
If a light body and heavy body have same momentum then,
A. they have some kinetic energy.
B. Lighter body have more kinetic energy.
C. Heavier body have more kinetic energy.
D. Cannot be said.
Answer
570.3k+ views
Hint:The kinetic energy relation with mass and momentum has to be applied. Momentum is a quantity that describes the motion of a body and kinetic energy is the energy possessed due to motion in a body. The kinetic energy is proportional to the square of momentum divided by mass.
Complete step by step solution:
Given, the momentum is same for both light body and heavy body.
Let the momentum be, $p$.
Let the mass of light body be $m$.
Let the mass of heavy body be $M$.
Let the kinetic energy be ${E_k}$.
The kinetic energy and its relation with momentum is,
${E_k} \propto \dfrac{{{p^2}}}{{2m}}$ …..(1)
Now, since both the body have same momentum, the momentum is constant. Hence the kinetic energy is inversely proportional to the mass.
${E_k} \propto \dfrac{1}{m}$ ……(2)
Hence, for light body the kinetic energy is given as,
${E_k} \propto \dfrac{1}{m}$ ……(3)
For heavy body the kinetic energy is,
${E_k} \propto \dfrac{1}{M}$ ……(4)
Thus from equation (3) and (4) it can be observed that for light body kinetic energy is more and for heavy body the kinetic energy is less.
Hence, the correct option is (B).
Note:The students have to apply the concept of kinetic energy with momentum. If a light body and heavy body have the same momentum, then the lighter body will have more kinetic energy since the velocity has to make up for its lighter mass. Since kinetic energy is inversely proportional to the mass, hence the lighter body will have more kinetic energy.
Complete step by step solution:
Given, the momentum is same for both light body and heavy body.
Let the momentum be, $p$.
Let the mass of light body be $m$.
Let the mass of heavy body be $M$.
Let the kinetic energy be ${E_k}$.
The kinetic energy and its relation with momentum is,
${E_k} \propto \dfrac{{{p^2}}}{{2m}}$ …..(1)
Now, since both the body have same momentum, the momentum is constant. Hence the kinetic energy is inversely proportional to the mass.
${E_k} \propto \dfrac{1}{m}$ ……(2)
Hence, for light body the kinetic energy is given as,
${E_k} \propto \dfrac{1}{m}$ ……(3)
For heavy body the kinetic energy is,
${E_k} \propto \dfrac{1}{M}$ ……(4)
Thus from equation (3) and (4) it can be observed that for light body kinetic energy is more and for heavy body the kinetic energy is less.
Hence, the correct option is (B).
Note:The students have to apply the concept of kinetic energy with momentum. If a light body and heavy body have the same momentum, then the lighter body will have more kinetic energy since the velocity has to make up for its lighter mass. Since kinetic energy is inversely proportional to the mass, hence the lighter body will have more kinetic energy.
Recently Updated Pages
A man running at a speed 5 ms is viewed in the side class 12 physics CBSE

The number of solutions in x in 02pi for which sqrt class 12 maths CBSE

State and explain Hardy Weinbergs Principle class 12 biology CBSE

Write any two methods of preparation of phenol Give class 12 chemistry CBSE

Which of the following statements is wrong a Amnion class 12 biology CBSE

Differentiate between action potential and resting class 12 biology CBSE

Trending doubts
What are the major means of transport Explain each class 12 social science CBSE

Which are the Top 10 Largest Countries of the World?

Draw a labelled sketch of the human eye class 12 physics CBSE

How much time does it take to bleed after eating p class 12 biology CBSE

Explain sex determination in humans with line diag class 12 biology CBSE

Explain sex determination in humans with the help of class 12 biology CBSE

