Question

Derive a formula for the maximum speed vmax of a mass on a spring in terms...

Derive a formula for the maximum speed vmax of a mass on a spring in terms of the spring constant k and the amplitude A. At what point in the motion is the mass moving at maximum speed? At what point is the mass moving at half of the maximum speed?

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
Derive a formula for the maximum speed vmax of a mass on a spring in terms...
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
  • Derive a formula for the maximum speed vmax of a simple pendulum bob in terms of...

    Derive a formula for the maximum speed vmax of a simple pendulum bob in terms of g, the length L, and the maximum angle of swing emax Express your answer in terms of the variables L, g, and max ΑΣ 28s COS Vmax = max Submit

  • Derive a formula for the maximum speed vmax of a simple pendulum bob in terms of...

    Derive a formula for the maximum speed vmax of a simple pendulum bob in terms of g, the length ℓ, and the maximum angle of swing θmax. NOTE!! When entering a trig function of an angle, use parentheses around the argument of the trig function. For instance, enter cos( θmax) rather than cos θmax.

  • A spring-mass system is in simple harmonic motion. How do the period, maximum speed, frequency, and...

    A spring-mass system is in simple harmonic motion. How do the period, maximum speed, frequency, and total mechanical energy of the oscillator change after each of the following alterations (up, down or no change): a) Spring constant (k) is increased? b) Amplitude id increased? c) Mass is decreased?

  • a. What physical quantities might affect the period? (you found one in 2.3) the mass attached...

    a. What physical quantities might affect the period? (you found one in 2.3) the mass attached to the shina (m) and tme shftyass ot mu sprines (k Now that we know what variables our result should depend on, let's carry on b. What is the total distance, in terms of the amplitude A, traveled by the mass during one complete cycle? Assume that the average speed vave of the mass during 1 complete cycle is half the mass's maximum speed...

  • An object with mass 3.5 kg is attached to a spring with spring stiffness constant k...

    An object with mass 3.5 kg is attached to a spring with spring stiffness constant k = 250 N/m and is executing simple harmonic motion. When the object is 0.020 m from its equilibrium position, it is moving with a speed of 0.55 m/s. (a) Calculate the amplitude of the motion. _______________________________ m (b) Calculate the maximum velocity attained by the object. [Hint: Use conservation of energy.] _______________________________ m/s

  • A simple harmonic oscillator consists of a block attached to a spring, moving back and forth...

    A simple harmonic oscillator consists of a block attached to a spring, moving back and forth on a frictionless horizontal surface. Suppose the mass of the box is 5.0 kg. The motion is started by holding the box at .50m from its central position, using a force of 40.0 N. Then the box is let go and allowed to perform simple harmonic motion. What is the amplitude of the motion? What is the spring constant k? What is the maximum...

  • 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...

  • An object with mass 2.3 kg is executing simple harmonic motion, attached to a spring with...

    An object with mass 2.3 kg is executing simple harmonic motion, attached to a spring with spring constant 270 N/m . When the object is 0.015 mfrom its equilibrium position, it is moving with a speed of 0.65 m/s . A) Calculate the amplitude of the motion. B) Calculate the maximum speed attained by the object.

  • Block and Spring in SHM with damping A block of mass 8.50 g on the end...

    Block and Spring in SHM with damping A block of mass 8.50 g on the end of spring undergoes simple harmonic motion with a frequency of 9.00 Hz. What is the spring constant of the spring? If the motion of the mass has an initial amplitude of 6.00 cm what is its maximum speed?. The amplitude decreases to 1.335 cm in 1.78 s, what is the damping constant for the system?

  • A simple harmonic oscillator consists of a block attached to a spring, moving back and forth...

    A simple harmonic oscillator consists of a block attached to a spring, moving back and forth on a frictionless horizontal surface. Suppose the mass of the box is 5.0 kg. The motion is started by holding the box at 0.50 m from its central position, using a force of 40.0 N. Then the box is let go and allowed to perform simple harmonic motion. (a) What is the amplitude of the motion? (b) What is the spring constant k? (c)...

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