M1 M2 |M2 Before Collision After Collision TOP VIEWS A system consists of a ball of mass M2 and a uniform rod of mass M1 and a length d. The rod is attached to a horizontal frictionless table by a pivot at point P and initially rotates at an angular speed w, as shown above left. The rotational inertia of the rod about point P is (1/3) Mid The rod strikes the ball, which is initially at rest. As a result of this collision, the rod is stopped and the ball moves in the direction shown above right. Express all answers in terms of M1, M2, w, d, and fundamental constants. a. Derive an expression for the angular momentum of the rod about point P before the collision. b. Derive an expression for the speed v of the ball after the collision. C. Assuming this collision is elastic. calculate the numerical value of the ratio of M/ M,.

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter13: Rotation Ii: A Conservation Approach
Section: Chapter Questions
Problem 73PQ: A uniform disk of mass m = 10.0 kg and radius r = 34.0 cm mounted on a frictionlessaxle through its...
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M1
M2
M2
Before Collision
After Collision
TOP VIEWS
A system consists of a ball of mass M2 and a uniform rod of mass M1 and a length d. The rod is
attached to a horizontal frictionless table by a pivot at point P and initially rotates at an angular
speed w, as shown above left. The rotational inertia of the rod about point P is (1/3) Mid
The rod strikes the ball, which is initially at rest. As a result of this collision, the rod is stopped and the
ball moves in the direction shown above right. Express all answers in terms of M1, M2, w, d, and
fundamental constants.
a. Derive an expression for the angular momentum of the rod about point P before the collision.
b. Derive an expression for the speed v of the ball after the collision.
C. Assuming this collision is elastic. calculate the numerical value of the ratio of M/ M.
d. A new ball with the same mass M,as the rod is now placed a
distance x from the pivot, as shown above. Again assuming the
collision is elastic, for what value of x will the rod stop moving
after hitting the ball? Hint: Find the velocity of the ball after the
collision first?
Before Collision
Transcribed Image Text:M1 M2 M2 Before Collision After Collision TOP VIEWS A system consists of a ball of mass M2 and a uniform rod of mass M1 and a length d. The rod is attached to a horizontal frictionless table by a pivot at point P and initially rotates at an angular speed w, as shown above left. The rotational inertia of the rod about point P is (1/3) Mid The rod strikes the ball, which is initially at rest. As a result of this collision, the rod is stopped and the ball moves in the direction shown above right. Express all answers in terms of M1, M2, w, d, and fundamental constants. a. Derive an expression for the angular momentum of the rod about point P before the collision. b. Derive an expression for the speed v of the ball after the collision. C. Assuming this collision is elastic. calculate the numerical value of the ratio of M/ M. d. A new ball with the same mass M,as the rod is now placed a distance x from the pivot, as shown above. Again assuming the collision is elastic, for what value of x will the rod stop moving after hitting the ball? Hint: Find the velocity of the ball after the collision first? Before Collision
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