Question

6. Consider a horizontal spring with spring constant k. A block with mass m is pushed far to the left against the spring unti

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

4 づ wiit づ 3 즉,

Add a comment
Know the answer?
Add Answer to:
6. Consider a horizontal spring with spring constant k. A block with mass m is pushed far to the left against the spring until the spring is compressed a distance r relative to its relaxed length. 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
  • 6. Consider a horizontal spring with spring constant k. A block with mass m is pushed...

    6. Consider a horizontal spring with spring constant k. A block with mass m is pushed far to the left against the spring until the spring is compressed a distance r relative to its relaxed length. A second block, which is stationary and also has a mass m, is located to the right of the spring im rrm a) We release the first block from rest. Due to the force from the spring, it slides to the right and eventually...

  • 1 3. A block of mass m 1.9 kg is held against a spring of spring...

    1 3. A block of mass m 1.9 kg is held against a spring of spring constant k 410 and compressed 0.75 m. When released, it is pushed along the frictionless surface towards mi rebounds mass m 4.3 kg. The two masses collide and mass towards the spring at a speed of 2.1 m/s, while mass m slides back towards the spring at a sp a. What is the speed of mass mi right before the collision? b. What is...

  • 3. A block of mass 3m sits at rest on a horizontal, frictionless surface. Suddenly another...

    3. A block of mass 3m sits at rest on a horizontal, frictionless surface. Suddenly another block with mass m comes sliding in from the left with speed vo to the right. The blocks collide and stick together. Determine the speed of the blocks after the collision.

  • Question 3 A spring of spring constant k is compressed by a distance d by a...

    Question 3 A spring of spring constant k is compressed by a distance d by a mass mi and released. This propels the mass down a flat track. Another spring, also of spring constant k, is on the other side. Another object of mass m is sitting in the middle of the track. The first mass strikes it and sticks to it. he entire track is frictionless, except for a small region of the track to the left of m2,...

  • 2. Mass mi -10.0 kg is initially held against the spring of spring constant k-100 N/m....

    2. Mass mi -10.0 kg is initially held against the spring of spring constant k-100 N/m. The spring is compressed a distance x 0.45 m. When released, m is fired towards a block of mass m2-4.4 kg initially at rest at the edge of a horizontal, frictionless table of height h-0.75 m. A ramp is placed at the end of the table. The ramp has a coefficient of kinetic friction μ.-0.25 and is a distance d-1.06 m long. The blocks...

  • In the figure below, block-2 of mass M = 1 Kg is at rest on a...

    In the figure below, block-2 of mass M = 1 Kg is at rest on a frictionless surface and touching the end of an un-stretched spring whose spring constant is 200 N/m. The other end of the spring is fixed to a wall. Block-1 of mass 2 Kg, travelling at speed v_1 = 4 m/s, collides with block-2 and the two blocks stick together. When the blocks momentarily stop, by what distance is the spring compressed?

  • A block of mass 3 kg is pushed against a spring of spring constant 3000 N/m....

    A block of mass 3 kg is pushed against a spring of spring constant 3000 N/m. Initially, the spring is compressed by a distance of 0.220 m, when the block is released from rest and travels along a horizontal frictionless surface before encountering a frictionless ramp, inclined at an angle of 37° above the horizontal. How far along the ramp does the block travel before momentarily coming to rest?

  • help 2. Mass mi 10.0 kg is initially held against the spring of spring constant k...

    help 2. Mass mi 10.0 kg is initially held against the spring of spring constant k 100 N/m. The spring is compressed a distance x 0.45 m. When released, m, is fired towards a block of mass m 4.4 kg initially at rest at the edge of a horizontal, frictionless table of height h- 0.75 m. A ramp is placed at the end of the table. The ramp has a coefficient of kinetic friction μ-0.25 and is a distance d...

  • A block of mass m is pushed against a spring of spring constant k. The spring...

    A block of mass m is pushed against a spring of spring constant k. The spring is compressed by a distance d, the block is then released. It is launched by the spring along a horizontal frictionless surface with a final speed v. A second block, this one having mass 9m is pushed against the same spring and released, gaining a final speed 3v. By what distance was the spring compressed in the second case?

  • 012 (part 1 of 4) 10.0 points A massless spring with force constant 277 N/m is...

    012 (part 1 of 4) 10.0 points A massless spring with force constant 277 N/m is fastened at its left end to a vertical wall, as shown below. The acceleration of gravity is 9.8 m/s 2 . Initially, the 8 kg block and 3 kg block rest on a horizontal surface with the 8 kg block in contact with the spring (but not compressing it) and with the 3 kg block in contact with the 8 kg block. The 8...

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