2. A block of ice of mass 50.0 g slides along a frictionless, frozen lake at a speed of 0.30 m/s. It collides with a 100.0 g block of ice that is sliding in the same direction at 0.25 m/s. The two blocks stick together. a. Draw a diagram of the system before and after the collision. b. How fast are the two blocks moving after the collision? C. How much kinetic energy is lost?

Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter11: Energy And Its Conservation
Section11.2: Conservation Of Energy
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2. A block of ice of mass 50.0 g slides along a frictionless, frozen lake
at a speed of 0.30 m/s. It collides with a 100.0 g block of ice that is
sliding in the same direction at 0.25 m/s. The two blocks stick
together.
a. Draw a diagram of the system before and after the collision.
b. How fast are the two blocks moving after the collision?
C. How much kinetic energy is lost?
Transcribed Image Text:2. A block of ice of mass 50.0 g slides along a frictionless, frozen lake at a speed of 0.30 m/s. It collides with a 100.0 g block of ice that is sliding in the same direction at 0.25 m/s. The two blocks stick together. a. Draw a diagram of the system before and after the collision. b. How fast are the two blocks moving after the collision? C. How much kinetic energy is lost?
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