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On determining absolute entropy without quantum theory or the third law of thermodynamics

New journal of physics, ISSN 1367-2630, 04/2016, Volume 18, Issue 4, p. 43022

...–Duhem equation yields various simple methods to determine the absolute entropy of a fluid...

Gibbs-Duhem equation | entropy | third law of thermodynamics | Saha equation | Sackur-Tetrode equation | Thermodynamics | Ionization | Quantum mechanics | Ideal gas | Statistical methods | Absolute zero | Quantum theory

Gibbs-Duhem equation | entropy | third law of thermodynamics | Saha equation | Sackur-Tetrode equation | Thermodynamics | Ionization | Quantum mechanics | Ideal gas | Statistical methods | Absolute zero | Quantum theory

Journal Article

REVISTA MEXICANA DE FISICA E, ISSN 1870-3542, 06/2011, Volume 57, Issue 1, pp. 11 - 15

.... We show that the equations for the energy density, entropy density and chemical potential remain the same of an ideal gas confined to a constant volume V...

IDEAL-GAS | Expanding universe | THERMODYNAMICS | COSMOLOGICAL CONSTANT | PARTICLES | PHYSICS, MULTIDISCIPLINARY | Sackur-Tetrode equation | DARK ENERGY | STATE | HISTORY & PHILOSOPHY OF SCIENCE | ideal gas | SUPERNOVAE

IDEAL-GAS | Expanding universe | THERMODYNAMICS | COSMOLOGICAL CONSTANT | PARTICLES | PHYSICS, MULTIDISCIPLINARY | Sackur-Tetrode equation | DARK ENERGY | STATE | HISTORY & PHILOSOPHY OF SCIENCE | ideal gas | SUPERNOVAE

Journal Article

European journal of physics, ISSN 0143-0807, 09/2015, Volume 36, Issue 5, pp. 55033 - 15

We present a review of some aspects related to the experimental validity of the Sackur-Tetrode equation for the entropy of monatomic ideal gases...

Nernst theorem | ideal gas | entropy | Sackur-Tetrode equation | THERMODYNAMIC PROPERTIES | CONSTANTS | FUSION | PHYSICS, MULTIDISCIPLINARY | LIQUID | HEAT | VAPOR | SOLID ARGON | KRYPTON | POINT | EDUCATION, SCIENTIFIC DISCIPLINES | Derivation | Mathematical analysis | Entropy

Nernst theorem | ideal gas | entropy | Sackur-Tetrode equation | THERMODYNAMIC PROPERTIES | CONSTANTS | FUSION | PHYSICS, MULTIDISCIPLINARY | LIQUID | HEAT | VAPOR | SOLID ARGON | KRYPTON | POINT | EDUCATION, SCIENTIFIC DISCIPLINES | Derivation | Mathematical analysis | Entropy

Journal Article

2018, ISBN 9789811323140, 203

This is a book about thermodynamics, not history, but it adopts a semi-historical approach in order to highlight different approaches to entropy.

Entropy-Mathematical models | Biochemistry, general | Engineering | Thermodynamics | Engineering Fluid Dynamics | Engineering Thermodynamics, Heat and Mass Transfer | Quantum statistics | Entropy of radiation | Rotational partition function | Entropy and probability | Szilard's engine | Gibbs;s paradox | Gibbs fee energy | von Neumann entropy | Partition functions | Helmholtz free energy | Landauer's principle | Sackur-Tetrode equation | Heat transfer | Microcanonical ensemble

Entropy-Mathematical models | Biochemistry, general | Engineering | Thermodynamics | Engineering Fluid Dynamics | Engineering Thermodynamics, Heat and Mass Transfer | Quantum statistics | Entropy of radiation | Rotational partition function | Entropy and probability | Szilard's engine | Gibbs;s paradox | Gibbs fee energy | von Neumann entropy | Partition functions | Helmholtz free energy | Landauer's principle | Sackur-Tetrode equation | Heat transfer | Microcanonical ensemble

eBook

Revista Mexicana de Fisica E, ISSN 1870-3542, 2011, Volume 57, Issue 1, pp. 11 - 15

Journal Article

Zeitschrift für Physikalische Chemie, ISSN 0942-9352, 01/2003, Volume 217, Issue 1, pp. 55 - 78

... Schrödinger equation applying periodic boundary conditions. The Boltzmann constant
represents the atomic entropy unit...

Quantum Thermodynamics | Entropy Operator and Equation of Sackur-Tetrode | Density Matrix Theory | Entropy Production P | Evolution of Entropy in Time t | CHEMISTRY, PHYSICAL | quantum thermodynamics | evolution of entropy in time t | entropy operator and equation of Sackur-Tetrode entropy production P | density matrix theory | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL

Quantum Thermodynamics | Entropy Operator and Equation of Sackur-Tetrode | Density Matrix Theory | Entropy Production P | Evolution of Entropy in Time t | CHEMISTRY, PHYSICAL | quantum thermodynamics | evolution of entropy in time t | entropy operator and equation of Sackur-Tetrode entropy production P | density matrix theory | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL

Journal Article

Physics in Perspective, ISSN 1422-6944, 9/2013, Volume 15, Issue 3, pp. 295 - 319

The endeavor of Otto Sackur (1880–1914) was driven, on the one hand, by his interest in Nernst’s heat theorem, statistical mechanics, and the problem of...

