6. The rod of the hydraulic cylinder is moving down with a constant speed vB = 2.2 ft/sec. Compute the speed of block A when y = 3 ft. The total length of the cable is 15 ft, the distance b = 2 ft, and the radius of the small pulley at B may be neglected. (VA = 2.44 ft/sec left) y B VB A
6. The rod of the hydraulic cylinder is moving down with a constant speed vB = 2.2 ft/sec. Compute the speed of block A when y = 3 ft. The total length of the cable is 15 ft, the distance b = 2 ft, and the radius of the small pulley at B may be neglected. (VA = 2.44 ft/sec left) y B VB A
Elementary Geometry For College Students, 7e
7th Edition
ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
ChapterP: Preliminary Concepts
SectionP.CT: Test
Problem 1CT
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
Transcribed Image Text:6. The rod of the hydraulic cylinder is moving down with a constant speed vB = 2.2 ft/sec. Compute
the speed of block A when y = 3 ft. The total length of the cable is 15 ft, the distance b = 2 ft, and
the radius of the small pulley at B may be neglected. (VA = 2.44 ft/sec left)
y
B
VB
A
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