A ball of clay with a mass of 0.950 k is initially traveling towards the floor with a speed of 0 meters per second (m/s), at an angle of 33.0 degrees below the horizontal. The ball sticks to die floor, coming to a complete stop 0.125 seconds after making contact. y before 33.0° after 3.80 m/s a) What is the average force that the floor exerts on the ball during the collision? Give both the magnitude (in Newtons) and the direction (as an angle in degrees from the
A ball of clay with a mass of 0.950 k is initially traveling towards the floor with a speed of 0 meters per second (m/s), at an angle of 33.0 degrees below the horizontal. The ball sticks to die floor, coming to a complete stop 0.125 seconds after making contact. y before 33.0° after 3.80 m/s a) What is the average force that the floor exerts on the ball during the collision? Give both the magnitude (in Newtons) and the direction (as an angle in degrees from the
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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B)how much kinetic energy is lost during the collision with the floor? Answer in joules

Transcribed Image Text:A ball of clay with a mass of 0.950 kg is initially traveling towards the floor with a speed of 3.80
meters per second (m/s), at an angle of 33.0 degrees below the horizontal. The ball sticks to the
floor, coming to a complete stop 0.125 seconds after making contact.
y
before
33.0°
after
3.80 m/s
X
a) What is the average force that the floor exerts on the ball during the collision? Give
both the magnitude (in Newtons) and the direction (as an angle in degrees from the
ty ovie
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