Start with the total derivative of the internal energy, U, as a function of S and V, and use the First and Second laws of thermodynamics to derive an expression for temperature, T. OT=H [(3)v+V] T = (85) v OT = (P) S OT= (35) v OT = (OV) S 09/ OT=S[(3)v+V]

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Start with the total derivative of the internal energy, U, as a function of S and V, and use the First and Second laws of thermodynamics to derive an expression for
temperature, T.
OT=H[(H) + V]
V
as
OT = (35) v
OT
(OP) S
OT
T = (35) v
as
OT = (V) S
O CR
T
=
OT=S[(3)v+V]
Transcribed Image Text:Start with the total derivative of the internal energy, U, as a function of S and V, and use the First and Second laws of thermodynamics to derive an expression for temperature, T. OT=H[(H) + V] V as OT = (35) v OT (OP) S OT T = (35) v as OT = (V) S O CR T = OT=S[(3)v+V]
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