energy Conservation Principle;Average Kinetic Energy;Boltzmann Distribution;Isothermal Process;Positive Octant;Electrical Potential Energy;Multiple Particles;Gravitational Potential Energy;Thermal Processes