Home
Class 12
CHEMISTRY
A gas expands adiabatically at constant ...

A gas expands adiabatically at constant pressure such that:
`T prop(1)/(sqrt(V))`
The value of `gamma` i.e., `(C_(P)//C_(V))` of the gas will be:

A

`1.30`

B

`1.50`

C

`1.70`

D

2

Text Solution

Verified by Experts

The correct Answer is:
B
Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • NTA JEE MOCK TEST 100

    NTA MOCK TESTS|Exercise CHEMISTRY|25 Videos
  • NTA JEE MOCK TEST 102

    NTA MOCK TESTS|Exercise CHEMISTRY|25 Videos

Similar Questions

Explore conceptually related problems

A gas expands adiabatically at constant pressure,such that its temperature T prop1 /(sqrt(V) Where V is Volume then the value of C_(p) /(C_(V) of the gas is ?

The temperature of an ideal gas undergoing adiabatic expansion varies with volume as T prop V^(-(3)/(4)) , then the value of (C_(P))/(C_(V)) for the gas is

Knowledge Check

  • A gas expands adiabatically at constant pressure such that its temperature Tprop(1)/(sqrt(V)) , the value of C_(P)//C_(V) of gas is

    A
    1.3
    B
    1.5
    C
    1.67
    D
    2
  • A gas expands adiabatically at constant pressure such that T propV^(-1//2) The value of gamma (C_(p,m)//C_(v,m)) of the gas will be :

    A
    1.3
    B
    1.5
    C
    1.7
    D
    2
  • A gas expands adiabatically at constant pressure such that TpropV^(-1//2) . Thre Value of gamma(C_(p,m)//C_(v,m)) of the gas will be :

    A
    1.3
    B
    1.5
    C
    1.7
    D
    2
  • Similar Questions

    Explore conceptually related problems

    A gas expands adiabatically at constant pressure such that T propto 1/V^(3) , the value of gamma of the gas will be

    A one mole of an ideal gas expands adiabatically ato constant pressure such that its temperature Tpropto (1)/(sqrt(V)) .The value of the adiabatic constant gas is

    A one mole of an an ideal gas expands adiabatically at constant pressure such that its temperature T prop (1)/(sqrt(V)) .

    An ideal gas expanded adiabaticlly such that , T prop V^(-1//2) then :

    The temperature of an ideal gas undergoing adiabatic expansion varies 3 with volume as T prop V^(-(3)/(4)) , then the value of (C_(P))/(C_(V)) for the gas is