Question

A simple pendulum of length L oscillates back and forth. If this length is changed by...

A simple pendulum of length L oscillates back and forth. If this length is changed by a factor of 1.200, by what factor does the frequency of the oscillation change?
0 0
Add a comment Improve this question Transcribed image text
Answer #1

f1/f2 = √(L2/L1) = √1.2

f2/f1 = 1/√1.2 = 0.913 times

Add a comment
Know the answer?
Add Answer to:
A simple pendulum of length L oscillates back and forth. If this length is changed by...
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
  • 10) Simple pendulum A swings back and forth at twice the frequency of simple pendulum statement...

    10) Simple pendulum A swings back and forth at twice the frequency of simple pendulum statement is correct?10) w A) Amplitude of pendulum A is twice that of B. B) Amplitude of B is twice of A. C) Amplitude can not be determined from data given. D) Amplitude of A is 1.41 that of B. E) Amplitude of B is 1.41 that of A. in trinled the time required for one complete vibrat

  • Physics 1032, Section 601 Worksheet #1 January 23, 2019 A BASIC PENDULUM Consider a pendulum with...

    Physics 1032, Section 601 Worksheet #1 January 23, 2019 A BASIC PENDULUM Consider a pendulum with a length L 1.00 m and a mass m 0.50 kg attached at the end of it. At time i Ξ Ο 00 s, the pendulum has a deflection θ ores eo 0.080 rid. The velocity v of the mass is v 0.00 rad/sec. (The abbreviation rad stands for radians, Angles can be measured in degrees or radians. The conversion factor is 2 radians...

  • A simple pendulum of 2 m length is raised 40 cm high and left to oscillate...

    A simple pendulum of 2 m length is raised 40 cm high and left to oscillate in simple harmonic motion 1. Draw the diagram 2. Calculate the tension in the string when the pendulum is in stationary position. 3. What kind of energy is stored in a pendulum at extreme positions?.Calculate the energy. 4. As the pendulum oscillates through its equilibrium position, calculate its velocity. 5. How much time does it take to complete one Oscillation? 6. How many oscillations...

  • The length of a simple pendulum is 0.66 m, the pendulum bob has a mass of...

    The length of a simple pendulum is 0.66 m, the pendulum bob has a mass of 305 grams, and it is released at an angle of 11° to the vertical. (a) With what frequency does it vibrate? Assume SHM. Hz (b) What is the pendulum bob's speed when it passes through the lowest point of the swing? m/s (c) What is the total energy stored in this oscillation, assuming no losses? J My Notes Ask Your Teacher 8. -13 points...

  • 15) In an electric shaver, the blade moves back and forth over a stance of 2.0 mm in simple harmo...

    15) In an electric shaver, the blade moves back and forth over a stance of 2.0 mm in simple harmonic motion, with frequency 100 Hz. Find (a) the amplitude, (b) the maximum blade speed, and (c) the magnitude of the maximum blade acceleration. 20 An oscillating block-spring system has a mechanical energy of 2.00 J, an amplitude of 10.0 cm, and a maximum speed of 0.800 m/s. Find (a) the spring constant, (b) the mass of the block, and (c)...

  • A pendulum has a length of 64.5m. How many times does it move back and forth...

    A pendulum has a length of 64.5m. How many times does it move back and forth each day?

  • A 0.45 kg block oscillates back and forth along a straight line on a frictionless horizontal...

    A 0.45 kg block oscillates back and forth along a straight line on a frictionless horizontal surface. Its displacement from the origin is given by x = (12 cm)cos[(17 rad/s)t + p/2 rad] (a) What is the oscillation frequency (in Hz)? (b) What is the maximum speed acquired by the block? (c) At what value of x does this occur? (d) What is the magnitude of the maximum acceleration of the block? (e) At what positive value of x does...

  • A pendulum swings back and forth. The pendulum is a one-dimensional rod that is connected to...

    A pendulum swings back and forth. The pendulum is a one-dimensional rod that is connected to a disk. The length of the rod is L and the radius of the disk is R. The mass of each object is M0. At this point, we know: M0, L, R, and g Part A: What is the angular acceleration of the swinging pendulum when it at angle θ relative to vertical? Counterclockwise is the positive direction. Answer in known quantities and simplify...

  • 17 4 points Periodic motion: A simple pendulum oscillates with a small amplitude and the frequency...

    17 4 points Periodic motion: A simple pendulum oscillates with a small amplitude and the frequency fo. If the length of the pendulum is doubled, what is the new frequency of its motion? Ofo/v2 2/ V2/ fo/2 Ofo

  • A small object oscillates back and forth at the bottom of a frictionless hemispherical bowl, as...

    A small object oscillates back and forth at the bottom of a frictionless hemispherical bowl, as the drawing illustrates. The radius of the bowl is R, and the angle is small enough that the object oscillates in simple harmonic motion. Derive an expression for the angular frequency w of the motion. Express your answer in terms of R and g, the magnitude of the acceleration due to gravity. Hemispherical bowl R

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