Question
please answer question 18

15. If at time t 0 the mass is at the equilíbrimm position and moving up, which of the following secribe the position of the
0 0
Add a comment Improve this question Transcribed image text
Answer #1

21 s o m yen Ming Velu llo

Add a comment
Know the answer?
Add Answer to:
please answer question 18 15. If at time t 0 the mass is at the equilíbrimm...
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
  • please give me the answer to all of them thank you 8. -0 points My Notes...

    please give me the answer to all of them thank you 8. -0 points My Notes Ask Your Teacher A particle with a mass of 0.340 kg is attached to a horizontal spring with a force constant of 3.0ō N m At the moment t moving to the left. (Assume that the positive direction is to the right.) 0 the partice has s maximum speed of 75ms and s (a) Determine the particle's equation of motion, specifying its position as...

  • please show all work. need help with question c,d,e Name Problem 3 A standing wave is setup c 1 a string at the third harmonic (n-3), as seen in the figure. The length of the s ring is 0.350 m, th...

    please show all work. need help with question c,d,e Name Problem 3 A standing wave is setup c 1 a string at the third harmonic (n-3), as seen in the figure. The length of the s ring is 0.350 m, the tension in the string is 2.44 N and the mass per unit lengtl is 0.100 kg/m. (5 Points)/ a) What is the wavelength a ad frequency fof the standing wave? 5 points)b) If the amplitude of the v ave...

  • A simple harmonic oscillator at the position x=0 generates a wave on a string. The oscillator...

    A simple harmonic oscillator at the position x=0 generates a wave on a string. The oscillator moves up and down at a frequency of 40.0 Hz and with an amplitude of 3.00 cm. At time t = 0, the oscillator is passing through the origin and moving down. The string has a linear mass density of 50.0 g/m and is stretched with a tension of 5.00 N. A simple harmonic oscillator at the position x = 0 generates a wave...

  • can someone please help with b,c,d,e. Please show all work. Problems A standing wave s setup...

    can someone please help with b,c,d,e. Please show all work. Problems A standing wave s setup c 1 a string at the third harmonic (n-3), as seen in the figure. The length of the s ring is l 0.350 m, the tension in the string is 2.44 N and the mass per unit lengti is 0.100 kg/m. (5 Points) a) What is the wavelength i nd frequency fof the standing wave? (5 points) /b) If the amplitude of the v...

  • At t = 0, a 795 g mass at rest on the end of a horizontal...

    At t = 0, a 795 g mass at rest on the end of a horizontal spring (k = 125 N/m) is struck by a hammer, which gives it an initial speed of 2.77 m/s. (a) Determine the period of the motion. (give answer in s) Determine the frequency of the motion. (give answer in Hz) (b) Determine the amplitude. (in m) (c) Determine the maximum acceleration. (in  m/s2) (d) Determine the position as a function of time.   give answer in...

  • Need help with 18 and 20 17. A point on the rim of a 0.8 m...

    Need help with 18 and 20 17. A point on the rim of a 0.8 m radius rotating wheel has a centripetal acceleration of 7 m/s. What is the angular velocity of a point 0.10 m from the center of the wheel? A) 6.4 rad's (リ2.24 rad/s C) 2.96 rad/s D) 0.1143 rad/s E) 1.28 rad/s 18. A 12 kg block rests on a 31° inclined frictionless surface and is attached by a non-slipping light string over a pulley of...

  • Please answer the exercise 9.2. I have included the spectrums. Please review attached images and table to help answer questions. Match the compounds to their corresponding spectrums. Thank you very mu...

    Please answer the exercise 9.2. I have included the spectrums. Please review attached images and table to help answer questions. Match the compounds to their corresponding spectrums. Thank you very much! Match each spectrum in exercise 9.2 of your text (pages 449-450) to a compound on the right. Remember that you can use Table 9.2 on page 439 to solve these puzzles along with some of the reading. cycloheptene H2N 4-methylaniline CI p-dichlorobenzene ethynylbenzene 3-methylphenol odobenzene Choose... Exercise 9.2 spectrum...

  • Please help with #3 ( a multi-part question) 2. When a 100 H tor is used...

    Please help with #3 ( a multi-part question) 2. When a 100 H tor is used to generate a sinusoidal wave on a certain string the z oscilla wavelength is 10 cm. When the tension in the string is doubled the generator produces a wave with a frequency and wavelength? The figure to the right shows a transverse harmonic wave moving to the right with a speed of 10 m/s and a wavelength of 25 cm 3. /u 13 m...

  • the wave function for a traveling wave on a taut string is (in si units) y(x,t)...

    the wave function for a traveling wave on a taut string is (in si units) y(x,t) = 0.360 sin (15pi -2pix + pi/4) Assignment #20 - PHYS 2213, Fal x + → C webassion.net/web/Student/Assignment-Responses/submit?dep=22560947&ta Jx 082 If you know the number of waves that come past every second (the frequency) and the length Need Help? 2. 2/6 points Previous Answers SerPSE 10 16.2.OP.007.MI. The wave function for a traveling wave on a taut string is (in SI units) x(xt) -...

  • just need to double check my answers please answer 17-22 33.3 Hz ) 333 HZ )...

    just need to double check my answers please answer 17-22 33.3 Hz ) 333 HZ ) 3.35 110 temperature of the air increases, what happens to the velocity of sound? (Assume all other factors remain the same) a) increases b) decreases ca d) none of the given cases c) does not change m. What is the period of the wave? monic wave travels with a speed of 200 m/s and has a wavelength of 0.800 a) 40 s ) 250...

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