Question

7. (9 pts) A block is pushed up a 30 incline by an applied force as shown. If F-35 N, M 3.4 ks and the coefficient of kinetic friction is 0.12, what is the magnitude of the resulting acceleration of the block? 8.(10 pts) Two blocks, ms 1.0kg and m-2.0 kg, are connected by a light string as shown In the figure. If the radius of the pulley is 1.0 m and its moment of inertia is s.0 kg-m2, a) determine the acceleration of the system b) determine the tension in the string on each side of the pulley
0 0
Add a comment Improve this question Transcribed image text
Answer #1

As per HomeworkLib policy I am solving only one question here, for second question please put seperately.

Add a comment
Know the answer?
Add Answer to:
7. (9 pts) A block is pushed up a 30 incline by an applied force as...
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
  • Two blocks are connected by a lightweight string passing over a pulley, as shown in the figure below. The block with ma...

    Two blocks are connected by a lightweight string passing over a pulley, as shown in the figure below. The block with mass m1 = 16.5 kg on the incline plane accelerates up the plane with negligible friction. The block's acceleration is a = 1.40 m/s2, and the tension in the segment of string attached to this block is T1. The hanging block has a mass of  m2 = 23.5 kg, and the tension in the string attached to it is T2....

  • Two blocks are connected by a lightweight string passing over a pulley, as shown in the figure below. The block with ma...

    Two blocks are connected by a lightweight string passing over a pulley, as shown in the figure below. The block with mass m1 = 16.5 kg on the incline plane accelerates up the plane with negligible friction. The block's acceleration is a = 1.80 m/s2, and the tension in the segment of string attached to this block is T1. The hanging block has a mass of m2 = 22.5 kg, and the tension in the string attached to it is...

  • In Fig below the coefficient of the kinetic friction between the incline and the blocks is ux and...

    In Fig below the coefficient of the kinetic friction between the incline and the blocks is ux and the string passes through center of mass of each block. The pulley has , and radius R. The string does not slip on the 12) a mass M. moment ΟΙ inertia 「=- pulley. a) (4 pts) What is the acceleration of the D 2R masses? b) (5 pts) Find the acceleration of the system if both blocks are substituted with cylinders of...

  • 2. A block is pushed up a frictionless 30° incline by an applied force as shown....

    2. A block is pushed up a frictionless 30° incline by an applied force as shown. If F 25 N and M 3.0 kg, what is the magnitude of the resulting acceleration of the block? o) 15 30 ma cost 30° mg Fsn(son a. 2.3 m/s2 b. 4.6 m/s c. 3.5 m/s2 d. 2.9 m/s? e. 5.1 m/s

  • 10. [-14 Points] DETAILS SERPSE10 10.A.OP.041. MY NOTES PRACTICE ANOTHER Two blocks are connected by a...

    10. [-14 Points] DETAILS SERPSE10 10.A.OP.041. MY NOTES PRACTICE ANOTHER Two blocks are connected by a lightweight string passing over a pulley, as shown in the figure below. The block with mass m2 = 16.5 kg on the incline plane accelerates up the plane with negligible friction. The block's acceleration is a = 1.80 m/s2, and the tension in the segment of string attached to this block is T1. The hanging block has a mass of m2 = 23.5 kg,...

  • A pulley is set up on an incline surface. The incline surface has a static coefficient...

    A pulley is set up on an incline surface. The incline surface has a static coefficient s and kinetic k. m2 moves downhill when the pulley is free. The pulley has a moment of inertia I = and a mass M. a. Find angular acceleration of the pulley. b. Find the tension resulting from the two masses in the string. c. Find the reaction forces at the pulley We were unable to transcribe this imageWe were unable to transcribe this...

  • A block of mass M-3.0 kg is pushed up a frictionless 30° incline by an applied...

    A block of mass M-3.0 kg is pushed up a frictionless 30° incline by an applied force F-25 N as shown in the diagram. a. What is the magnitude of the resulting acceleration of the block? b. If the block starts form rest what is its speed after 5 seconds? 3. F 25 N 300 30°

  • Two blocks are connected by a lightweight string passing over a pulley, as shown in the...

    Two blocks are connected by a lightweight string passing over a pulley, as shown in the figure below. The block with mass m = 16.5 kg on the incline plane accelerates up the plane with negligible friction. The block's acceleration is a = 1.80 m/s2, and the tension in the segment of string attached to this block is T,. The hanging block has a mass of m, = 23.5 kg, and the tension in the string attached to it is...

  • 2. A block of mass 15.0 kg is being pulled up a flat incline of angle...

    2. A block of mass 15.0 kg is being pulled up a flat incline of angle 30.0? and coefficient of kinetic friction 0.120 by a string. The tension in the string is 120 N, and is directed parallel to the incline, as shown in the diagram below. (a) What is the value of the force exerted on the block by the incline? (That is, what is the block�s apparent weight?) (b) What is the magnitude of the block�s acceleration? 2....

  • Problem #1 m1 m2 Two blocks mı = 4 kg and m2 = 9 kg are...

    Problem #1 m1 m2 Two blocks mı = 4 kg and m2 = 9 kg are initially arranged as shown in the figure. They are tied to a massless rope going around the pulley. The pulley has a form of a cylinder with a mass of M = 8 kg and radius of R = 40 cm. Both the incline and the horizontal surface have a coefficient of kinetic friction ulk = 0.15. The incline is at the angle o...

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