Problem 1 ( )A block of mass m=15 Kg with initial velocity <13,0,0 > m/s is sliding on a horizontal floor, where the coefficient of kinetic friction is equal to 0. 5. At the end, the block comes to a stop. (Take g=9.8 m/s2). d) ( -) Find the magnitude of the normal force exerted by the floor on the block. |FN|= e) Find the magnitude of the friction force. f) (: ) What is the direction of the friction force? The friction force is directed along: g) ) Find FNet.

College Physics
10th Edition
ISBN:9781285737027
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter4: The Laws Of Motion
Section4.5: Applications Of Newton's Laws
Problem 4.6QQ: For the woman being pulled forward on the toboggan in Figure 4.33, is the magnitude of the normal...
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Problem 1 (
) A block of mass m=15 Kg with initial velocity <13, 0,0 >
m/s is sliding on a horizontal floor, where the coefficient of kinetic friction is
equal to 0. 5. At the end, the block comes to a stop. (Take g=9.8 m/s²).
d) ( ) Find the magnitude of the normal force exerted by the floor on the
block.
|FN|=
e)
Find the magnitude of the friction force.
f) (!
) What is the direction of the friction force?
The friction force is directed along:
g)
) Find FNet·
FNet
h) (
How long will it takes to the block to come to a stop?
At =
Transcribed Image Text:Problem 1 ( ) A block of mass m=15 Kg with initial velocity <13, 0,0 > m/s is sliding on a horizontal floor, where the coefficient of kinetic friction is equal to 0. 5. At the end, the block comes to a stop. (Take g=9.8 m/s²). d) ( ) Find the magnitude of the normal force exerted by the floor on the block. |FN|= e) Find the magnitude of the friction force. f) (! ) What is the direction of the friction force? The friction force is directed along: g) ) Find FNet· FNet h) ( How long will it takes to the block to come to a stop? At =
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