Motion of bodies connected by strings - Physics Class 11 - eSaral

eSaral Logo
Team eSaral

eSaral Academic and Editorial Team

2 min read

Hey, do you want to learn about the motion of bodies connected by strings? If yes. Then you are at the right place.

The motion of bodies connected by strings

Two bodies :

Let us consider the case of two bodies of masses $\mathrm{m}_{1}$ and $\mathrm{m}_{2}$ connected by a thread and placed on a smooth horizontal surface as shown in fig. A force F is applied on the body of mass $\mathrm{m}_{2}$ in forwarding direction as shown. Our aim is to consider the acceleration of the system and the tension T in the thread. The forces acting separately on two bodies are also shown in the figure:

Motion of bodies connected by strings
Motion of bodies connected by strings

From fig

$\mathrm{T}=\mathrm{m}_{1} \mathrm{a}$.....(1)

$F-T=m_{2} a$.....(2)

Adding (1) and (2)

$\mathrm{F}=\left(\mathrm{m}_{1}+\mathrm{m}_{2}\right) \mathrm{a}$

Or

$a=\frac{F}{m_{1}+m_{2}}$.....(3)

The acceleration of the system can be calculated from eq. (3) and tension in the thread by eq. (1).

Three bodies :

In the case of three bodies, the situation is shown in fig.

motion of 3 bodies connected by a string
motion of 3 bodies connected by a string

Acceleration $\mathrm{a}=\frac{\mathrm{F}}{\mathrm{m}_{1}+\mathrm{m}_{2}+\mathrm{m}_{3}}$....(4)

$T_{1}=m_{1} a=\frac{m_{1} F}{m_{1}+m_{2}+m_{3}}$.....(5)

$\mathrm{F}-\mathrm{T}_{2}=\mathrm{m}_{3} \mathrm{a}$

Or

$\mathrm{T}_{2}=\mathrm{F}-\frac{\mathrm{m}_{3} \mathrm{~F}}{\mathrm{~m}_{1}+\mathrm{m}_{2}+\mathrm{m}_{3}}$

$=\frac{\left(m_{1}+m_{2}\right) F}{m_{1}+m_{2}+m_{3}}$ …..(6)

Ex. Three blocks, are connected by string as shown in fig. below, and are pulled by a force $\mathrm{T}_{3}$ = 120N. If $\mathrm{m}_{1}$ = 5 kg, $\mathrm{m}_{2}$ = 10 kg and $\mathrm{m}_{3}$ = 15 kg. Calculate the acceleration of the system and $\mathrm{T}_{1}$ and $\mathrm{T}_{2}$.

Sol. Acceleration of the system

$a=\frac{F}{m_{1}+m_{2}+m_{3}}$

$=\frac{120}{5+10+15}$

$=4 \mathrm{~m} / \mathrm{sec}^{2}$

Now

$T_{1}=m_{1} a$

$=5 \times 4=20 \mathrm{~N}$

$T_{2}=\left(m_{1}+m_{2}\right) a$

$=(5+10) 4$

$=60 \mathrm{~N}$

So, that's all from this blog, I hope you get the idea about the motion of bodies connected by strings. If you liked this article then please share it with your friends. If you have any confusion related to this article then feel free to ask in the comments section down below.

Also, read
Motion of bodies in contact

To watch Free Learning Videos on physics by Saransh Gupta sir Install the eSaral App.

eSaral Logo

Team eSaral

eSaral Academic and Editorial Team

Team eSaral is the collective author profile for educational content created by eSaral’s teachers and academic contributors. The team draws on expertise from IIT graduates, doctors, experienced educators and subject specialists to develop resources for JEE, NEET and school students. Our articles aim to explain concepts clearly and help students study with confidence.

Exam PreparationAcademic StrategiesJEE and NEET PreparationStudy TechniquesSchool Education
BITSAT Previous Year Question Paper PDF for BITSAT Preparation
Uncategorized

BITSAT Previous Year Question Paper PDF

Download BITSAT previous year question papers PDF. Get year-wise BITSAT PYQs, memory-based papers, exam pattern, and preparation tips to improve your BITSAT preparation.

Read Article
Best JEE Preparation App 2026: Mock Tests, Doubts & More
Uncategorized

Best JEE Preparation App

Best JEE preparation app for Main & Advanced: AI mock tests, live doubt-solving, thousands of practice questions. JEE preparation app for droppers & Class 11-12.

Read Article