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0.040 G of He is Kept in a Closed Container Initially at 100.0°C. the Container is Now Heated. Neglecting the Expansion of the Container, Calculate the Temperature at Which the Internal - Physics

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प्रश्न

0.040 g of He is kept in a closed container initially at 100.0°C. The container is now heated. Neglecting the expansion of the container, calculate the temperature at which the internal energy is increased by 12 J.

Use R = 8.3 J K-1 mol-1

बेरीज
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उत्तर

Here ,
m = 0.040g
M = 4g
n = \[\frac{0.040}{4} = 0.01 \]
T1 = (100 + 273) K = 373 K
He is a monoatomic gas. Thus,
\[\ C_v = 3 × (\frac{1}{2}R) \] 
⇒ Cv = 1.5 × 8.3 = 12.45
Let the initial internal energy be U1 .
Let the final internal energy be U2 .
U2 -U1 = n Cv ( T2 -T1 )
⇒ 0.01 × 12.45( T2 - 373) = 12
⇒ T2 = 469  K
The temperature in °C can be obtained as follows: 469 - 273 = 196° C

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Interpretation of Temperature in Kinetic Theory
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पाठ 2: Kinetic Theory of Gases - Exercises [पृष्ठ ३५]

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एचसी वर्मा Concepts of Physics Vol. 2 [English] Class 11 and 12
पाठ 2 Kinetic Theory of Gases
Exercises | Q 27 | पृष्ठ ३५

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