Solved: A mass of 100 grams is attached to a spring whose constant is 1600 dynes/cm

Chapter 3, Problem 36

(choose chapter or problem)

A mass of 100 grams is attached to a spring whose constant is 1600 dynes/cm. After the mass reaches equilibrium, its support oscillates according to the formula h(t) = sin St, where h represents displacement from its original position. See and Figure 3.8.21. (a) In the absence of damping, determine the equation of motion if the mass starts from rest from the equilibrium position. (b) At what times does the mass pass through the equilibrium position? (c) At what times does the mass attain its extreme displacements? (d) What are the maximum and minimum displacements? (e) Graph the equation of motion.

Unfortunately, we don't have that question answered yet. But you can get it answered in just 5 hours by Logging in or Becoming a subscriber.

Becoming a subscriber
Or look for another answer

×

Login

Login or Sign up for access to all of our study tools and educational content!

Forgot password?
Register Now

×

Register

Sign up for access to all content on our site!

Or login if you already have an account

×

Reset password

If you have an active account we’ll send you an e-mail for password recovery

Or login if you have your password back