Question

3. A bicycle wheel of radius 0.50 m and solid disc of the same radius of...

3. A bicycle wheel of radius 0.50 m and solid disc of the same radius of 0.50 m are placed at the top of the incline below. They both have a mass of 500 g.

a. Calculate the rotational inertia of each.

b. Which one will reach the bottom of the incline first? Explain using your understanding of what rotational​ inertia ​is.

Please show all work. Thank you!

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
3. A bicycle wheel of radius 0.50 m and solid disc of the same radius of...
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
  • Which has more rotational inertia, a bicycle wheel or a solid disk of the same mass...

    Which has more rotational inertia, a bicycle wheel or a solid disk of the same mass and diameter?

  • 3. A ball, a solid sphere of radius r and mass m, is positioned at the top of a ramp that makes an angle of 0 with the horizontal. The initial position of the sphere is at a distance of d from its fi...

    3. A ball, a solid sphere of radius r and mass m, is positioned at the top of a ramp that makes an angle of 0 with the horizontal. The initial position of the sphere is at a distance of d from its final position at the bottom of the incline. a) Find the velocity of the ball at the bottom of the ramp in terms of m, r, d, 8, and g. The moment of inertia of a sphere...

  • A solid disc of mass 2. kg and radius 0. 20 m rolls with velocity 3...

    A solid disc of mass 2. kg and radius 0. 20 m rolls with velocity 3 m/s. What is the maximum height it can reach if it moves up on an inclined plane ? (Note: I = 0.5 MR 2 for a solid disc, and g = 9.80 m/s 2 .) Two tensions are applied from opposite sides of a pulley as T1 = 20 N and T2=35 N. Pulley is a solid disc of radius 0.5 m and with...

  • A solid homogeneous cylinder and a thin cylindrical shell each have the same mass and radius....

    A solid homogeneous cylinder and a thin cylindrical shell each have the same mass and radius. They are both released from rest at the same time and from the same elevation at the top of the same inclined plane. As they roll down the incline, they both roll without slipping. Which object will reach the bottom of the inclined plane first? A solid homogeneous cylinder B they both reach the bottom at the same time C thin cylindrical shell

  • A bicycle wheel of mass M and radius R is placed on a vertical axle and...

    A bicycle wheel of mass M and radius R is placed on a vertical axle and is able to rotate without friction. A dart of mass, m is fired toward the wheel with an initial velocity v(o). The dart strikes the wheel and sticks in the tire. The moment of inertia of the wheel is I=mr^2. What is the initial angular momentum of the dart with respect to the center of the wheel? What is the angular velocity of the...

  • Consider a bicycle wheel of mass M and radius R that sits on a flat, level...

    Consider a bicycle wheel of mass M and radius R that sits on a flat, level surface, such that the surface is tangent to the wheel. One end of a spring (spring constant, k) is attached to bicycle wheel’s hub, and the other end is fixed to a vertical wall. The spring is horizontal. There is sufficient friction to prevent the wheel from sliding at the point of contact with the surface. When the center of the wheel is directly...

  • Consider a bicycle wheel of mass M and radius R that sits on a flat, level...

    Consider a bicycle wheel of mass M and radius R that sits on a flat, level surface, such that the surface is tangent to the wheel. One end of a spring (spring constant, k) is attached to bicycle wheel's hub, and the other end is fixed to a vertical wall. The spring is horizontal. There is sufficient friction to prevent the wheel from sliding at the point of contact with the surface. When the center of the wheel is directly...

  • 13. A bicycle wheel can be thought of as a ring with a radius of 40...

    13. A bicycle wheel can be thought of as a ring with a radius of 40 cm and a mass of 3.0 kg. The whee rolls without slipping, first along a horizontal surface and then up an incline, as shown below. The velocity of the center of mass of the wheel on the horizontal portion is vcM 2.0 m/s. How high the incline (vertically) can the wheel roll before coming to rest? A. 0.10 m B. 0.15 m C. 0.20...

  • 6. Consider the system shown: m, J, R The wheel with mass m, radius R, and rotational moment of i...

    6. Consider the system shown: m, J, R The wheel with mass m, radius R, and rotational moment of inertia J rolls without slipping down the incline shown. The spring affixed to its axle has rest length h, and is neither extended nor compressed when r 0. The external force F is directed parallel to the direction of rolling. Find the total kinetic energy and potential energy in the system. Assume the gravitational potential energy to be zero when the...

  • [Use g = 10 m/s^2] A non-uniform wheel of mass 5 kg and moment of inertia...

    [Use g = 10 m/s^2] A non-uniform wheel of mass 5 kg and moment of inertia 1/3 mR^2 is set on an incline whose height is h = 4 meters and length is L = 20 meters. The wheel is released from rest at the top of the incline and rolls without slipping to the bottom. What is the wheel's translational kinetic energy at the bottom of the incline? What is the wheel's rotational kinetic energy at the bottom of...

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