Academic Integrity: tutoring, explanations, and feedback — we don’t complete graded work or submit on a student’s behalf.

A barbell consists of two identical masses, each of mas m, at the end of a massl

ID: 1770576 • Letter: A

Question

A barbell consists of two identical masses, each of mas m, at the end of a massless rod. We will treat the masses as point masses. The barbell is then rotated in a plane (in two dimensions ) about a point along the rod which is a distance L1 from one mass and L2 from the other. The barbell rotates at a constant angular velocity. Which of the following statements is correct?

A. The kinetic energy of the barbell is 0.5*m*(L12 + L22)*w2. The masses rotate at different linear speeds.

B. The kinetic energy of the barbell is 0.5*m*L2*w2, since the masses rotate at the same linear speed and L is the length of the barbell.

C. The kinetic energy of the barbell is 0.5*m*(L12 + L22)*w2. The masses rotate at the same linear speed, since they rotate together.

D. The kinetic energy of the barbell is 0.5*I*w2 , where I, the moment of inertia, is mL2. Here, L is the length of the rod.

Explanation / Answer

TRUE STATEMENT: The kinetic energy of the barbell is 0.5*m*(L12 + L22)*w2. The masses rotate at different linear speeds.

Answer A

Hire Me For All Your Tutoring Needs
Integrity-first tutoring: clear explanations, guidance, and feedback.
Drop an Email at
drjack9650@gmail.com
Chat Now And Get Quote