Assume the xy plane is level ground, and that the vertical pole shown in the diagram lies along the z-axis with its base at the origin. If the pole is 5 m tall, and a rope is used to pull on the top of the pole with a force of 400 N as shown, determine the magnitudes of the parallel and perpendicular components of the force vector with respect to the axis of the post i.e. with respect to the z-axis. Z F = 400 N A (2, 3) m

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter1: Introduction To Statics
Section: Chapter Questions
Problem 1.48P: The pole OB is subjected to the 6004b force at B. Determine (a) the rectangular components of the...
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Assume the xy plane is level ground, and that the vertical pole shown in the diagram lies along the z-axis 
with its base at the origin.  If the pole is 5 m tall, and a rope is used to pull on the top of the pole with a 
force of 400 N as shown, determine the magnitudes of the parallel and perpendicular components of the 
force vector with respect to the axis of the post i.e. with respect to the z-axis.

Assume the xy plane is level ground, and that the vertical pole shown in the diagram lies along the z-axis
with its base at the origin. If the pole is 5 m tall, and a rope is used to pull on the top of the pole with a
force of 400 N as shown, determine the magnitudes of the parallel and perpendicular components of the
force vector with respect to the axis of the post i.e. with respect to the z-axis.
Z
F = 400 N
A (2, 3) m
Transcribed Image Text:Assume the xy plane is level ground, and that the vertical pole shown in the diagram lies along the z-axis with its base at the origin. If the pole is 5 m tall, and a rope is used to pull on the top of the pole with a force of 400 N as shown, determine the magnitudes of the parallel and perpendicular components of the force vector with respect to the axis of the post i.e. with respect to the z-axis. Z F = 400 N A (2, 3) m
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