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Maxwell’s Relations. Continued…. Recap. Transformed internal energy into new “fundamental groups” dU = TdS-PdV {U,S,V} dH = TdS+VdP {H,S,P} dA =- SdT-PdV {A,T,V} dG =- SdT+VdP {G,T,P}! But how do we relate these? Started relating these through transforms.
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Maxwell’s Relations Continued….
Recap • Transformed internal energy into new “fundamental groups” • dU=TdS-PdV {U,S,V} • dH=TdS+VdP {H,S,P} • dA=-SdT-PdV {A,T,V} • dG=-SdT+VdP {G,T,P}! • But how do we relate these? • Started relating these through transforms
How to Relate Thermodynamic properties • CALCULUS! • Double equivalence
Perform WWW on the G and A • dA=-SdT-PdV • dG=-SdT+VdP • What is nice about these? _____________
Maxwell’s Relations • Relates entropy to measureables • “Plug it in” relates “energies” to entropy and measureables
_______ is better! • BECAUSE OF____________
Relations Framework • Go from difficult to easy • Real (P) good, conceptuals (H) bad • Conceptuals to reals • Higher tier conceptuals (HTC) • ____________ • Lower tier conceptual – __________ • Reals – _________ • X in constants vs. dX? ___________
Relations Framework ?’s • Is there a ____ in _____? • Is there a ____ in ___? • Is _ in ________? • Is there a ___?
Practice Problem • Let’s walk through the steps/?’s • Isenthalps for TS diagram • Helps visualize heat transfer
Practice Problem • Is there a HTC in the constants? • _____ • What do I use? • ___________
Practice Problem • Is there an HTC in the dX place? • ____ • What do I do? • ___________
Practice Problem • Is there an S in the constants place? • _____ • What do I do • ________________
Practice Problem • Is there a dS? • _________ • What do I do • __________
Practice Problem • How do we get rid of • Alternative option for dS
Heat Capacity (Measureable) • How are they defined? • How do I get from THESE to dS??? • How do I from to heat Capacity??
Practice Problem • dS – Strategy is ________ if measureables, Else _______
Framework Revised • Is there a dS? • _____________ • Must remove S entirely • _____________ • Heat capacity relationship • EOS, properties, or measureables?
What about an EOS? • Take the necessary derivatives • In your example use IG Law • Cp=1.5R
What about properties? • Plug THEM in • Our Example:
Summarize: Framework Steps • Get rid of • Get rid of • Get rid of • Get rid of • Plug in • Check units
Side Note: • How does THIS work: • Step 0: Funky Functions: • LnV, 1/V=rho, P^2, etc…