Question

A 0.560 kg glider on an air track is attached to the end of an ideal...

A 0.560 kg glider on an air track is attached to the end of an ideal spring with force constant 455 N/m ; it undergoes simple harmonic motion with an amplitude of 4.00×10−2 m .

Part A:

Calculate the maximum speed of the glider.

Express your answer to three significant figures.

PART B:

Calculate the speed of the glider when it is at x = −1.30×10−2 m .

Express your answer to three significant figures.

part C:

Calculate the magnitude of the maximum acceleration of the glider.

Express your answer to three significant figures.

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
A 0.560 kg glider on an air track is attached to the end of an ideal...
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 0.500-kg glider on an air track is attached to the end of an ideal spring...

    A 0.500-kg glider on an air track is attached to the end of an ideal spring with force constant 470 N/m; it undergoes simple harmonic motion with an amplitude of 5.00×10^−2 m. A. Calculate the maximum speed of the glider. B. Calculate the speed of the glider when it is at −1.40×10^−2 m. C. Calculate the magnitude of the maximum acceleration of the glider. D. Calculate the acceleration of the glider at −1.40×10^−2 m. E. Calculate the total mechanical energy...

  • A 0.4-kg glider attached to the end of an ideal spring with force constant k =...

    A 0.4-kg glider attached to the end of an ideal spring with force constant k = 500 N/m, undergoes SHM with an amplitude of 0.050 m. Compute: (a) the maximum speed of the glider, in m/s; A 0.4-kg glider attached to the end of an ideal spring with force constant k = 500 N/m, undergoes SHM with an amplitude of 0.050 m. Compute: (b) the speed (not velocity) of the glider when it is at x = -2 CENTIMETERS, in...

  • 14.3 Problem 14.3 Part A An air-track glider is attached to a spring. The glider is...

    14.3 Problem 14.3 Part A An air-track glider is attached to a spring. The glider is pulled to the right and released from rest at t-0 s. It then oscillates with a period of 2.40 s and a maximum speed of 30.0 cm/s What is the amplitude of the oscillation? Express your answer with the appropriate units. 11.5 cm Submit Correct Significant Figures Feedback: Your answer 0.1146 m(-11.46 cm) was either rounded differently or used a different significant figures than...

  • Problem 2 A 0.175-kg glider on a horizontal, frictionless air track is attached to a fixed...

    Problem 2 A 0.175-kg glider on a horizontal, frictionless air track is attached to a fixed ideal spring with spring constant 155 N/m. When the glider is 3.00 cm from its equilibrium point, it is moving at 0.815 m/s. (a) Find the frequency of the oscillations. (b) Find the amplitude of the motion. (c) Find the maximum speed of the glider. Hint: For (b) and (c), use the energy conservation.

  • An object with mass 3.9 kg is executing simple harmonic motoon, attached to a spring with...

    An object with mass 3.9 kg is executing simple harmonic motoon, attached to a spring with spring constant 250 N/m. When the object is 0.018 m from its equilibrium position, it is moving with a speed of 0.50 m/s. A) Calculate the amplitude of the motion B) Calculate the maximum speed attained by the object Thank you! An object with mass 3.9 kg is executing simple harmonic motion, attached to a spring with spring constant 250 N/m. When the object...

  • Parts A-D are from the below information! TIA An air-track glider attached to a spring oscillates...

    Parts A-D are from the below information! TIA An air-track glider attached to a spring oscillates between the 15.0 cm mark and the 61.0 cm mark on the track. The glider completes 10.0 oscillations in 31.0 s . Part A) What is the period of the oscillations? Express your answer in seconds. Part B) What is the frequency of the oscillations? Express your answer in hertz. Part C) What is the amplitude of the oscillations? Express your answer in centimeters....

  • An air-track glider attached to a spring oscillates with a period of 1.50s . At t=0s...

    An air-track glider attached to a spring oscillates with a period of 1.50s . At t=0s the glider is 5.40cm left of the equilibrium position and moving to the right at 39.2cm/s . Part A What is the phase constant? ?o = Part B What is the phase at t=0.5s? ?= Part C What is the phase at t=1.0s? ? = Express your answer to three significant figures and include the appropriate units. Part D What is the phase at...

  • An air-track glider of mass 0.100 kg is attached to the end of a horizontal air...

    An air-track glider of mass 0.100 kg is attached to the end of a horizontal air track by a spring with force constant 20.0 N/m. Initially the spring is unstreched and the glider is moving at 1.50 m/s to the right. With the air track turned off, the coefficient of kinetic friction is μk=0.47. It can be shown that with the air track turned off, the glider travels 8.6 cm before it stops instantaneously. If the coefficient of static friction...

  • Please help this question has two parts! An air-track glider is attached to a spring. The...

    Please help this question has two parts! An air-track glider is attached to a spring. The glider is pulled to the right and released from rest at t = 0 s. It then oscillates with a period of 1.9 s and a maximum speed of 34 cm/s . Part A) What is the amplitude of the oscillation?   Express your answer in centimeters......A=?? Part B) What is the gliders position at t=23s? X=??cm

  • An object with mass 3.0 kg is executing simple harmonic motion, attached to a spring with...

    An object with mass 3.0 kg is executing simple harmonic motion, attached to a spring with spring constant 290 N/m . When the object is 0.016 m from its equilibrium position, it is moving with a speed of 0.50 m/s . a) Calculate the amplitude of the motion. Express your answer to two significant figures and include the appropriate units. b) Calculate the maximum speed attained by the object. Express your answer to two significant figures and include the appropriate...

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