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Standard XII
Physics
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An ideal gas ...
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An ideal gas undergoes a polytropic process given by equation PV^n=cons†an t. If molar heat capacity of gas during this process is arithmetic mean of its molar heat capacity at cons†an t pressure and cons†an t volume, then value of n is
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Q.
An ideal gas undergoes a polytropic given by equation
P
V
n
=
constant. If molar heat capacity of gas during this process is arithmetic mean of its molar heat capacity at constant pressure and constant volume then value of
n
is:
Q.
For polytropic process
P
V
n
=
constant,
C
m
(molar heat capacity) of an ideal gas is given by:
Q.
An ideal gas undergoes a quasi static, reversible process in which its molar heat capacity
C
remains constant. If during this process the relation of pressure
P
and volume
V
is given by
P
V
n
=
constant, then
n
is given by (Here
C
P
and
C
V
are molar specific heat at constant pressure and constant volume, respectively).
Q.
An ideal gas has a molar heat capacity
C
V
at constant volume. Find the molar heat capacity of this gas as a function of volume, if the gas undergoes the process :
T
=
T
0
e
α
V
.
Q.
A certain ideal gas undergoes a polytropic process represented by equation
P
V
n
=
constant
. If Molar heat capacity for this process is negative and
γ
is a standard constant which denotes the ratio of the molar heat capacities of a gas, then the range of values of
n
will be
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