Question

A very thin circular hoop of mass m and radius r rolls without slipping down a...

A very thin circular hoop of mass m and radius r rolls without slipping down a ramp inclined at an angle θ with the horizontal, as shown in the figure.

What is the acceleration a of the center of the hoop?

Homework Answers

Know the answer?
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
Similar Questions
A circular hoop (?hoop ?? ) of mass ? 5.00 kg, radius ? 2.00 m, and...
A circular hoop (?hoop ?? ) of mass ? 5.00 kg, radius ? 2.00 m, and infinitesimal thickness rolls without slipping down a ramp inclined at an angle ? 32.0° with the horizontal. (a) Draw a free body diagram of the hoop. [1] (b) Determine the magnitude of the hoop’s acceleration down the ramp. [4] (c) Determine the force of static friction on the hoop. [3]
A uniform cylinder of mass M and radius R rolls without slipping down a slope of...
A uniform cylinder of mass M and radius R rolls without slipping down a slope of angle theeta to the horizontal. The cylinder is connected to a spring constant K while the other end of the spring is connected to a rigid support at P. The cylinder is released when the spring is unstrectched. The maximum displacement of cylinder is ?
A 320-N sphere 0.20 m in radius rolls without slipping 6.0 m down a ramp that...
A 320-N sphere 0.20 m in radius rolls without slipping 6.0 m down a ramp that is inclined at 34° with the horizontal. What is the angular speed of the sphere at the bottom of the slope if it starts from rest?
A 350-N sphere 0.20 m in radius rolls without slipping 6.0 m down a ramp that...
A 350-N sphere 0.20 m in radius rolls without slipping 6.0 m down a ramp that is inclined at 25° with the horizontal. What is the angular speed of the sphere at the bottom of the slope if it starts from rest? rad/s
A 340-N sphere 0.20 m in radius rolls without slipping 6.0 m down a ramp that...
A 340-N sphere 0.20 m in radius rolls without slipping 6.0 m down a ramp that is inclined at 34° with the horizontal. What is the angular speed of the sphere at the bottom of the slope if it starts from rest? in rad/s
A uniform disc of mass M=2.0 kg and radius R=0.45 m rolls without slipping down an...
A uniform disc of mass M=2.0 kg and radius R=0.45 m rolls without slipping down an inclined plane of length L=40 m and slope of 30°. The disk starts from rest at the top of the incline. Find the angular velocity at the bottom of the incline.
A hoop I = M R2 starts from rest and rolls without slipping down an incline...
A hoop I = M R2 starts from rest and rolls without slipping down an incline with h = 7.0 m above a level floor. The translational center-of-mass speed vcm of the hoop on the level floor is
A hollow cylinder (hoop) of mass M and radius R starts rolling without slipping (with negligible...
A hollow cylinder (hoop) of mass M and radius R starts rolling without slipping (with negligible initial speed) from the top of an inclined plane with angle theta. The cylinder is initially at a height h from the bottom of the inclined plane. The coefficient of friction is u. The moment of inertia of the hoop for the rolling motion described is I= mR^2. a) What is the magnitude of the net force and net torque acting on the hoop?...
A thumbtack rolls down an inclined plane without slipping, the motion is similar to a pendulum...
A thumbtack rolls down an inclined plane without slipping, the motion is similar to a pendulum when looking from above. The thumbtack is a disk of mass M and radius R with a massless stem of length L from the center of the disk. The inclined plane has an angle of theta. Write down the Lagrangian for this system and find the angular frequency of oscillation away from the equilibrium position of the thumbtack.
3) A solid cylinder with mass 4kg and radius r=0.5 m rolls without slipping from a...
3) A solid cylinder with mass 4kg and radius r=0.5 m rolls without slipping from a height of 10 meters on an inclined plane with length 20 meters. a) Find the friction force so that it rolls without slipping b) Calculate the minimum coefficient of rolling friction mu c) Calculate its speed as it arrives at the bottom of the inclined plane