Find equation for thermodynamic process

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utkarshakash
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Homework Statement


Find the equation of the thermodynamic process in which specific heat of the gas is given by

[itex]C=\dfrac{R}{\gamma -1} + \alpha P[/itex]

The Attempt at a Solution



I can write

[itex]C=C_v + \alpha P[/itex]

But I don't know how to proceed ahead. What does C mean here? Is it specific heat capacity at constant pressure or volume? Any help is appreciated.
 
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utkarshakash said:

Homework Statement


Find the equation of the thermodynamic process in which specific heat of the gas is given by

[itex]C=\dfrac{R}{\gamma -1} + \alpha P[/itex]


The Attempt at a Solution



I can write

[itex]C=C_v + \alpha P[/itex]

But I don't know how to proceed ahead. What does C mean here? Is it specific heat capacity at constant pressure or volume? Any help is appreciated.
Is α supposed to be the coefficient of volumetric thermal expansion? Because, if it is, it's units are wrong.

Chet
 
Chestermiller said:
Is α supposed to be the coefficient of volumetric thermal expansion? Because, if it is, it's units are wrong.

Chet

No. It's a positive constant.
 
Hi utkarshakash

utkarshakash said:
I can write

[itex]C=C_v + \alpha P[/itex]

Correct...

utkarshakash said:
But I don't know how to proceed ahead. What does C mean here? Is it specific heat capacity at constant pressure or volume? Any help is appreciated.

C is the specific heat capacity of the process .It is neither of the two (i.e at constant pressure or volume ) .It is not that the heat capacity has to be either CP or CV .

Apply the first law of thermodynamics .
 
Tanya Sharma said:
Hi utkarshakash



Correct...



C is the specific heat capacity of the process .It is neither of the two (i.e at constant pressure or volume ) .It is not that the heat capacity has to be either CP or CV .

Apply the first law of thermodynamics .

I get
[itex]m(C_v + \alpha P) dT = nC_vdT + \int P dV[/itex]

where m=mass of gas
How do I calculate the work done in the process?
 
utkarshakash said:
[itex]m(C_v + \alpha P) dT = nC_vdT + \int P dV[/itex]

where m=mass of gas

I think it should be

nCdT = nCVdT + pdV

Write Cv in terms of C and take n =1 for sake of simplicity.
 
Tanya Sharma said:
I think it should be

nCdT = nCVdT + pdV

Write Cv in terms of C and take n =1 for sake of simplicity.

But ΔQ=nCΔT is valid only when C=Cp. In general ΔQ=mCΔT
 
utkarshakash said:
But ΔQ=nCΔT is valid only when C=Cp. In general ΔQ=mCΔT

:rolleyes:

ΔQ=nCΔT is applicable in every process.
 
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Tanya Sharma said:
:rolleyes:

ΔQ=nCΔT is applicable in every process.

Thanks. I got the correct answer.