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Thermodynamics and Statistical Mechanics. Tds Equations. Entropy and Available Energy.
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Thermodynamics and Statistical Mechanics Tds Equations Thermo & Stat Mech - Spring 2006 Class 7
Entropy and Available Energy • Consider two identical bodies, each of mass m, and heat capacity cP, but one at temperature T1, and the other at temperature T2. When placed in contact, heat flows from the hotter to the cooler, until they come to a common temperature, Thermo & Stat Mech - Spring 2006 Class 7
Entropy Change Thermo & Stat Mech - Spring 2006 Class 7
Entropy Increased Thermo & Stat Mech - Spring 2006 Class 7
“Lost” Work Run a Carnot engine between the two bodies. Thermo & Stat Mech - Spring 2006 Class 7
Amount of Work Thermo & Stat Mech - Spring 2006 Class 7
Tds Equations Thermo & Stat Mech - Spring 2006 Class 7
Internal Energy Tds = du + Pdv where u(T,v) Thermo & Stat Mech - Spring 2006 Class 7
Enthalpy Thermo & Stat Mech - Spring 2006 Class 7
First Tds Equation Thermo & Stat Mech - Spring 2006 Class 7
First Tds Equation (cont.) Thermo & Stat Mech - Spring 2006 Class 7
First Tds Equation (cont.) Thermo & Stat Mech - Spring 2006 Class 7
First Tds Equation (cont.) Thermo & Stat Mech - Spring 2006 Class 7
cP – cv Thermo & Stat Mech - Spring 2006 Class 7
cP – cv Thermo & Stat Mech - Spring 2006 Class 7
Ideal Gas Thermo & Stat Mech - Spring 2006 Class 7
Ideal Gas Thermo & Stat Mech - Spring 2006 Class 7
Third Tds Equation Thermo & Stat Mech - Spring 2006 Class 7
Third Tds Equation Thermo & Stat Mech - Spring 2006 Class 7
Third Tds Equation Thermo & Stat Mech - Spring 2006 Class 7
Tds Equations Thermo & Stat Mech - Spring 2006 Class 7