Question

An ideal spring (k = 60:0 N/m) is compressed 2:00 m by a 1:00 kg block....

An ideal spring (k = 60:0 N/m) is compressed 2:00

An ideal spring (k = 60:0 N/m) is compressed 2:00 m by a 1:00 kg block. The block and spring are positioned on a hill such that the block is initially 10.0 m above the ground. The block is then released. Assume that the ground is frictionless.

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

a) According to the conservation of energy, kinetic energy of the block at the bottom of the hill is given by 60 v 20.88m/s b

Add a comment
Know the answer?
Add Answer to:
An ideal spring (k = 60:0 N/m) is compressed 2:00 m by a 1:00 kg block....
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
  • 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?

  • A 2 kg block is launched to the right by a spring with k=1000 N/m. The...

    A 2 kg block is launched to the right by a spring with k=1000 N/m. The spring is initially compressed by 0.3 m and is not attached to the block. It slides across the table a distance of 0.2 m where is hits and sticks to a 4 kg block. The 4 kg block is right at the end of a second, initially uncompressed, 1000 N/m spring. Find the maximum compression of the second spring if the coefficient of friction...

  • 23. A block (m = 1.0 kg) is compressed against a spring (k = 800 N/m)...

    23. A block (m = 1.0 kg) is compressed against a spring (k = 800 N/m) a distance of 25 cm on a rough surface with uk = 2 and released from rest. If ø= 18°, find the speed of the block once it has traveled a distance d = 3.0 m up the incline. m

  • A 2.10-kg frictionless block is attached to an ideal spring with force constant 325 N/m. Initially...

    A 2.10-kg frictionless block is attached to an ideal spring with force constant 325 N/m. Initially the spring is neither stretched nor compressed, but the block is moving in the negative direction at 13.5 m/s. A. Find the amplitude of the motion. Express your answer in meters. B. Find the maximum acceleration of the block. Express your answer in meters per second squared. C. Find the maximum force the spring exerts on the block. Express your answer in newtons.

  • An ideal weightless spring with k=340 N/m is compressed by 10 cm from its equilibrium position....

    An ideal weightless spring with k=340 N/m is compressed by 10 cm from its equilibrium position. The axis of the spring is horizontal. A 0.2 kg marble is placed at the end of the spring and released horizontally on a frictionless surface. a. What is the speed of the marble when the compression of the spring is 2 cm? b. What is the maximum speed of the marble? c. What will happen if the marble hits another stationary marble with...

  • 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...

  • A 2.50 kg frictionless block is attached to an ideal spring with force constant 312 N/m...

    A 2.50 kg frictionless block is attached to an ideal spring with force constant 312 N/m . Initially the block has velocity -3.67 m/s and displacement 0.290 m . Find the amplitude of the motion. Find the maximum acceleration of the block. Find the maximum force the spring exerts on the block.

  • A 2-kg block is pushed against a spring with spring-constant k 512 N/m, compressing it 0.25 m

    A 2-kg block is pushed against a spring with spring-constant k 512 N/m, compressing it 0.25 m. When the block is released, it moves along a frictionless, horizontal surface and then up a frictionless incline with slope 53.1° (a) What is the speed of the block as it slides along the horizontal surface after having left the spring? (b) How far does the block travel up the incline before starting to slide back down?

  • A 2.20 kg frictionless block is attached to an ideal spring with force constant 316 N/m...

    A 2.20 kg frictionless block is attached to an ideal spring with force constant 316 N/m . Initially the block has velocity -3.80 m/s and displacement 0.240 m . A. Find the amplitude of the motion. B. Find the maximum acceleration of the block. C. Find the maximum force the spring exerts on the block.

  • 1) A block of mass m = 0.52 kg is attached to a spring with force...

    1) A block of mass m = 0.52 kg is attached to a spring with force constant 119 N/m is free to move on a frictionless, horizontal surface as in the figure below. The block is released from rest after the spring is stretched a distance A = 0.13 m. (Indicate the direction with the sign of your answer. Assume that the positive direction is to the right.) (a) At that instant, find the force on the block.   N   (b)...

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