Question

A sphere of mass Msphere and a yoyo of mass Myoyo are suspended from a from a pulley with mass Mpulley The pulley can rotate with negligive friction about its fixed pivot. αyoyo and αpulley are angular accelerations. ㄒㄨ Tz The sphere and the yoyo are released from rest and reach the ground at the same time. Select an answer for each statement. Tension Tz is tension Tx Msphere is..Myoyo- ⑤ Taking counter-clockwise as (+) , and clockwise as (-) , αyoyo zero The yoyos linear acceleration is Tries 0/4 that of the sphere Submit Answer

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

If you have any doubt or confusion, please comment in comment box. thank you for using homeworklib. please thumb up. thank you very much.

Add a comment
Know the answer?
Add Answer to:
A sphere of mass Msphere and a yoyo of mass Myoyo are suspended from a from...
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
  • In the figure below the mass is known, M, as is the mass and radius of...

    In the figure below the mass is known, M, as is the mass and radius of the large pulley (My, R). mg a) Calculate the magnitude of the tension in the rope, as well as the acceleration of the block. The small pulley is negligible. b) If the system is released from rest, calculate the angular velocity of the pulley and the linear velocity of the mass after a time At.

  • Two masses M1=2kg and M2 are attached by a massless cord over a solid pulley wheel...

    Two masses M1=2kg and M2 are attached by a massless cord over a solid pulley wheel of mass M=4kg, and radius R=5cm. Static Friction between the cord and the pulley makes the pulley rotate counter-clockwise when the system is released from rest, M1 accelerates with a magnitude of 3.92 m/s2. a) Draw and label the forces acting on the two blocks, and the pulley. (6 points) b) Find the tension in the cord between the pulley and M1 (6 points)...

  • Answer गष्टट se.c Questions 4-8: A stone of mass, m 2kg is suspended from the free...

    Answer गष्टट se.c Questions 4-8: A stone of mass, m 2kg is suspended from the free end of a wire that is wrapped around the outer rim of a pulley similar to what is shown in the figure. The pulley is a uniform disk with unknown moment of inertial I and its radius R = 2 cm and turns on frictionless bearings. The stone was released from rest and it travels a height, h=1 m and its velocity is found...

  • Example2 25k A solid sphere (mass M, radius R) is released from rest at the top...

    Example2 25k A solid sphere (mass M, radius R) is released from rest at the top of an inclined plane (angle ?). There is sufficient friction between the incline and the sphere to allow it to roll without slipping. (a) Draw and FBD for the sphere. (b) Find the linear acceleration of the sphere (c) Find the magnitude of the frictional force acting on the sphere. (d) Find the minimum required coefficient of friction to keep the sphere from slipping....

  • Am7 = 14.3 kg mass and a m2 = 11.9 kg mass are suspended by a...

    Am7 = 14.3 kg mass and a m2 = 11.9 kg mass are suspended by a pulley that has a radius of R = 11.0 cm and a mass of M = 2.98 kg, as seen in the figure below. m2 The cord has a negligible mass and causes the pulley to rotate without slipping. The pulley rotates without friction. The masses start from rest d = 3.13 m apart. Treating the pulley as a uniform disk, determine the speeds...

  • A m1 = 14.1 kg mass and a m2 = 10.6 kg mass are suspended by...

    A m1 = 14.1 kg mass and a m2 = 10.6 kg mass are suspended by a pulley that has a radius of R = 11.4 cm and a mass of M = 3.18 kg, as seen in the figure below. The cord has a negligible mass and causes the pulley to rotate without slipping. The pulley rotates without friction. The masses start from rest d = 2.79 m apart. Treating the pulley as a uniform disk, determine the speeds...

  • A m1 = 14.6 kg mass and a m2 = 11.1 kg mass are suspended by...

    A m1 = 14.6 kg mass and a m2 = 11.1 kg mass are suspended by a pulley that has a radius of R = 11.8 cm and a mass of M = 2.52 kg, as seen in the figure below. The cord has a negligible mass and causes the pulley to rotate without slipping. The pulley rotates without friction. The masses start from rest d = 3.13 m apart. Treating the pulley as a uniform disk, determine the speeds...

  • 1) A rope of negligible mass passes over a uniform cylindrical pulley of 1.50 kg mass...

    1) A rope of negligible mass passes over a uniform cylindrical pulley of 1.50 kg mass and 0.090 m radius. The bearings of the pulley have negligible friction, and the rope does not slip on the pulley. On one end of the rope hangs a 3.00 kg bunch of bananas, and on the other end hangs a 4.50 kg monkey. Calculate the downward acceleration of the monkey and the tension in both ends of the rope. 2) A 200 g...

  • A charged sphere of mass 2.8 X 104 kg is suspended from a string. An electric...

    A charged sphere of mass 2.8 X 104 kg is suspended from a string. An electric force acts horizontally on the sphere so that the string makes an angle of 33° with the vertical when at rest. Find (a) the magnitude of the electric force and (b) the tension in the string.

  • In the figure, block 1 has mass m - 490 g, block 2 has mass m2...

    In the figure, block 1 has mass m - 490 g, block 2 has mass m2 - 5409, and the pulley is on a frictionless horizontal and and has radius R - 4.7 cm. When released from rest, block 2 fois 79 cm in 4.6 s without the cord slipping on the pulley (a) What is the magnitude of the acceleration of the blocks? What are (b) tension Tz (the tension force on the block 2) and (c) tension T,...

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