1
You visited us
1
times! Enjoying our articles?
Unlock Full Access!
Byju's Answer
Standard XII
Physics
Instantaneous Force and Impulse
The position-...
Question
The position-time graph of a body of mass 2 kg is as given in the figure. Calculate the impulse on the body at t=0 second and t=4 second.
Open in App
Solution
Impulse will be zero because velocity is constant by graph because slope is constant. Hence no force is there to produce impulse.
Suggest Corrections
0
Similar questions
Q.
The position-time graph of a body of mass
2
k
g
is as shown in figure. What is the impulse on the body at
t
=
0
and
t
=
4
s ?
Q.
The position-time graph of a body of mass
2
kg
is as given in figure. What is the impulse on the body at
t
=
4
s
?
Q.
Figure shows the position-time graph of a particle of mass
4
k
g
. What is the (a) force on the particle for
t
<
0
,
t
>
4
s
,
0
<
t
<
4
s
(b) impulse at t = 0 and t = 4 s? (Consider one-dimensional motion only).
Q.
The displacement – time graph of a body of mass
2
kg
is shown. Find the impulse acting on the body in the time interval
t
=
2
sec
to
t
=
6
sec
Q.
The figure shows the position time (x-t) graph of one-dimensional motion of a body of mass 0.4 kg. The magnitude of each impulse is
View More
Join BYJU'S Learning Program
Grade/Exam
1st Grade
2nd Grade
3rd Grade
4th Grade
5th Grade
6th grade
7th grade
8th Grade
9th Grade
10th Grade
11th Grade
12th Grade
Submit
Related Videos
Summary and Misconceptions
PHYSICS
Watch in App
Explore more
Instantaneous Force and Impulse
Standard XII Physics
Join BYJU'S Learning Program
Grade/Exam
1st Grade
2nd Grade
3rd Grade
4th Grade
5th Grade
6th grade
7th grade
8th Grade
9th Grade
10th Grade
11th Grade
12th Grade
Submit
AI Tutor
Textbooks
Question Papers
Install app