A meter stick with a mass of 0.153 kg is pivoted about one end so it can rotate without friction about a horizontal axis. The meter stick is held in a horizontal position and released. As it swings through the vertical, calculate Part A As it swings through the vertical, calculate the change in gravitational potential energy that has occurred. Express your answer in joules. Requent Answer Subnit Part B Calculate the angular speed of the stick Express your answer in radians per second. ? rad/s Subrit Reouent Anwer Part C Calculate the linear speed of the end of the stick opposite the axis. Express your answer in meters per second.

icon
Related questions
Question
A meter stick with a mass of 0.153 kg is pivoted about one end so it
can rotate without friction about a horizontal axis. The meter stick is
held in a horizontal position and released. As it swings through the
vertical, calculate
Part A
As it swings through the vertical, calculate the change in gravitational potential energy that has occurred.
Express your answer in joules.
Hνα ΑΣφ
E =
J
Submit
Request Answer
Part B
Calculate the angular speed of the stick.
Express your answer in radians per second.
W =
rad/s
Submit
Request Answer
Part C
Calculate the linear speed of the end of the stick opposite the axis.
Express your answer in meters per second.
ΑΣφ.
m/s
Submit
Request Answer
Part D
Compare the answer in part C to the speed of a particle that has fallen 1.00 m, starting from rest.
Transcribed Image Text:A meter stick with a mass of 0.153 kg is pivoted about one end so it can rotate without friction about a horizontal axis. The meter stick is held in a horizontal position and released. As it swings through the vertical, calculate Part A As it swings through the vertical, calculate the change in gravitational potential energy that has occurred. Express your answer in joules. Hνα ΑΣφ E = J Submit Request Answer Part B Calculate the angular speed of the stick. Express your answer in radians per second. W = rad/s Submit Request Answer Part C Calculate the linear speed of the end of the stick opposite the axis. Express your answer in meters per second. ΑΣφ. m/s Submit Request Answer Part D Compare the answer in part C to the speed of a particle that has fallen 1.00 m, starting from rest.
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 4 steps

Blurred answer
Similar questions
  • SEE MORE QUESTIONS