What is transferred when work is done?
Answer
300.3k+ views
Hint: In this question, we need to tell what is transferred whenever work is performed. The overall variation in the energy of the system is described as work done.
Formula used:
We know that the work done is defined as the product of force and displacement.
\[W = f \times d\]
Here, \[W\] is the work, \[f\] is the force and \[d\] is the distance traveled by the object.
Complete step by step solution:
Whenever a force forces a body to react, the force does work on the thing. Work is the quantity of energy transferred whenever a force ‘f’ drives an object a distance ‘d’. That means a force that induces motion in the force's direction has performed work. Mathematically, the work is defined as,
\[W = f \times d\]
The larger the quantity of work done, the higher the force employed or the higher the distance traveled. In simple words, Energy is defined as an object's capacity to perform work or produce a movement. Whenever we work on anything, part of our energy is then transferred to it. So, if work is done, energy is moved from one energy storage to the other, and thus, the energy transferred Equals work done. Here, we can say that the energy transferred as well as works performed are measured in joules (J).
Therefore, the energy is transferred when work is done.
Note: Here, students generally think that the concepts of work and energy both are the same. But, the work is nothing but the transmission of energy. That means both the concepts are not the same but they are interlinked.
Formula used:
We know that the work done is defined as the product of force and displacement.
\[W = f \times d\]
Here, \[W\] is the work, \[f\] is the force and \[d\] is the distance traveled by the object.
Complete step by step solution:
Whenever a force forces a body to react, the force does work on the thing. Work is the quantity of energy transferred whenever a force ‘f’ drives an object a distance ‘d’. That means a force that induces motion in the force's direction has performed work. Mathematically, the work is defined as,
\[W = f \times d\]
The larger the quantity of work done, the higher the force employed or the higher the distance traveled. In simple words, Energy is defined as an object's capacity to perform work or produce a movement. Whenever we work on anything, part of our energy is then transferred to it. So, if work is done, energy is moved from one energy storage to the other, and thus, the energy transferred Equals work done. Here, we can say that the energy transferred as well as works performed are measured in joules (J).
Therefore, the energy is transferred when work is done.
Note: Here, students generally think that the concepts of work and energy both are the same. But, the work is nothing but the transmission of energy. That means both the concepts are not the same but they are interlinked.
Recently Updated Pages
Four persons A B C and D initially at the corners of class 11 physics JEE_Main

What is the difference between Conduction and conv class 11 physics JEE_Main

Moment of inertia of solid sphere about its diameter class 11 physics JEE_Main

If a piece of ice floating on the surface of water class 11 physics JEE_Main

At what temperature speed of sound in air will be doubled class 11 physics JEE_Main

A closed organ pipe and an open organ pipe are tuned class 11 physics JEE_Main

Trending doubts
Electron Gain Enthalpy and Electron Affinity Explained

Understanding Atomic Structure for Beginners

Understanding Uniform Acceleration in Physics

Effective Nuclear Charge for JEE

Understanding the Angle of Deviation in a Prism

Degree of Dissociation: Meaning, Formula, Calculation & Uses

Other Pages
JEE Advanced Weightage Chapter Wise 2026 for Physics, Chemistry, and Mathematics

Understanding Collisions: Types and Examples for Students

Understanding Inertial and Non-Inertial Frames of Reference

Derive an expression for maximum speed of a car on class 11 physics JEE_Main

CBSE Notes Class 11 Physics Chapter 11 - Thermodynamics - 2026-27 Free PDF Download (Sign-in Required)

Understanding How a Current Loop Acts as a Magnetic Dipole

