Question

A 0.30 kg object is attached to a spring with force constant 161 N/m so that...

A 0.30 kg object is attached to a spring with force constant 161 N/m so that the object is allowed to move on a horizontal frictionless surface. The object is released from rest when the spring is compressed 0.10 m.

(a) Find the force on the object.
N
(b) Find its acceleration at that instant
m/s2

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

Force on the object = spring restoring force = k*x = 161*0.1 = 16.1 N


b) F = m*a


accelaration is a = F/m = 16.1/0.3 = 53.67 m/s^2

Add a comment
Know the answer?
Add Answer to:
A 0.30 kg object is attached to a spring with force constant 161 N/m so that...
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 0.40 kg object is attached to a spring with force constant 159 N/m so that...

    A 0.40 kg object is attached to a spring with force constant 159 N/m so that the object is allowed to move on a horizontal frictionless surface. The object is released from rest when the spring is compressed 0.12 m. (a) Find the force on the object. _____ N (b) Find its acceleration at that instant ____m/s2

  • A 0.66 kg block attached to a spring with force constant 150 N/m is free to...

    A 0.66 kg block attached to a spring with force constant 150 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 0.13 m. (a) At that instant, find the force on the block. N? (b) At that instant, find its acceleration. m/s^2?

  • 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)...

  • A block of mass m = 0.59 kg is attached to a spring withforce constant...

    A block of mass m = 0.59 kg is attached to a spring with force constant 128 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) At that...

  • A 1.00 kg glider attached to a spring with a force constant 25.0 N/m oscillates on...

    A 1.00 kg glider attached to a spring with a force constant 25.0 N/m oscillates on a horizontal, frictionless air track. At t = 0, the glider is released from rest at x = -2.70 cm. (That is, the spring is compressed by 2.70 cm.) (a) Find the period of its motion. s (b) Find the maximum values of its speed and acceleration. m/s m/s2 (c) Find the position, velocity, and acceleration as functions of time (t). x(t) =   cm...

  • A 1.00-kg glider attached to a spring with a force constant 9.0 N/m oscillates on a frictionless

    A 1.00-kg glider attached to a spring with a force constant 9.0 N/m oscillates on a frictionless, horizontal air track. At t = 0, the glider is released from rest at x = -2.80 cm (that is, the spring is compressed by 2.80 cm). (a) Find the period of the glider's motion. (b) Find the maximum values of its speed and acceleration.(c) Find the position, velocity, and acceleration as functions of time. (Where position is in m, velocity is in m/s, acceleration...

  • A 1.00 kg glider attached to a spring with a force constant 36.0 N/m oscillates on...

    A 1.00 kg glider attached to a spring with a force constant 36.0 N/m oscillates on a horizontal, frictionless air track. At0, the glider is released from rest at x2.50 cm. (That is, the spring is compressed by 2.50 cm.) (a) Find the period of its motion (b) Find the maximum values of its speed and cceeaon m/s (c) Find the position, velocity, and acceleration as functions of time (t) x(t) = v(t) a(t) cm (position) cm/s (velocity) cm/s2 (acceleration)

  • A 1.00-kg glider attached to a spring with a force constant 16.0 N/m oscillates on a...

    A 1.00-kg glider attached to a spring with a force constant 16.0 N/m oscillates on a frictionless, horizontal air track. At t = 0, the glider is released from rest at x = -2.50 cm (that is, the spring is compressed by 2.50 cm). (a) Find the period of the glider's motion. s (b) Find the maximum values of its speed and acceleration. speed m/s acceleration m/s2 (c) Find the position, velocity, and acceleration as functions of time. (Where position...

  • A 1.30-kg object is attached to a spring and placed on frictionless, horizontal surface. A horizontal...

    A 1.30-kg object is attached to a spring and placed on frictionless, horizontal surface. A horizontal force of 21.0 N is required to hold the object at rest when it is pulled 0.200m from its equilibrium position...... Would you write out the intermediate steps, too, please? A 1.30-kg object is attached to a spring and placed on frictionless, horizontal surface. A horizontal force of 21.0 N is required to hold the object at rest when it is pulled 0.200 m...

  • A 0.53 kg object connected to a light spring with a force constant of 23.2 N/m...

    A 0.53 kg object connected to a light spring with a force constant of 23.2 N/m oscillates on a frictionless horizontal surface. If the spring is compressed 4.0 cm and released from rest. (a) Determine the maximum speed of the object. _____________cm/s (b) Determine the speed of the object when the spring is compressed 1.5 cm. ___________ cm/s (c) Determine the speed of the object when the spring is stretched 1.5 cm. _______________cm/s (d) For what value of x does...

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