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Physics - Thermodynamics : a QuickStudy Digital Reference Guide.

Ebook Central College Complete Available online

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Format:
Book
Author/Creator:
Kraabel, Brett.
Language:
English
Subjects (All):
Thermodynamics.
Physical Description:
1 online resource (6 pages)
Edition:
1st ed.
Other Title:
Physics - Thermodynamics
Place of Publication:
Newburyport : BarCharts, Inc., 2019.
Summary:
For this challenging area of Physics get the answers you need at your fingertips, faster than any other source. Success in Physics is critical when entering the growing fields of technology, computer science and engineering that will support our future progress and innovation with breakthroughs and advances. To help retain the facts, equations and concepts essential to success in class and beyond, these 6 digital pages can be referenced quickly and easily while studying, as a refresher before exams or even as a desktop reference beyond school. Expertly written by author, editor and professor Brett Kaabel PhD, and designed for quick use and high retention. Be sure to get our original Physics guide and Physics 2 for more complete coverage and better grades for an unmatched value. 6 page digital guide includes: Introduction Conventions Extensive vs. Intensive Properties Moles Thermal Energy & Temperature Definitions Temperature Scales Laws of Thermodynamics Zeroth Law of Thermodynamics First Law of Thermodynamics Second Law of Thermodynamics Thermodynamic Potentials Fundamental Thermodynamic Relationships Maxwell Relations Thermal Properties of Systems Linear Expansion Volume Expansion Heat Capacity Phases Phase Diagram Change of Phase Kinetic Theory of Gasses Kinetic Theory of Ideal Gas Equation of State for Ideal Gas Van der Waals Equation of State Equations of the State of Liquids Transfer of Thermal Energy Conduction Convection Evaporation Radiation Thermodynamic Processes Change in Internal Energy for Any Ideal Gas Process Change in Entropy for Any Ideal Gas Process Constrained Ideal Gas Processes Heat Engines
Contents:
Physics Thermodynamics
Introduction
KEY VARIABLES
CONSTANTS
Conventions
Extensive vs. Intensive Properties
Moles
Thermal Energy &amp
Temperature
Definitions
Temperature Scales
Arbitrary Scales
Absolute Scales
Conversion between Temperature Scales
Laws of Thermodynamics
Zeroth Law of Thermodynamics
First Law of Thermodynamics
Second Law of Thermodynamics
Entropy
Fundamental Assumption of Statistical Thermodynamics
Microscopic Version of the Second Law
Macroscopic Version of the Second Law
Consequences of the Second Law
Thermodynamic Potentials
Fundamental Thermodynamic Relationships
Internal Energy
Enthalpy
Helmholtz Free Energy
Gibbs Free Energy
Relations between Internal Energy, Enthalpy &amp
Free Energies
Maxwell Relations
Thermal Properties of Systems
Linear Expansion
Volume Expansion
Heat Capacity
Extensive Heat Capacity
Intensive Heat Capacity
Specific Heat Capacity
Molar Heat Capacity
Particle Heat Capacity
Degrees of Freedom
Quantum Effects
Heat Capacity Ratio for Ideal Gas
Phases
Phase Diagram
Change of Phase
Liquid-Solid Phase Transition
Liquid-Vapor Phase Transition
Constant Pressure Processes
Kinetic Theory of Gases
Kinetic Theory of Ideal Gas
Equipartition of Energy
Equipartition of Space
Ideal Gas in Thermal Equilibrium
Maxwell-Boltzmann Distribution
Dalton's Law
Equation of State for Ideal Gas
Ideal Gas Law
Boyle's Law
Charles's Law
Avogadro's Law
Gay-Lussac's Law
Summary of Gas Laws
Van der Waals Equation of State
Equations of State of Liquids
Hard Sphere Model
Soft Sphere Model
Transfer of Thermal Energy
Conduction
Fourier's Law of Thermal Conduction
One-Dimensional Thermal Conduction.
Thermal Conductivity of Ideal Gas
Thermal Conductivity of Metals
Thermal Resistance
Radial Thermal Conduction
Convection
Characteristic Numbers Describing Convective Flow
Evaporation
Radiation
Kirchhoff's Law
Stephan-Boltzmann Law
Blackbody
Emission from a Blackbody
Wien's Displacement Law
Thermodynamic Processes
Change in Internal Energy for Any Ideal Gas Process
Change in Entropy for Any Ideal Gas Process
Constrained Ideal Gas Processes
P-V Graphs for Constrained Ideal Gas Processes
Heat Engines
Heat Engine Diagram
Efficiency of Heat Engine
P-V Graphs for Heat Engines
Thermodynamic Pumps
SUMMARY OF THERMODYNAMICS OF BRAYTON CYCLE
SUMMARY OF THERMODYNAMICS OF OTTO CYCLE
SUMMARY OF PROPERTIES OF CONSTRAINED IDEAL GAS PROCESSES.
Notes:
Description based on publisher supplied metadata and other sources.
ISBN:
9781423242291
1423242297
OCLC:
1241446329

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