Question

In: Physics

1. Derive PV^Gamma = constant 2. All adiabatic relations

1. Derive PV^Gamma = constant

2. All adiabatic relations

Solutions

Expert Solution

First Laus ofTherm ody nam s stats that do= du dW adiabat' frocas da O for am dwEPd V dun Cy dT O (Chonyen inte nal incngy) PV nR an idleal ges P V nR T Pall VolP d T Cv PdlV t R PA A Pdv Pdv + () rav CyVdP Sepeaating nte grakng yariab les anmd dv R+Cv d P V CV P C v RCU Cv CN V -r lan In v PVe und lant


Related Solutions

Prove for an adiabatic TP ^ 1-gamma / gamma = constant process. Use the first law...
Prove for an adiabatic TP ^ 1-gamma / gamma = constant process. Use the first law of thermodynamics.
Derive the Dirac gamma matrices for 2-space dimensions and 1-time dimension.
Derive the Dirac gamma matrices for 2-space dimensions and 1-time dimension.
It is known that the following relations are valid for a reversible, adiabatic process in an...
It is known that the following relations are valid for a reversible, adiabatic process in an ideal gas: Tv^(gamma-1) = constant, Pv^gamma = constant, where gamma = Cp/Cv. how do these relations look for a van der waals gas?
Determine the adiabatic combustion temperature at constant pressure and at constant volume for two of the...
Determine the adiabatic combustion temperature at constant pressure and at constant volume for two of the fuels of personal choice. Graphically show that this corresponds to the product temperature where the heat of reaction is zero.
The PV diagram of an adiabatic expansion, the graph of P= CV-γ, where C is a...
The PV diagram of an adiabatic expansion, the graph of P= CV-γ, where C is a constant and γ = Cp/Cv. GOAL Use the adiabatic pressure vs. volume relation to find a change in pressure and the work done on a gas. PROBLEM A monatomic ideal gas at an initial pressure of 1.01  105 Pa expands adiabatically from an initial volume of 1.50 m3, doubling its volume. (a) Find the new pressure. (b) Sketch the PV diagram and estimate the work...
THERMODYNAMIC PROPERTY RELATIONS 1. Derive expressions for (a) ∆u, (b) ∆h, and (c) ∆s for a...
THERMODYNAMIC PROPERTY RELATIONS 1. Derive expressions for (a) ∆u, (b) ∆h, and (c) ∆s for a gas that obeys the van der Waals equation of state for an isothermal process. 2, Estimate the specific-heat difference cp - cv for liquid water at 15 MPa and 80°C.
Use Table PV-1 and Table PV-2 to determine the present values of the following cash flows.
Use Table PV-1 and Table PV-2 to determine the present values of the following cash flows. (For all requirements, round PV factor to 3 decimal places, Intermediate and final answer to the nearest dollar amount.)  a. $15,000 to be paid annually for 10 years, discounted at an annual rate of 6 percent. Payments are to occur at the end of each year. b. $9,200 to be received today, assuming that the money will be invested in a two-year certificate of deposit earning 8 percent annually. c. $300...
Regarding Vertical Relations: 1.Understand the agricultural production chain. • 2.Differetiate between vertical relations and horizontal relations....
Regarding Vertical Relations: 1.Understand the agricultural production chain. • 2.Differetiate between vertical relations and horizontal relations. • 3.Understand why use agricultural contracts. • 4.Know the difference between production contracts and market contracts. • 5.Know the benefits of agricultural cooperatives.
PUBLIC RELATIONS: 1) Public Relations: a. Definition and b. marketing example 2) Publicity: a. Definition and...
PUBLIC RELATIONS: 1) Public Relations: a. Definition and b. marketing example 2) Publicity: a. Definition and b. marketing example 3) Product placement 4) Consumer education 5) Sponsorship 6) Managing Unfavorable Publicity a. definition b. Crisis management—marketing example
(a) Derive Bohr's model and then calculate the Rydberg constant from this.  
(a) Derive Bohr's model and then calculate the Rydberg constant from this.  
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT