The chemical potentials of two phases, a and ß, of a pure substance are shown as a function of pressure at constant temperature. A) Which phase is the more stable at high pressure?_ B) Will transformation B→a occur as the pressure is raised? Yes/ No_ C) On graph, mark point(s) at which these phases are in equilibrium D) Substance in which phase has higher molar volume, a or B?_ Ha What is equal to zero at 298 K? A) A:H (F, g) C) S° (F2, g) D) A;H° (F2, g) B) S° (F, g)

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The chemical potentials of two phases, a and ß, of a pure substance are
shown as a function of pressure at constant temperature.
A) Which phase is the more stable at high pressure?_
B) Will transformation B→a occur as the pressure is raised? Yes/ No_
C) On graph, mark point(s) at which these phases are in equilibrium
D) Substance in which phase has higher molar volume, a or B?_
Ha
What is equal to zero at 298 K?
A) A:H (F, g)
C) S° (F2, g)
D) A;H° (F2, g)
B) S° (F, g)
Transcribed Image Text:The chemical potentials of two phases, a and ß, of a pure substance are shown as a function of pressure at constant temperature. A) Which phase is the more stable at high pressure?_ B) Will transformation B→a occur as the pressure is raised? Yes/ No_ C) On graph, mark point(s) at which these phases are in equilibrium D) Substance in which phase has higher molar volume, a or B?_ Ha What is equal to zero at 298 K? A) A:H (F, g) C) S° (F2, g) D) A;H° (F2, g) B) S° (F, g)
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