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List of top Physics Questions on carnot cycle asked in KEAM
If an ideal heat engine with an efficiency of $40\%$ rejects heat at $27^\circ$C, then it should have absorbed heat at
KEAM - 2026
KEAM
Physics
carnot cycle
Efficiency of a Carnot engine
KEAM - 2025
KEAM
Physics
carnot cycle
If the heat supplied to an ideal gas is used up entirely to do work on the surrounding, then the process is called
KEAM - 2025
KEAM
Physics
carnot cycle
A Carnot engine is operating between a hot body and cold body maintained at temperatures \( T_1 \) and \( T_2 \) respectively. Consider the following three cases:
• Case-I: The temperature of the hot body is changed to \( T_1 + \Delta T \) and cold body is at \( T_2 \).
• Case-II: The temperature of the hot body is at \( T_1 \) and cold body is changed to \( T_2 + \Delta T \).
• Case-III: The temperature of the hot body is at \( T_1 \) and cold body is changed to \( T_2 - \Delta T \). The efficiency of the Carnot cycle is highest for:
KEAM - 2019
KEAM
Physics
carnot cycle
A Carnot engine whose low temperature reservoir is at 350 K has an efficiency of 50%. It is desired to increase this to 60%. If the temperature of the low temperature reservoir remains constant, then the temperature of high temperature reservoir must be increased by how many degrees?
KEAM - 2018
KEAM
Physics
carnot cycle
The Carnot cycle of a reversible heat engine consists of
KEAM - 2016
KEAM
Physics
carnot cycle
A Carnot engine operating between temperatures \(T_1\) and \(T_2\) has efficiency 0.2. When \(T_2\) is reduced by 50 K, its efficiency increases to 0.4. Then \(T_1\) and \(T_2\) are respectively
KEAM - 2014
KEAM
Physics
carnot cycle
A Carnot engine operating between temperatures \(T_1\) and \(T_2\) has efficiency 0.2. When \(T_2\) is reduced by 50 K, its efficiency increases to 0.4. Then \(T_1\) and \(T_2\) are respectively
KEAM - 2014
KEAM
Physics
carnot cycle
A Carnot engine operating between temperatures \(T_1\) and \(T_2\) has efficiency 0.2. When \(T_2\) is reduced by 50 K, its efficiency increases to 0.4. Then \(T_1\) and \(T_2\) are respectively
KEAM - 2014
KEAM
Physics
carnot cycle
The Carnot cycle of a reversible heat engine consists of
KEAM
Physics
carnot cycle
A Carnot engine operating between temperatures
$T_1$
and
$T_2$
has efficiency
$0.2$
. When
$T_2$
is reduced by
$50\, K$
, its efficiency increases to
$0.4$
. Then
$T_1$
and
$T_2$
are respectively
KEAM
Physics
carnot cycle