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Standard XII
Chemistry
Heat of Reaction
1 mole of a g...
Question
1 mole of a gas is changed from its initial value (15L,2atm) to final state (4L,10atm) respectively. If the change can be represented by a straight line in P-V curve. Calculate the maximum temperature attained by the gas.
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Q.
Two moles of an ideal gas is changed from its initial state (
16
a
t
m
,
6
L
) to final state (
4
a
t
m
,
15
L
) in such a way that this change can be represented by a straight line in
P
−
V
curve. The maximum temperature attained by the gas during the above change is:
(Take
R
=
1
12
L
a
t
m
K
−
1
m
o
l
−
1
)
Q.
Two moles of an ideal gas changes from its initial state (16 atm, 6 L) to final state (4 atm, 15 L) in such a way that this change can be represented by a straight line on the P-V curve. The maximum temperature attained by the gas during the above change is:
(
Take
R
=
1
12
L atm K
−
1
mol
−
1
)
Q.
Two moles of an ideal gas changes from its initial state (16 atm, 6 L) to final state (4 atm, 15 L) in such a way that this change can be represented by a straight line on the P-V curve. The maximum temperature attained by the gas during the above change is:
(
Take
R
=
1
12
L atm K
−
1
mol
−
1
)
Q.
A certain of gas is expanded from (1L,10atm) to (4L,5atm) against a constant external pressure of 1atm. If the initial temperature of a gas is 300K, and the heat capacity of the process is 50J/degree celsius. The change during the reaction is: (1L atm= 100J)
Q.
A certain mass of gas is expanded from
(
1
L
,
10
a
t
m
)
to
(
4
L
,
5
a
t
m
)
against a constant external pressure of
1
a
t
m
. If the initial temperature of the gas is
300
K
and the heat capacity of the process is
50
J
/
∘
C
. Then the enthalpy change during the process is:
(
1
L
a
t
m
≃
100
J
)
.
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