CameraIcon
CameraIcon
SearchIcon
MyQuestionIcon
MyQuestionIcon
1
You visited us 1 times! Enjoying our articles? Unlock Full Access!
Question

A block of mass 2.0 kg is moving on a frictionless horizontal surface with a velocity of 1.0 m/s as shown in figure, move towards another block of equal mass at rest. The spring constant of the spring fixed at one end is 100 N/m. Find maximum compression of the spring.


A
40 cm
No worries! We‘ve got your back. Try BYJU‘S free classes today!
B
30 cm
No worries! We‘ve got your back. Try BYJU‘S free classes today!
C
20 cm
No worries! We‘ve got your back. Try BYJU‘S free classes today!
D
10 cm
Right on! Give the BNAT exam to get a 100% scholarship for BYJUS courses
Open in App
Solution

The correct option is D 10 cm
Using WE theorem, in COM reference frame
Ki+U1=Kf+Ut
Initial kinetic energy
Ki=12μV2rel=12×2×22+2(10)2=12J
Initial potential energy
Ui=0
for maximum compression Vrel=0
Final Kinetic energy
Kf=0
Final potential energy (when compression is x )
Uf=12kx2=12100x2=50x2
50x2=12
x=110m=10 cm

flag
Suggest Corrections
thumbs-up
0
Join BYJU'S Learning Program
similar_icon
Related Videos
thumbnail
lock
Centre of Mass in Galileo's World
PHYSICS
Watch in App
Join BYJU'S Learning Program
CrossIcon