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if a gas has n degrees of freedom the ratio of the
Question:
If a gas has 'n' degrees of freedom, the ratio of the specific heats
γ
\gamma
γ
of the gas is
JIPMER MBBS - 2019
JIPMER MBBS
Updated On:
Jun 25, 2024
1
+
n
2
\frac{1+n}{2}
2
1
+
n
1
+
n
2
1+\frac{n}{2}
1
+
2
n
1
+
1
n
1+\frac{1}{n}
1
+
n
1
1
+
2
n
1+\frac{2}{n}
1
+
n
2
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The Correct Option is
D
Solution and Explanation
The correct option is(D):
1
+
2
n
1+\frac{2}{n}
1
+
n
2
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Top Questions on Thermodynamics
Consider ‘n’ is the number of lone pair of electrons present in the equatorial position of the most stable structure of
ClF
3
\text{ClF}_3
ClF
3
. The ions from the following with ‘n’ number of unpaired electrons are:
A.
V
3
+
\text{V}^{3+}
V
3
+
B.
Ti
3
+
\text{Ti}^{3+}
Ti
3
+
C.
Cu
2
+
\text{Cu}^{2+}
Cu
2
+
D.
Ni
2
+
\text{Ni}^{2+}
Ni
2
+
E.
Ti
2
+
\text{Ti}^{2+}
Ti
2
+
Choose the correct answer from the options given below:
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What is the freezing point depression constant of a solvent, 50 g of which contain 1 g non-volatile solute (molar mass 256 g mol
−
1
^{-1}
−
1
) and the decrease in freezing point is 0.40 K?
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The incorrect decreasing order of atomic radii is:
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Ice at
−
5
∘
C
-5^\circ C
−
5
∘
C
is heated to become vapor with temperature of
11
0
∘
C
110^\circ C
11
0
∘
C
at atmospheric pressure. The entropy change associated with this process can be obtained from:
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Thermodynamics
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An amount of ice of mass
1
0
−
3
10^{-3}
1
0
−
3
kg and temperature
−
1
0
∘
C
-10^\circ C
−
1
0
∘
C
is transformed to vapor of temperature
11
0
∘
C
110^\circ C
11
0
∘
C
by applying heat. The total amount of work required for this conversion is,
(Take, specific heat of ice = 2100 J kg
−
1
^{-1}
−
1
K
−
1
^{-1}
−
1
,
specific heat of water = 4180 J kg
−
1
^{-1}
−
1
K
−
1
^{-1}
−
1
,
specific heat of steam = 1920 J kg
−
1
^{-1}
−
1
K
−
1
^{-1}
−
1
,
Latent heat of ice =
3.35
×
1
0
5
3.35 \times 10^5
3.35
×
1
0
5
J kg
−
1
^{-1}
−
1
,
Latent heat of steam =
2.25
×
1
0
6
2.25 \times 10^6
2.25
×
1
0
6
J kg
−
1
^{-1}
−
1
)
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