Question

A solid disk with a c of 1/2, mass of 3 kg, and radius of 1.5...

A solid disk with a c of 1/2, mass of 3 kg, and radius of 1.5 meters lies on a horizontally (so the normal force and weight can be ignored). A force of 7 Newtons is applied 0.34 meters directly to the right of center in the +x direction, a force of 23 Newtons is applied 0.77 meters directly below of center in the +x direction, and a force of 7 Newtons is applied at the edge of the disk directly above the center in the +x direction. Again, ignoring the weight and normal force, if the disk starts from rest, what is the angular velocity of the disk after these forces are applied for 2 seconds, in rad/s? If clockwise, include a negative sign.

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

given
M = 3 kg
R = 1.5 m
moment of inertia of the disk about its center,

I = (1/2)*M*R^2

= (1/2)*3*1.5^2

= 3.375 kg.m^2

Net torque, Tnet = F1*r1*sin(0) + F2*r2*sin(90) - F3*R*sin(90)

= 0 + 23*0.77 - 7*1.5

= 7.21 N.m


angular acceleration, alfa = Tnet/I

= 7.21/3.375

= 2.14 rad/s^2

angular velocity of the disk at t = 2s,

w = wo + alfa*t

= 0 + 2.14*2

= 4.28 rad/s <<<<<<<<<<--------------------Answer

Add a comment
Know the answer?
Add Answer to:
A solid disk with a c of 1/2, mass of 3 kg, and radius of 1.5...
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 solid disk with a c value of 1/2, mass of 3 kg, and radius of...

    A solid disk with a c value of 1/2, mass of 3 kg, and radius of 1.5 meters lies on a horizontally (so the normal force and weight can be ignored). A force of 9 Newtons is applied 0.22 meters directly to the right of the center in the +x direction, a force of 24 Newtons is applied at 0.81 meters directly below of the center in the +x direction and a force of 8 Newtons is applied at the...

  • A 10 kg disk with a hole in its center has a c value about its...

    A 10 kg disk with a hole in its center has a c value about its center of 0.56 has an outer radius of 3.6 meters. A force of 5 Newtons is applied in the -x direction at the edge of the disk directly to the right of its center. Another force of 28 Newtons is applied directly above the center in the -x direction halfway between the center and edge of the disk. Lastly, a force of 15 Newtons...

  • A 6 kg disk with a hole in its center has a c value about its...

    A 6 kg disk with a hole in its center has a c value about its center of 0.57 has an outer radius of 3.5 meters. A force of 9 Newtons is applied in the -x direction at the edge of the disk directly to the right of its center. Another force of 34 Newtons is applied directly above the center in the -x direction halfway between the center and edge of the disk. Lastly, a force of 15 Newtons...

  • A 8 kg disk with a radius of 1 meters has several forces applied to it...

    A 8 kg disk with a radius of 1 meters has several forces applied to it as shown in the sketch. F1 is 41 N and is applied at the edge of the disk, F2 is 7 N is applied at 1/4 the radius from the center of the disk, F3 is 5 N is applied at 3/4 the radius from the center, F4is 29 N is applied at the edge of the disk, and, lastly, F5 is 16 N...

  • A uniform disk with mass m = 8.55 kg and radius R = 1.35 m lies...

    A uniform disk with mass m = 8.55 kg and radius R = 1.35 m lies in the xy plane and centered at the origin. Three forces act on the disk in the +y-direction (see figure below): (1) a force F1 = 335 N at the edge of the disk on the +x-axis, (2) a force F2 = 335 N at the edge of the disk on the ?y-axis, and (3) a force F3 = 335 N at the edge...

  • A uniform disk with mass m = 9.07 kg and radius R = 1.36 m lies...

    A uniform disk with mass m = 9.07 kg and radius R = 1.36 m lies in the x-y plane and centered at the origin. Three forces act in the +y-direction on the disk: 1) a force 313 N at the edge of the disk on the +x-axis, 2) a force 313 N at the edge of the disk on the –y-axis, and 3) a force 313 N acts at the edge of the disk at an angle θ =...

  • A uniform disk with mass m = 9.04 kg and radius R = 1.35 m lies...

    A uniform disk with mass m = 9.04 kg and radius R = 1.35 m lies in the x-y plane and centered at the origin. Three forces act in the +y-direction on the disk: 1) a force 309 N at the edge of the disk on the +x-axis, 2) a force 309 N at the edge of the disk on the –y-axis, and 3) a force 309 N acts at the edge of the disk at an angle θ =...

  • A uniform disk with mass m = 8.91 kg and radius R = 1.31 m lies...

    A uniform disk with mass m = 8.91 kg and radius R = 1.31 m lies in the x-y plane and centered at the origin. Three forces act in the +y-direction on the disk: 1) a force 340 N at the edge of the disk on the +x-axis, 2) a force 340 N at the edge of the disk on the –y-axis, and 3) a force 340 N acts at the edge of the disk at an angle θ =...

  • ​​​​​​​ (a) What is the magnitude of the torque on the disk (about the z axis)...

    ​​​​​​​ (a) What is the magnitude of the torque on the disk (about the z axis) due to F1? (1pt) (b) What is the magnitude of the torque on the disk due to F2? (1pt) (c) What is the magnitude of the torque on the disk due to F3? (1pt) (d) What is the magnitude and direction (clockwise or counterclockwise) of the angular ac- celeration about the z-axis of the disk? (2pt) (e) If the disk starts from rest, what...

  • 1) What is the magnitude of the torque on the disk about the z axis due...

    1) What is the magnitude of the torque on the disk about the z axis due to F1? N-m 2) What is the magnitude of the torque on the disk about the z axis due to F2? N-m 3) What is the magnitude of the torque on the disk about the z axis due to F3? N-m 4) What is the x-component of the net torque about the z axis on the disk? N-m 5) What is the y-component 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