tuter of an ice rink. When unst one another the 45-kg skater acquires a speed Or 0.62 m/s. If the speed of the other skater is 0.89 m/s,what is this BIO Concus 3.3-kg craniu cerebrospina the cranium J3. skater's mass? 24. A0.042-kg pet lab mouse sits on a 0.35-kg air-track cart, as shown 2800 N for in FIGURE 9-27. The cart is at rest, as is a second cart with a mass of speed of th with the b 0.25 kg. The lab mouse now jumps to the second cart. After the jump, the 0.35-kg cart has a speed of v, 0.88 m/s. What is the speed v, of the mouse and the 0.25-kg cart? together. external %3D ues to m front of what av 34. * Tw 0.35 kg 0.25 kg tions i lide, a is the (a) Before the jump kinet sive V2 SECTIC V1 35. In 0.25 kg ve 0.35 kg ar 36. • (b) After the jump to ally at rest breaks into two pieces as the result of rgy of the other FIGURE 9-27 Problem 24
tuter of an ice rink. When unst one another the 45-kg skater acquires a speed Or 0.62 m/s. If the speed of the other skater is 0.89 m/s,what is this BIO Concus 3.3-kg craniu cerebrospina the cranium J3. skater's mass? 24. A0.042-kg pet lab mouse sits on a 0.35-kg air-track cart, as shown 2800 N for in FIGURE 9-27. The cart is at rest, as is a second cart with a mass of speed of th with the b 0.25 kg. The lab mouse now jumps to the second cart. After the jump, the 0.35-kg cart has a speed of v, 0.88 m/s. What is the speed v, of the mouse and the 0.25-kg cart? together. external %3D ues to m front of what av 34. * Tw 0.35 kg 0.25 kg tions i lide, a is the (a) Before the jump kinet sive V2 SECTIC V1 35. In 0.25 kg ve 0.35 kg ar 36. • (b) After the jump to ally at rest breaks into two pieces as the result of rgy of the other FIGURE 9-27 Problem 24
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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What is the numeric answer to problem #24 on page 293? This is a fairly challenging problem.
Just remember that Momentum is conserved __________________
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