Question

.A car is found to have a normal frequency of 0.25 Hz without passengers. The frequency...

.A car is found to have a normal frequency of 0.25 Hz without passengers. The frequency is altered by 70% when 5 passengers sit in the car (average weight 685.7 N). Find the mass and effective spring constant of the car.

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
.A car is found to have a normal frequency of 0.25 Hz without passengers. The frequency...
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
  • When a 0.850-kg mass oscillates on an ideal spring, the frequency is 1.55 Hz . What...

    When a 0.850-kg mass oscillates on an ideal spring, the frequency is 1.55 Hz . What will the frequency be if 0.160 kg are added to the original mass? Try to solve this problem without finding the force constant of the spring. What will the frequency be if 0.160 kg are subtracted from the original mass? Try to solve this problem without finding the force constant of the spring.

  • An automobile can be considered to be mounted on four identical springs as far as vertical...

    An automobile can be considered to be mounted on four identical springs as far as vertical oscillations are concerned. The springs of a certain car are adjusted so that the oscillations have a frequency of 2 Hz. (a) What is the spring constant of each spring if the mass of the car is 1250 kg and the weight is evenly distributed over the springs? My Work: ω = 2πf = 2π(2Hz) = 12.56637061 rad/s; k = mω2 = [1250kg(12.56637061 rad/s)^2]/4...

  • The weight applied to one side of the bonnet of the car is around 750 N....

    The weight applied to one side of the bonnet of the car is around 750 N. The spring constant of the spring in the car is 25kN/m. The mass of the car is listed in the handbook as 1120 kg. Calculate the natural frequency of the car suspension. (Remember that a car has four parallel springs in the suspension system) ANSWER: [1.5 Hz] Whilst driving along a particularly undulating stretch of road the driver noticed that at a speed of...

  • Use the worked example above to help you solve this problem. A 1.28 x 103 kg...

    Use the worked example above to help you solve this problem. A 1.28 x 103 kg car is constructed on frame supported by four springs. Each spring has a spring constant riding in the car have a combined mass of 1.60 x 102 kg, find the frequency of is driven over a pothole in the road. Find also the period and the angular frequency. Assume the weight is evenly distributed. of 2.07 x 10 N/m. If two people vibration of...

  • Two different simple harmonic oscillators have the same natural frequency (f=1.70 Hz) when they are on...

    Two different simple harmonic oscillators have the same natural frequency (f=1.70 Hz) when they are on the surface of the Earth. The first oscillator is a vertical spring and mass, the second is a pendulum. If both systems are moved to the surface of the moon (g=1.67 m/s2), what is the new frequency of the vertical spring and mass? Tries 0/20 Calculate the new frequency of the pendulum.

  • 4. Using the mks units (meters-kilograms-seconds), suppose you have a spring with spring constant 4 N/m....

    4. Using the mks units (meters-kilograms-seconds), suppose you have a spring with spring constant 4 N/m. You want to use it to weigh items. Assume no friction. You place the mass on the spring and put it in motion. a) You count and find that the frequency is 0.8 Hz (cycles per second). What is the mass? b) Find a formula for the mass m given the frequency ω in Hz.

  • Suppose that a car weighing 4000 pounds is supported by four shock absorbers Each shock absorber has a spring constant of 6500 lbs/foot, so the effective spring constant for the system of 4 shock ab...

    1. Suppose that a car weighing 4000 pounds is supported by four shock absorbers Each shock absorber has a spring constant of 6500 lbs/foot, so the effective spring constant for the system of 4 shock absorbers is 26000 lbs/foot.1. Assume no damping and determine the period of oscillation of the vertical motion of the car. Hint: g= 32 ft/sec22. After 10 seconds the car body is 1 foot above its equilibrium position and at the high point in its cycle....

  • An 18000 kg freight car rests against a spring bumper at the end of a railroad...

    An 18000 kg freight car rests against a spring bumper at the end of a railroad track. The spring has constant k=3.2×10^5 N/m. The car is hit by a second car of 9400 kg mass moving at 8.0 m/s , and the two couple together. Find the maximum compression of the spring. Find the speed of the two cars when they rebound together from the spring.

  • 1-/7 points 1. Suppose that a car weighing 2000 pounds is supported by four shock absorbers...

    1-/7 points 1. Suppose that a car weighing 2000 pounds is supported by four shock absorbers Each shock absorber has a spring constant of 6250 lbs/foot, so the effective spring constant for the system of 4 shock absorbers is 25000 lbs/foot. 1. Assume no damping and determine the period of oscillation of the vertical motion of the car. Hint: g- 32 ft/sec2 25000.32 2. After 10 seconds the car body is 1 foot above its equilibrium position and at the...

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