A 1,300 N shaft is held in place by a light wire at an angle 0 = 29.0° to the horizontal as shown in the figure. The shaft is attached to a pivot at the bottom, and a mass of weight w = 2,075 N hangs from its top. The shaft makes an angle of Q = 61.0° with the horizontal. Assume the shaft is uniform. m (a) Find the tension in the supporting wire (in KN). KN (b) Find the components of the reaction force (in kN) exerted by the floor on the shaft. horizontal component: magnitude direction KN right vertical component: magnitude direction KN upward

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter14: Static Equilibrium, Elasticity, And Fracture
Section: Chapter Questions
Problem 33PQ: Problems 33 and 34 are paired. One end of a uniform beam that weighs 2.80 102 N is attached to a...
Question
A 1,300 N shaft is held in place by a light wire at an angle 0 = 29.0° to the horizontal as shown in the figure. The shaft is
attached to a pivot at the bottom, and a mass of weight w = 2,075 N hangs from its top. The shaft makes an angle of
Q = 61.0° with the horizontal. Assume the shaft is uniform.
A
31
m
(a) Find the tension in the supporting wire (in kN).
KN
(b) Find the components of the reaction force (in kN) exerted by the floor on the shaft.
horizontal component:
magnitude
direction
KN
right
vertical component:
magnitude
direction
upward
KN
¾ >
Transcribed Image Text:A 1,300 N shaft is held in place by a light wire at an angle 0 = 29.0° to the horizontal as shown in the figure. The shaft is attached to a pivot at the bottom, and a mass of weight w = 2,075 N hangs from its top. The shaft makes an angle of Q = 61.0° with the horizontal. Assume the shaft is uniform. A 31 m (a) Find the tension in the supporting wire (in kN). KN (b) Find the components of the reaction force (in kN) exerted by the floor on the shaft. horizontal component: magnitude direction KN right vertical component: magnitude direction upward KN ¾ >
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