Question

A wave pulse travels down a slinky. The mass of the slinky is m = 0.87...

A wave pulse travels down a slinky. The mass of the slinky is m = 0.87 kg and is initially stretched to a length L = 6.9 m. The wave pulse has an amplitude of A = 0.23 m and takes t = 0.482 s to travel down the stretched length of the slinky. The frequency of the wave pulse is f = 0.49 Hz.

If the new wave pulse has the same frequency, what is the new wavelength?

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
A wave pulse travels down a slinky. The mass of the slinky is m = 0.87...
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 wave pulse travels down a slinky. The mass of the slinky is m = 0.94...

    A wave pulse travels down a slinky. The mass of the slinky is m = 0.94 kg and is initially stretched to a length L = 7.4 m. The wave pulse has an amplitude of A = 0.23 m and takes t = 0.412 s to travel down the stretched length of the slinky. The frequency of the wave pulse is f = 0.45 Hz. 3)What is the average speed of a piece of the slinky as a complete wave...

  • A wave traveling on a Slinky® that is stretched to 4 m takes 4.19 s to...

    A wave traveling on a Slinky® that is stretched to 4 m takes 4.19 s to travel the length of the Slinky and back again. (a) What is the speed (in m/s) of the wave? Using the same Slinky® stretched to the same length, a standing wave is created which consists of seven antinodes and eight nodes. At what frequency (in Hz) must the Slinky be oscillating?

  • A longitudinal wave with a frequency of 29.0 Hz takes 1.2 s to travel the length...

    A longitudinal wave with a frequency of 29.0 Hz takes 1.2 s to travel the length of a 3.2 m Slinky (see the figure). Determine the wavelength of the wave. Answer in m. Please provide a detailed answer. Thank you! compressed region Stretched region Compressed region (a) (b) (c)

  • You and your lab partner pull a slinky across the hallway floor so that it is...

    You and your lab partner pull a slinky across the hallway floor so that it is stretched out to 10.0meters. Your partner shakes one end through five full cycles in two seconds. The first wave peak reaches you 0.50s after starting to shake. a) What is the wave speed? b) What is the frequency and wavelength? c) You tied your end of the slinky to a heavier rope under the same tension as the slinky. The new medium has twice...

  • A sinusoidal transverse wave travels along a long, stretched string. The amplitude of this wave is...

    A sinusoidal transverse wave travels along a long, stretched string. The amplitude of this wave is 0.0863 m, its frequency is 2.89 Hz, and its wavelength is 1.13 m. What is the shortest transverse distance d between a maximum and a minimum of the wave? d = m How much time At is required for 75.7 cycles of the wave to pass a stationary observer? At = S Viewing the whole wave at any instant, how many cycles N are...

  • A sinusoidal transverse wave travels along a long, stretched string. The amplitude of this wave is...

    A sinusoidal transverse wave travels along a long, stretched string. The amplitude of this wave is 0.0923 m, its frequency is 2.69 Hz, and its wavelength is 1.75 m. (a) What is the shortest transverse distance between a maximum and a minimum of the wave? shortest transverse distance: (b) How much time is required for 51.5 cycles of the wave to pass a stationary observer? time to pass a stationary observer: (c) Viewing the whole wave at any instant, how...

  • A sinusoidal transverse wave travels along a long, stretched string. The amplitude of this wave is...

    A sinusoidal transverse wave travels along a long, stretched string. The amplitude of this wave is 0.0921 m, its frequency is 3.95 Hz, and its wavelength is 1.31 m. (a) What is the shortest transverse distance between a maximum and a minimum of the wave? shortest transverse distance: (b) How much time is required for 58.5 cycles of the wave to pass a stationary observer? time to pass a stationary observer: (c) Viewing the whole wave at any instant, how...

  • 3. A fisher man notices that his boat is moving up and down periodic aly, owing...

    3. A fisher man notices that his boat is moving up and down periodic aly, owing to waves on the surface of the water takes 2.5 s for the boat to go from highest to the lowest position 2.A m below the highest poin The the wave crests are 4,8 m apart. Pind a. Time period of the oscillation of the boat b. Wavelength,frequency and velocity of the e. The amplitude of the wave d. The amplitude of the vibration...

  • 10-15 pls 010 10.0 points A sinusoidal transverse wave travels along a wire of linear density...

    10-15 pls 010 10.0 points A sinusoidal transverse wave travels along a wire of linear density 8.34 g/m. The wave has amplitude 1.2 cm, frequency 132 Hz and wavelength 3.07 m What is the tension of the wire? Answer in units of N 011 (part 1 of 2) 10.0 points A standing wave is formed on a string that is 32 m long, has a mass per unit length 0.00512 kg/m, and is stretched to a tension of 18 N...

  • A 9 m wire with a mass of 448 g, is under tension. A transverse wave,...

    A 9 m wire with a mass of 448 g, is under tension. A transverse wave, for which the frequency is 894 Hz, the wavelength is 0.4 m, and the amplitude is 4.0 mm, is propagating on the wire. The time for a crest of this wave to travel the length of the wire, in ms, is closest to

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