Question

A slender rod is 80.0 cm long and has mass 0.390 kg . A small 0.0200-kg...

A slender rod is 80.0 cm long and has mass 0.390 kg . A small 0.0200-kg sphere is welded to one end of the rod, and a small 0.0500-kg sphere is welded to the other end. The rod, pivoting about a stationary, frictionless axis at its center, is held horizontal and released from rest. What is the linear speed of the 0.0500-kg sphere as its passes through its lowest point?

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Alright Dude, If that worked for you... don't forget to give THUMBS UP.(that will work for me!)
Please Vote...
If I missed something feel free to leave a comment.
At least before giving down vote.
and_Thanks for using homeworklib- Smarter way to study.

Add a comment
Know the answer?
Add Answer to:
A slender rod is 80.0 cm long and has mass 0.390 kg . A small 0.0200-kg...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A uniform rod of length L (2.00 m) and mass M (5.00 Kg) is free to...

    A uniform rod of length L (2.00 m) and mass M (5.00 Kg) is free to rotate on a frictionless pin passing through one end. The rod is released from rest in the horizontal position, (a) What is its angular speed when the rod reaches its lowest position? (b) What arc the linear speed of the center of mass and that of the lowest point on the rod when it is in the vertical position?

  • hun odeli yeniform rod of mass 12 kg and length L - 2.0 m, is free...

    hun odeli yeniform rod of mass 12 kg and length L - 2.0 m, is free to pivot about a frictionless axis thro one end. The rod is released from rest at an angle of 30° above the horizontal and allowed to fall nopes a) What is the instantancous angular acceleration when the rod is released? od : vadis b) What is the change in gravitational potential energy of the center of mass when the rod passes through the horizontal...

  • The 12-kg slender rod is pinned to a small roller A that slides freely along the...

    The 12-kg slender rod is pinned to a small roller A that slides freely along the slot. The rod is released from rest at 0 20° A 0.6 m (a) The angular acceleration of the rod immediately after the release. (b) The acceleration of the center of mass immediately after the release. (c) The acceleration of the roller immediately after the release. (d) The normal force on the roller exerted by the slot immediately after the release The 12-kg slender...

  • [7.] A uniform rod with mass M, length L, and moment of inertial with respect to...

    [7.] A uniform rod with mass M, length L, and moment of inertial with respect to the center of mass Icm = MLis hinged at one end (point P) so that it can rotate, without friction, around a horizontal axis. The rod is initially held at rest forming an angle with the vertical (see figure) and then released. a) Find the moment of inertia Ip of the rod with respect to point P. b) Find the magnitude of the angular...

  • s l An 8.00 m massless rod is loosely pinsed to a frictionless pivot at O,...

    s l An 8.00 m massless rod is loosely pinsed to a frictionless pivot at O, as shown in the figuare. A atached to the other end of the rod. The ball is held at A, where the rod makes a 30.0 and is released. The ball-rod assembly then swings freely with negligible friction in a Questien 7 (1ntli very small 4.00 kg ball is angle above the horizontal, vertical cirele between A and B. The tension in the rod...

  • A thin, cylindrical rod phi = 24.0 cm long with mass m = 1.20 kg has...

    A thin, cylindrical rod phi = 24.0 cm long with mass m = 1.20 kg has a ball of diameter d = 8.00 cm and mass M = 2.00 kg attached to one end. the arrangement is originally vertical and stationary with the ball at the top as shown in Figure P10.54 the combination is free to pivot about the bottom end of the rod after being given a slight nudge, (a) After the combination rotates through 90 degrees, what...

  • 1. A slender rod of mass 0.5 kg and length 0.8 m is released from rest...

    1. A slender rod of mass 0.5 kg and length 0.8 m is released from rest in the position shown. The coefficients of kinetic and static friction between the surface and the rod are Ilk = 0.11, and is = 0.2. Determine whether the rod will slip on the horizontal surface. 300

  • A rigid bar in the shape of a T has a mass of 10 kg. The T-shaped body of mass m is composed of two identical slender b...

    A rigid bar in the shape of a T has a mass of 10 kg. The T-shaped body of mass m is composed of two identical slender bars welded together. End A is constrained to move in the slotted frictionless groove guided by the light frictionless roller as shown in Figure 3. The lower end of the T is released from rest in the vertical plane in the position shown, and the dimension /= 1 m. (i) Determine the location...

  • Question 4 A homogeneous slender rod AB of mass m and length L is held in...

    Question 4 A homogeneous slender rod AB of mass m and length L is held in the position shown in Figure Q4. The end A of the rod is free to move along the smooth horizontal surface. The end B of the rod is connected to rod BC of negligible mass. The rod AB is released from rest in the position shown when 0 = 60°. If the acceleration of end B is ā, = -a,j, derive the expressions in...

  • 4(12 points) A uniform rod of length L and mass M is attached at one end...

    4(12 points) A uniform rod of length L and mass M is attached at one end to a frictionless pivot and is free to rotate about the pivot in the vertical plane as in Figure. The rod is released from rest in the horizontal position. (a)What are the initial angular acceleration of the rod and the initial translational acceleration of its right end (as shown in Fig.a)? (b)What is its angular speed when the rod reaches its lowest position (as...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT