A concurrent force system in space is composed of three forces described as follows: P1 has a magnitude of 100 kN and acts through the origin and points x=3, y=4, z=2. P2 has a magnitude of 60 kN and acts through the origin and points x= 4, y=1, 2=-2. P3 has a magnitude of 80 kN and acts through the origin and points x= 2, y=-3, z=3. a) Determine the x-component of the resultant force. b) Determine the y-component of the resultant force. c) Determine the z-component of the resultant force.

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter2: Basic Operations With Force Systems
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Engineering Mechanics

A concurrent force system in space is composed of three forces described as
follows: P1 has a magnitude of 100 kN and acts through the origin and points
x=3, y=4, z=2. P2 has a magnitude of 60 kN and acts through the origin and
points x= 4, y=1, 2=-2. P3 has a magnitude of 80 kN and acts thrQugh the
origin and points x= 2, y=-3, z=3.
a) Determine the x-component of the resultant force.
b) Determine the y-component of the resultant force.
c) Determine the z-component of the resultant force.
Transcribed Image Text:A concurrent force system in space is composed of three forces described as follows: P1 has a magnitude of 100 kN and acts through the origin and points x=3, y=4, z=2. P2 has a magnitude of 60 kN and acts through the origin and points x= 4, y=1, 2=-2. P3 has a magnitude of 80 kN and acts thrQugh the origin and points x= 2, y=-3, z=3. a) Determine the x-component of the resultant force. b) Determine the y-component of the resultant force. c) Determine the z-component of the resultant force.
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