Ludwig Boltzmann | Arnold Eucken | Josiah Willard Gibbs | Richard Abegg | Walther Nernst | quantum theory of gases | Otto Stern | quantum statistical mechanics | chemical constant | law of mass action | phase space | entropy | Max Born | quantization | Peter Debye | Hugo Tetrode | heat theorem | Jacobus Henricus van’t Hoff | heat capacity | Physics | Max Planck | first Solvay Conference | Kaiser Wilhelm Institute for Physical Chemistry and Electrochemistry | third law of thermodynamics | Fritz Haber | Sackur-Tetrode equation | Physics, general | Otto Sackur | affinity | First Solvay Conference | Heat capacity | Quantization | Quantum statistical mechanics | Entropy | Chemical constant | Heat theorem | Affinity | Law of mass action | Phase space | Third law of thermodynamics | Quantum theory of gases | Debye | PLANCK | van't Hoff | CONSTANTS | STEAM | HISTORY & PHILOSOPHY OF SCIENCE | Conference | Kaiser | HEAT | BOLTZMANN | EQUATION | STATISTICS | first Solvay | Wilhelm Institute for Physical Chemistry and Electrochemistry | HYDROGEN | Jacobus Henricus | Peter | COMBINATORICS | Electrochemistry | Thermodynamics | Electrochemical reactions | Quantum theory

Ludwig Boltzmann | Arnold Eucken | Josiah Willard Gibbs | Richard Abegg | Walther Nernst | quantum theory of gases | Otto Stern | quantum statistical mechanics | chemical constant | law of mass action | phase space | entropy | Max Born | quantization | Peter Debye | Hugo Tetrode | heat theorem | Jacobus Henricus van’t Hoff | heat capacity | Physics | Max Planck | first Solvay Conference | Kaiser Wilhelm Institute for Physical Chemistry and Electrochemistry | third law of thermodynamics | Fritz Haber | Sackur-Tetrode equation | Physics, general | Otto Sackur | affinity | First Solvay Conference | Heat capacity | Quantization | Quantum statistical mechanics | Entropy | Chemical constant | Heat theorem | Affinity | Law of mass action | Phase space | Third law of thermodynamics | Quantum theory of gases | Debye | PLANCK | van't Hoff | CONSTANTS | STEAM | HISTORY & PHILOSOPHY OF SCIENCE | Conference | Kaiser | HEAT | BOLTZMANN | EQUATION | STATISTICS | first Solvay | Wilhelm Institute for Physical Chemistry and Electrochemistry | HYDROGEN | Jacobus Henricus | Peter | COMBINATORICS | Electrochemistry | Thermodynamics | Electrochemical reactions | Quantum theory

Journal Article

Chemical physics, ISSN 0301-0104, 03/2018, Volume 504, pp. 8 - 12

....•A bridge between entropy and the uncertainty relation in quantum state is provided.
An expression for the entropy of a monoatomic classical ideal gas is known as the Sackur-Tetrode equation...

Ideal gas entropy | Uncertainty relation | Fluctuation analysis | Sackur-Tetrode formula | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMICAL CONSTANT | CHEMISTRY, PHYSICAL

Ideal gas entropy | Uncertainty relation | Fluctuation analysis | Sackur-Tetrode formula | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMICAL CONSTANT | CHEMISTRY, PHYSICAL

Journal Article

Zeitschrift für Naturforschung A, ISSN 0932-0784, 12/1996, Volume 51, Issue 12, pp. 1247 - 1248

In seeking a rational basis for the general rules regarding the enthalpy of vaporisation of a liquid, it is shown that whereas Trouton's Rule is consistent...

Trouton's rule | Translational entropy | Entropy of vaporisation | The THE rule | Sackur-Tetrode equation | translational entropy | entropy of vaporisation | CHEMISTRY, PHYSICAL | K UI PHYSICS | K EI CHEMISTRY, PHYSICAL | PHYSICS

Trouton's rule | Translational entropy | Entropy of vaporisation | The THE rule | Sackur-Tetrode equation | translational entropy | entropy of vaporisation | CHEMISTRY, PHYSICAL | K UI PHYSICS | K EI CHEMISTRY, PHYSICAL | PHYSICS

Journal Article

Zeitschrift für physikalische Chemie (Neue Folge), ISSN 0942-9352, 1996, Volume 195, Issue 1-2, pp. 1 - 13

Journal Article

Proceedings of the Indian Academy of Sciences - Chemical Sciences, ISSN 0253-4134, 04/1994, Volume 106, Issue 2, pp. 217 - 227

.... The formalism yields the same Sackur-Tetrode expression for the local entropy earlier obtained by other methods, plus corrections of that equation for ''nonideality...

Density functional theory | electron gas | modified Sackur-Tetrode equation | local entropy | thermodynamical description | LOCAL ENTROPY | MATRIX | MODIFIED SACKUR-TETRODE EQUATION | ENERGY | DENSITY FUNCTIONAL THEORY | THERMODYNAMICAL DESCRIPTION | PHASE-SPACE APPROACH | SYSTEMS | ELECTRON GAS | CHEMISTRY, MULTIDISCIPLINARY

Density functional theory | electron gas | modified Sackur-Tetrode equation | local entropy | thermodynamical description | LOCAL ENTROPY | MATRIX | MODIFIED SACKUR-TETRODE EQUATION | ENERGY | DENSITY FUNCTIONAL THEORY | THERMODYNAMICAL DESCRIPTION | PHASE-SPACE APPROACH | SYSTEMS | ELECTRON GAS | CHEMISTRY, MULTIDISCIPLINARY

Journal Article

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