Embibe Experts Solutions for Chapter: Thermodynamics, Exercise 3: Exercise-3

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Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Thermodynamics, Exercise 3: Exercise-3

Attempt the practice questions on Chapter 17: Thermodynamics, Exercise 3: Exercise-3 with hints and solutions to strengthen your understanding. Alpha Question Bank for Medical: Physics solutions are prepared by Experienced Embibe Experts.

Questions from Embibe Experts Solutions for Chapter: Thermodynamics, Exercise 3: Exercise-3 with Hints & Solutions

MEDIUM
NEET
IMPORTANT

N moles of a monoatomic gas is carried round the reversible rectangular cycle ABCDA as shown in the diagram. The temperature at A is T0. The thermodynamic efficiency of the cycle is approximately

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The net-work done on the gas in the cycle ABCDA is:

HARD
NEET
IMPORTANT

Helium gas goes through a cycle ABCDA (consisting of two isochoric and isobaric lines) as shown in the figure. The efficiency of this cycle is nearly (assume the gas to be close to ideal gas) 

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MEDIUM
NEET
IMPORTANT

The shown p-V diagram represents the thermodynamic cycle of an engine operating with an ideal mono atomic gas. The amount of heat extracted from the source in a single cycle is

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EASY
NEET
IMPORTANT

One mole of diatomic ideal gas undergoes a cyclic process ABC as shown in the figure. The process BC is adiabatic. The temperature at A, B and C are 400 K, 800 K and 600 K, respectively. Choose the correct statement.

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MEDIUM
NEET
IMPORTANT

CP and CV are specific heats at constant pressure and constant volume, respectively. It is observed that CP-CV=a for hydrogen gas, CP-CV=b for nitrogen gas. The correct relation between a and b is

EASY
NEET
IMPORTANT

A gas can be taken from A to B via two different processes ACB and ADB. When path ACB is used 60 J of heat flows into the system and 30 J of work is done by the system. If path ADB is used work done by the system is 10 J. The heat flow into the system in path ADB is

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EASY
NEET
IMPORTANT

Three Carnot engines operate in series between a heat source at a temperature T1 and a heat sink at temperature T4 (see figure). There are two other reservoirs at temperature T2 and T3 as shown with T1>T2>T3>T4. The three engines are equally efficient if:

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EASY
NEET
IMPORTANT

A rigid diatomic ideal gas undergoes an adiabatic process at room temperature. The relation between temperature and volume for this process is TVx= constant, then x is: