R m 10 The figure above represents a small, flat puck with mass m = 2.40 kg sliding on a frictionless, horizontal surface. It is held in a circular orbit about a fixed axis by a rod with negligible mass and length R = 1.50 m, pivoted at one end. Initially, the puck has a speed of v= 5.00 m/s. A 1.30-kg ball of putty is dropped vertically onto the puck from a small distance above it and immediately sticks to the puck. 1. What is the new period of rotation? [Select] II. Is the angular momentum of the puck-putty system about the axis of rotation constant in this process? [Select] III. Is the momentum of the system constant in the process of the putty sticking to the puck? [Select] IV. Is the mechanical energy of the system constant in the process? [Select]

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Chapter1: Units, Trigonometry. And Vectors
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The figure above represents a small, flat puck with mass m = 2.40 kg sliding on a frictionless, horizontal surface. It is
held in a circular orbit about a fixed axis by a rod with negligible mass and length R = 1.50 m, pivoted at one end.
Initially, the puck has a speed of v = 5.00 m/s. A 1.30-kg ball of putty is dropped vertically onto the puck from a small
distance above it and immediately sticks to the puck.
1. What is the new period of rotation? [Select]
II. Is the angular momentum of the puck-putty system about the axis of rotation constant in this process?
[Select]
Y
III. Is the momentum of the system constant in the process of the putty sticking to the puck?
[Select]
IV. Is the mechanical energy of the system constant in the process? [Select]
Transcribed Image Text:R m 1 x 1Q The figure above represents a small, flat puck with mass m = 2.40 kg sliding on a frictionless, horizontal surface. It is held in a circular orbit about a fixed axis by a rod with negligible mass and length R = 1.50 m, pivoted at one end. Initially, the puck has a speed of v = 5.00 m/s. A 1.30-kg ball of putty is dropped vertically onto the puck from a small distance above it and immediately sticks to the puck. 1. What is the new period of rotation? [Select] II. Is the angular momentum of the puck-putty system about the axis of rotation constant in this process? [Select] Y III. Is the momentum of the system constant in the process of the putty sticking to the puck? [Select] IV. Is the mechanical energy of the system constant in the process? [Select]
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