1. A hockey puck having a mass of 0.9 kg slides on the horizontal, frictionless surface of an ice rink. Four hockey sticks strike the puck simultaneously, exerting the forces on the puck shown in figure. Where F1 = 7N, F2 = 8N, F3 = 3N, F4 = 4N a) Determine both the magnitude and the direction of the puck’ net force b) Determine both the magnitude and the direction of the puck’ acceleration F2 70° 40° 20° 50° F3 F4
1. A hockey puck having a mass of 0.9 kg slides on the horizontal, frictionless surface of an ice rink. Four hockey sticks strike the puck simultaneously, exerting the forces on the puck shown in figure. Where F1 = 7N, F2 = 8N, F3 = 3N, F4 = 4N a) Determine both the magnitude and the direction of the puck’ net force b) Determine both the magnitude and the direction of the puck’ acceleration F2 70° 40° 20° 50° F3 F4
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter5: Newton's Laws Of Motion
Section: Chapter Questions
Problem 31PQ: A hockey stick pushes a 0.160-kg puck with constant force across the frictionless surface of an ice...
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![1. A hockey puck having a mass of 0.9 kg slides on the horizontal, frictionless surface of an ice rink. Four
hockey sticks strike the puck simultaneously, exerting the forces on the puck shown in figure. Where
F1 = 7N, F2 = 8N, F3 = 3N, F4 = 4N
a) Determine both the magnitude and the
direction of the puck’ net force
b) Determine both the magnitude and the
direction of the puck' acceleration
F2
F1
70°
40°
20°
50°
F3
FA](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F22a2f422-4b12-4138-a999-82f78df22d97%2F857820a6-1eaf-42fb-9e1b-561d34ce7b81%2Fasjp1br_processed.png&w=3840&q=75)
Transcribed Image Text:1. A hockey puck having a mass of 0.9 kg slides on the horizontal, frictionless surface of an ice rink. Four
hockey sticks strike the puck simultaneously, exerting the forces on the puck shown in figure. Where
F1 = 7N, F2 = 8N, F3 = 3N, F4 = 4N
a) Determine both the magnitude and the
direction of the puck’ net force
b) Determine both the magnitude and the
direction of the puck' acceleration
F2
F1
70°
40°
20°
50°
F3
FA
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