Fill in all blanks before submission. Round the answer to the nearest integer The figure shows a rod of length 6 ft and weight 100 lb hinged to the ground at point A. The rod rests on a stone in the shape of a sphere of radius 3ft. The center of the sphere O is located at a distance of 5 ft from point A. The normal reaction N between the sphere and the rod is lb. The horizontal component of the reaction at A is lb while the vertical component of the reaction at A is lb. 6 ft The magnitude of the reaction at A is The angle of the reaction at A is 3 ft lb. 5 ft

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter9: Moments And Products Of Inertia Of Areas
Section: Chapter Questions
Problem 9.13P: Figure (a) shows the cross section of a column that uses a structural shape known as W867...
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Fill in all blanks before submission. Round the answer to the nearest integer
The figure shows a rod of length 6 ft and weight 100 lb hinged to the ground at point A. The rod
rests on a stone in the shape of a sphere of radius 3ft. The center of the sphere O is located at
a distance of 5 ft from point A.
The normal reaction N between the sphere and the rod is
lb.
The horizontal component of the reaction at A is
lb while the vertical component
of the reaction at A is
lb.
6 ft
The magnitude of the reaction at A is
lb.
The angle of the reaction at A is
3 ft
0
5 ft
Transcribed Image Text:Fill in all blanks before submission. Round the answer to the nearest integer The figure shows a rod of length 6 ft and weight 100 lb hinged to the ground at point A. The rod rests on a stone in the shape of a sphere of radius 3ft. The center of the sphere O is located at a distance of 5 ft from point A. The normal reaction N between the sphere and the rod is lb. The horizontal component of the reaction at A is lb while the vertical component of the reaction at A is lb. 6 ft The magnitude of the reaction at A is lb. The angle of the reaction at A is 3 ft 0 5 ft
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