Ehrenfest equations

E735843

The Ehrenfest equations are relations in thermodynamics that describe how phase transition properties change with pressure and temperature, particularly for second-order phase transitions.

All labels observed (1)

Label Occurrences
Ehrenfest equations canonical 2

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Statements (47)

Predicate Object
instanceOf equation in thermodynamics ⓘ
phase transition relation ⓘ
thermodynamic relation ⓘ
appliesTo continuous phase transitions ⓘ
second-order phase transitions ⓘ
assumes continuity of Gibbs free energy across the phase boundary ⓘ
continuity of first derivatives of Gibbs free energy for second-order transitions ⓘ
reversible processes at the phase boundary ⓘ
basedOn Gibbs free energy ⓘ
category thermodynamic equations of state ⓘ
characterizes second-order phase transition via discontinuity of second derivatives of Gibbs free energy ⓘ
comparedTo Clapeyron equation ⓘ
describes behavior of phase transitions under changes of pressure and temperature ⓘ
discontinuities in response functions at a phase transition ⓘ
field statistical mechanics ⓘ
thermodynamics ⓘ
generalizes Clapeyron equation to second-order transitions ⓘ
hasForm dT_c/dp = (V_2 - V_1)/(S_2 - S_1) for a phase transition ⓘ
dT_c/dp = (κ_{T2} - κ_{T1})/(α_2 - α_1) T_c for a second-order transition ⓘ
dT_c/dp = T_c (α_2 - α_1)/(C_{p2} - C_{p1}) for a second-order transition ⓘ
hasVariable molar entropy ⓘ
molar volume ⓘ
pressure ⓘ
temperature ⓘ
historicalContext introduced in early 20th century ⓘ
involves entropy ⓘ
heat capacity at constant pressure ⓘ
isothermal compressibility ⓘ
pressure ⓘ
thermal expansion coefficient ⓘ
transition temperature ⓘ
volume ⓘ
namedAfter Paul Ehrenfest ⓘ
relates changes in transition temperature to pressure ⓘ
critical exponents approximately in mean-field theories ⓘ
heat capacity discontinuity at a phase transition ⓘ
isothermal compressibility discontinuity at a phase transition ⓘ
slope of phase boundary in pressure–temperature space ⓘ
thermal expansion coefficient discontinuity at a phase transition ⓘ
requires equilibrium between phases ⓘ
usedFor classifying phase transitions by order ⓘ
usedIn analysis of lambda transitions ⓘ
condensed matter physics ⓘ
equilibrium thermodynamics ⓘ
materials science ⓘ
solid-state physics ⓘ
study of critical phenomena ⓘ

How these facts were elicited

Referenced by (2)

Full triples — surface form annotated when it differs from this entity's canonical label.

Paul Ehrenfest → notableWork → Ehrenfest equations ⓘ