Question

Atwood Machine What would the acceleration of the system be if the masses are equal (m1=m2)?...

Atwood Machine

What would the acceleration of the system be if the masses are equal (m1=m2)? What would the tension of the string be in this case? Explain why these values make sense in the context of Newton’s second law.

What would the acceleration of the system be if the mass of cylinder 2 is much greater than the mass of cylinder 1 (m2>>m1)? What would the tension of the string be in this case? Why or why not do these answers make sense?

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

ng mg НЕ jazo mg-Tama 2 Т- м 2 Because on body no so net force is applied acceleration to Тит 22 м, Cos 3 m2 +M, = M2 (% - )

Add a comment
Know the answer?
Add Answer to:
Atwood Machine What would the acceleration of the system be if the masses are equal (m1=m2)?...
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
  • An Atwood machine consists of two masses m1 and m2 (with m1 > m2 ) attached...

    An Atwood machine consists of two masses m1 and m2 (with m1 > m2 ) attached to the ends of a light string that passes over a light, frictionless pulley. When the masses are released, the mass m1 is easily shown to accelerate down with an acceleration a = g*(m1+m2)/)m1−m2 Suppose that m and are measured as m1 = 100 +- 1 gram and m2 = 50 +- 1 gram. Derive a formula of uncertainty in the expected acceleration in...

  • an atwood machine with massless string and frictionless pulley has masses m1= 0.480 kg and m2=0.720...

    an atwood machine with massless string and frictionless pulley has masses m1= 0.480 kg and m2=0.720 kg attached to it. derive the equations for and calculate the acceleration of the masses and the tension in the string

  • An Atwood machine consists of two masses m1 and m2 (with m1 > m2) attached to the ends of a light string that passes over a light

    An Atwood machine consists of two masses m1 and m2 (with m1 > m2) attached to the ends of a light string that passes over a light, frictionless pulley. When the masses are released, the mass m1 is easily shown to accelerate down with an accelerationSuppose that m1 and m2 are measured as m1=100±1 gram and m2=50±1 gram. Derive a formula of the uncertainty in the expected acceleration in terms of the masses and their uncertainties, and then calculate δα for...

  • QUESTION 1 An Atwood Machine consists of two masses connected to a cord which is draped...

    QUESTION 1 An Atwood Machine consists of two masses connected to a cord which is draped over a pulley. In our experiment, what will be true about the masses? Mass 1 will vary with Mass 2 held constant. Mass 1 will vary with Mass 2 held constant. The masses will have a constant sum. The masses will have a constant mass difference. 3 points    QUESTION 2 You will get a value for acceleration for each trial from a LoggerPro...

  • 4. A simple Atwood machine consists of two masses m1 and m2 that are connected by...

    4. A simple Atwood machine consists of two masses m1 and m2 that are connected by a string wound over a pulley, as seen in the figure below. Assume m2 is larger than m1. Motion in the upward direction is positive. On a piece of paper, draw two free body diagrams; one for each of the masses, showing all forces acting on each mass. Then answer the following questions. Suppose that m2 starts from rest at a height of 7...

  • 5. A simple Atwood machine consists of two masses m1 and m2 that are connected by...

    5. A simple Atwood machine consists of two masses m1 and m2 that are connected by a string wound over a pulley, as seen in the figure below. Assume m2 is larger than m1. Motion in the upward direction is positive. On a piece of paper, draw two free body diagrams; one for each of the masses, showing all forces acting on each mass. Then answer the following questions. (b) Using the direction rosette indicate the direction for each of...

  • In the Atwood machine shown below, m1 = 2.00 kg and m2 = 6.00 kg. The...

    In the Atwood machine shown below, m1 = 2.00 kg and m2 = 6.00 kg. The masses of the pulley and string are negligible by comparison. The pulley turns without friction and the string does not stretch. The lighter object is released with a sharp push that sets it into motion at vi = 2.20 m/s downward. (a) How far will m1 descend below its initial level? 1 m In the Atwood machine shown below, m1 = 2.00 kg and...

  • tion 15 of 17 > Attempt 2 < Feedback An Atwood machine consists of two masses...

    tion 15 of 17 > Attempt 2 < Feedback An Atwood machine consists of two masses hanging from the ends of a rope that passes over a pulley. Assume that the rope and pulley are massless and that there is no friction in the pulley. If the masses have the values m = 18.7 kg and m2 = 13.7 kg, find the magnitude of their acceleration a and the tension in the rope. Use g -9.81 m/s Newton's second law...

  • 5. An Atwood machine consists of two masses mi and m2 (with mi > m2) attached...

    5. An Atwood machine consists of two masses mi and m2 (with mi > m2) attached to the ends of a light string that passes over a light, frictionless pulley Problem Setup1 FBD ty m2 mi 1-png When the masses are released, the mass mi is easily shown to accelerate down with an acceleration mi m2 mi +m2 Suppose that and m 2 are measured as mn = 100 ± 1 and mg = 50 ± 1, both in grams....

  • The Atwood machine consists of two masses hanging from the ends of a rope that passes...

    The Atwood machine consists of two masses hanging from the ends of a rope that passes over a pulley. Assume that the rope and pulley are massless, and that there is no friction in the pulley. If the masses have the values m1 = 20.3 kg and m2 = 12.5 kg, find the magnitude of their acceleration a and the tension T in the rope. Use g = 9.81 m/s2. 2 answers in the rope. Use g 9.81 m/s Number...

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