The efficiency of a heat engine is \[30\% \]. If it gives \[30\;{\rm{kJ}}\] heat to the heat sink, then it should have absorbed __________kJ heat from the heat source.
A. 9
B. 39
C. 29
D. 42.8
Answer
654.9k+ views
Hint:The above problem can be resolved by using the concepts and the fundamentals of the heat engine. The heat engine is one of the special machines that work on the principle of thermodynamics laws. In the heat engine analysis, when some amount of thermal energy is provided to the system, then the system will be observed to do some work. Then, the heat engine's efficiency is given by taking the ratio of the thermal energy given to the engine tank and the output obtained in the form of work.
Complete step by step answer:
Given:
The efficiency of a heat engine is, \[\eta = 30\% \].
The heat output is, \[{H_O} = 30\;{\rm{kJ}}\].
The expression for the efficiency of heat engine is given as,
\[\eta = 1 - \dfrac{{{H_O}}}{{{H_i}}}\]
Here, \[{H_i}\] represents the heat absorbed from the heat source.
On solving by substituting the values in the above equation as,
\[\begin{array}{l}
\eta = 1 - \dfrac{{{H_i}}}{{{H_O}}}\\
0.3 = 1 - \dfrac{{{H_i}}}{{30\;{\rm{kJ}}}}\\
{H_i} = 42.8\;{\rm{kJ}}
\end{array}\]
Therefore, the heat absorbed from the heat source is of \[42.8\;{\rm{kJ}}\] and option (D) is correct.
Note: To resolve the above problem, one must understand the concept and the heat engine; the heat engine is that kind of machine that takes some energy and converts that fraction of energy into the mechanical work. And rest part of the energy is stored within the system in the form of internal energy. Therefore, the working principle of a heat engine is generally based on the first law of thermodynamics.
Complete step by step answer:
Given:
The efficiency of a heat engine is, \[\eta = 30\% \].
The heat output is, \[{H_O} = 30\;{\rm{kJ}}\].
The expression for the efficiency of heat engine is given as,
\[\eta = 1 - \dfrac{{{H_O}}}{{{H_i}}}\]
Here, \[{H_i}\] represents the heat absorbed from the heat source.
On solving by substituting the values in the above equation as,
\[\begin{array}{l}
\eta = 1 - \dfrac{{{H_i}}}{{{H_O}}}\\
0.3 = 1 - \dfrac{{{H_i}}}{{30\;{\rm{kJ}}}}\\
{H_i} = 42.8\;{\rm{kJ}}
\end{array}\]
Therefore, the heat absorbed from the heat source is of \[42.8\;{\rm{kJ}}\] and option (D) is correct.
Note: To resolve the above problem, one must understand the concept and the heat engine; the heat engine is that kind of machine that takes some energy and converts that fraction of energy into the mechanical work. And rest part of the energy is stored within the system in the form of internal energy. Therefore, the working principle of a heat engine is generally based on the first law of thermodynamics.
Recently Updated Pages
If x a + bt + ct2 where x is in meters and t is in class 11 physics CBSE

A car covers the first half distance between two places class 11 physics CBSE

The resultant of two vectors overrightarrow P and overrightarrow class 11 physics CBSE

Find the value of cos 135 class 11 maths CBSE

A mass M is held in place by an applied force F and class 11 physics CBSE

A solution of glucose in water is labelled as 10 dfracwv class 11 chemistry CBSE

Trending doubts
One Metric ton is equal to kg A 10000 B 1000 C 100 class 11 physics CBSE

Find the value of the expression given below sin 30circ class 11 maths CBSE

What do you mean by retardation What is its SI uni class 11 physics CBSE

Draw a diagram of nephron and explain its structur class 11 biology CBSE

10 examples of friction in our daily life

Difference between physical and chemical change class 11 chemistry CBSE

