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For hydrogen gas C(P)=C(V)=alpha and for...

For hydrogen gas `C_(P)=C_(V)=alpha` and for Oxygen gas `C_(P)-C_(V)=b`, where `C_(P)` and `C_(V)` are molar specific heats. Then the relation between 'a' and 'b' is

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If for hydrogen C_(P) - C_(V) = m and for nitrogen C_(P) - C_(V) = n , where C_(P) and C_(V) refer to specific heats per unit mass respectively at constant pressure and constant volume, the relation between m and n is (molecular weight of hydrogen = 2 and molecular weight or nitrogen = 14)

If for hydrogen C_(P) - C_(V) = m and for nitrogen C_(P) - C_(V) = n , where C_(P) and C_(V) refer to specific heats per unit mass respectively at constant pressure and constant volume, the relation between m and n is (molecular weight of hydrogen = 2 and molecular weight or nitrogen = 14)

If for hydrogen C_(P) - C_(V) = m and for nitrogen C_(P) - C_(V) = n , where C_(P) and C_(V) refer to specific heats per unit mass respectively at constant pressure and constant volume, the relation between m and n is (molecular weight of hydrogen = 2 and molecular weight or nitrogen = 14)

For hydrogen gas C_(p) - C_(v) = a and for oxygen gas C_(p) - C_(v) = b . So, the relation between a and b is given by