Question
Question: The efficiency of a Carnot engine world between two temperatures is 0.2, when the temperature of the...
The efficiency of a Carnot engine world between two temperatures is 0.2, when the temperature of the source is increased by 25∘C, the efficiency increases to 0.25. The
temperature of the source and sink will be
A. 375K, 300K
B. 475K, 400K
C. 400K, 800K
D. 375K, 400K
Solution
The efficiency of Carnot’s heat engine depends on the temperature of the heat source
and that of the heat sink. Greater the temperature between source and the sink, higher will be the
efficiency. If the temperature of the source is increased by25∘C , then the efficiency will also increase.
Formula Used: The efficiency of Carnot’s heat engine is: η=1−T1T2
Complete step by step solution: Heat engine is a system or a device operating in a cyclic process and converting heat into work, without itself undergoing any change at the end of the cycle. It is based on the principle that a system whose different parts are at different temperatures tends to change towards a thermodynamic equilibrium state.
The Carnot heat engine is an ideal heat engine. The efficiency of Carnot’s heat engine is
η=1−T1T2 →(1)
where T1 is the temperature of source and T2 is the temperature of sink.
It is given that the efficiency between two temperatures is 0.2. Therefore, by equation (1)
0.2=1−T1T2→T1T2=0.8→T2=0.8T1 →(2)
Also, when the temperature of the source T1 is increased by 25∘C, the efficiency
increases to 0.25. Therefore, the increase in efficiency can be written as
0.25=1−T1+25T2
→T1+25T2=1−0.25=0.75
Substituting the value of T2 from equation (2)
→T1+250.8T1=0.75