Question

in animation 1 a 1.5-kg block receives a push and in the process pushes against a...

in animation 1 a 1.5-kg block receives a push and in the process pushes against a 4.5-kg block. (position is in meters and time is in seconds). Conversely, in animation 2,the same 4.5-kg block receives the same push, now from the opposite direction, and in the process pushes against the 1.5-kg block as shown. All surfaces are frictionless. The magnitude of the finger applied by the finger is calculated to be 15.6N since the acceleration is 2.612.

1.a the force that the green block exerts on the red block points to the right or to the left?

b.the force that the red block exerts on the green block points to the left or to the right?

2. Compare the magnitude of the force that the red block exerts on the green block to the force that the green block exerts on the red block. (I think its c, but im not sure)

a.red block exerts a force on the green block, which is bigger in magnitude than the force that the green block exerts on the red block.

b.In the first animation the green block exerts a bigger magnitude of force on the red block, but in the second animation the red block exerts a bigger magnitude of force on the green block.

c.In both animations the red block exerts a force on the green block, which is the same magnitude as the force that the green block exerts on the red block.

3.What is the magnitude of the force applied by the red block on the green block in Animation 1/Animation 2?

a.3.9N / 3.9 N, b. 11.7N / 11.7 N, c.15.6N / 15.6 N, d.11.7 / 3.9 N, e.3.9 / 11.7 N

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

Makt on red bloek 旨). Red block exer+ tera towaw block er ert #3 F = ma 3.9 N

Add a comment
Know the answer?
Add Answer to:
in animation 1 a 1.5-kg block receives a push and in the process pushes against a...
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
  • 1. At the start of his race, an 85-kg runner pushes against the starting block, exerting...

    1. At the start of his race, an 85-kg runner pushes against the starting block, exerting an average force of 1700 N . The force that the block exerts on his foot points 20∘ above the horizontal. Determine the horizontal speed of the runner after the force is exerted for 0.30 s . Express your answer to two significant figures and include the appropriate units.

  • 7. A 95 N applied force pushes a 5 kg block against a frictionless wall as...

    7. A 95 N applied force pushes a 5 kg block against a frictionless wall as shown, where 0 = 35°. What is the magnitude of the block's acceleration? a) 1.10 m/s2 b) 1.39 m/s2 c) 1.67 m/s2 d) 2.25 m/s2 e) 2.82 m/s2

  • A 44 kg block of ice slides down a frictionless incline 1.5 m long and 0.82...

    A 44 kg block of ice slides down a frictionless incline 1.5 m long and 0.82 m high. A worker pushes up against the ice, parallel to the incline, so that the block slides down at constant speed. (a) Find the magnitude of the worker's force. N How much work is done on the block by the following forces? (Include the sign of the value in your answer.) (b) the worker's force J (c) the gravitational force on the block...

  • A horizontal force of magnitude 39.5 N pushes a block of mass 4.05 kg a distance...

    A horizontal force of magnitude 39.5 N pushes a block of mass 4.05 kg a distance of 3.00 m across a floor, where the coefficient of kinetic friction is 0.600. (a) How much work is done by that applied force on the block-floor system? (b) During that displacement, the thermal energy of the block increases by 44.0 J. What is the increase in thermal energy of the floor? (c) What is the increase in the kinetic energy of the block?

  • A horizontal force of magnitude 32.1 N pushes a block of mass 3.91 kg across a...

    A horizontal force of magnitude 32.1 N pushes a block of mass 3.91 kg across a floor where the coefficient of kinetic friction is 0.579. (a) How much work is done by that applied force on the block-floor system when the block slides through a displacement of 2.99 m across the floor? (b) During that displacement, the thermal energy of the block increases by 33.6 J. What is the increase in thermal energy of the floor? (c) What is the...

  • A horizontal force of magnitude 41.6 N pushes a block of mass 3.86 kg across a...

    A horizontal force of magnitude 41.6 N pushes a block of mass 3.86 kg across a floor where the coefficient of kinetic friction is 0.591. (a) How much work is done by that applied force on the block-floor system when the block slides through a displacement of 3.38 m across the floor? (b) During that displacement, the thermal energy of the block increases by 37.8 J. What is the increase in thermal energy of the floor? (c) What is the...

  • In figure (a) a constant horizontal force Fa is applied to block A

    In figure (a) a constant horizontal forceFa is applied to block A,which pushes against block B with a 26.0 Nforce directed horizontally to the right.In figure (b), the same forceFa is applied to block B; nowblock Apushes on block B with a 13.0 N force directed horizontally to the left.The blocks have a combined mass of 21.0 kg.(a) What is the magnitude of the accelerationof the blocks in figure (a)? m/s2(b) What is the magnitude of the forceFa? N

  • 1 You pin a 0.15 kg block against a vertical wall applying a horizontal force. If...

    1 You pin a 0.15 kg block against a vertical wall applying a horizontal force. If the coefficient of static friction between the block & the wall in 0.82, then what is the minimum magnitude of the applied force such that the block will not slide? a) 8.IN b) 8.4 N C) 679 d) 9.0N e) 9.3N

  • A horizontal force of magnitude 40.3 N pushes a block of mass 3.61 kg across a...

    A horizontal force of magnitude 40.3 N pushes a block of mass 3.61 kg across a floor where the coefficient of kinetic friction is 0.589. (a) How much work is done by that applied force on the block-floor system when the block slides through a displacement of 2.98 m across the floor? (b) During that displacement, the thermal energy of the block increases by 37.3 J. What is the increase in thermal energy of the floor? (c) What is the...

  • MY NOTES A dock worker pushes a m 2.20 kg block a distance de 6,20 m...

    MY NOTES A dock worker pushes a m 2.20 kg block a distance de 6,20 m along the floor by a constant force of magnitude F-16.0 N directed at an angle - 23.0 below the horizontal as shown in the figure Assume the floor is frictionless. (Enter your answers in joules.) (a) Determine the work done on the block by the applied force (the force on the block exerted by the dock worker) (b) Determine the work done on the...

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