Kinetic Theory
- A polyatomic gas with n degrees of freedom has a mean energy per molecule given by
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According to law of equipartition of energy, the energy per degree of freedom is
1 kT 2
For a polyatomic gas with n degrees of freedom, the mean energy per molecule= 1 nkT 2
Correct Option: C
According to law of equipartition of energy, the energy per degree of freedom is
1 kT 2
For a polyatomic gas with n degrees of freedom, the mean energy per molecule= 1 nkT 2
- One mole of an ideal monoatomic gas requires 207 J heat to raise the temperature by 10 K when heated at constant pressure. If the same gas is heated at constant volume to raise the temperature by the same 10 K, the heat required is
[Given the gas constant R = 8.3 J/ mol. K]
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Cp = 5 R and Cv = 3 R 2 2
We know that Qv = nCv∆T and Qp = nCp∆T⇒ Qv = 3 . Qp 5
⇒ . Given Qp = 207 J ⇒ Qv ≅ 124 J
Correct Option: D
Cp = 5 R and Cv = 3 R 2 2
We know that Qv = nCv∆T and Qp = nCp∆T⇒ Qv = 3 . Qp 5
⇒ . Given Qp = 207 J ⇒ Qv ≅ 124 J
- For a certain gas the ratio of specific heats is given to be γ = 1.5. For this gas
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γ = CP = 15 = 3 ⇒ CV = 2 CP CV 10 2 3 CP - CV = R ⇒ CP - 2 CP = R J 3 J ⇒ CP = R ⇒ CP = 3R 3 J J
Correct Option: B
γ = CP = 15 = 3 ⇒ CV = 2 CP CV 10 2 3 CP - CV = R ⇒ CP - 2 CP = R J 3 J ⇒ CP = R ⇒ CP = 3R 3 J J
- For hydrogen gas, Cp – Cv = a and for oxygen gas, Cp – Cv = b, so the relation between a and b is given by
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Both are diatomic gases and Cp – Cv = R for all gases.
Correct Option: D
Both are diatomic gases and Cp – Cv = R for all gases.
- If for a gas, R/Cv = 0.67 , the gas is made up of molecules which are
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Since R = 0.67 ⇒ CV = 3 R, hence gas is monoatomic. CV 2
Correct Option: C
Since R = 0.67 ⇒ CV = 3 R, hence gas is monoatomic. CV 2