Two spheres, each with a mass of 100 g, can slide freely on a frictionless, horizontal surface and are connected via an inelastic, inextensible cable with a length of L = 1m. At the position shown (horizontal cable), sphere B has a velocity of Vo = 2 m/s in the negative y direction. When the cable reaches a vertical position (the first time) Find: The horizontal and vertical velocities of spheres A and B: VA = (i) + (j) (m/s) VB = (i) + (j) (m/s) Show your detailed solution on paper. A Vo

Structural Analysis
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Chapter2: Loads On Structures
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Two spheres, each with a mass of 100 g, can slide freely on a frictionless, horizontal surface
and are connected via an inelastic, inextensible cable with a length of L = 1m. At the position
shown (horizontal cable), sphere B has a velocity of Vo = 2 m/s in the negative y direction.
When the cable reaches a vertical position (the first time) Find:
The horizontal and vertical velocities of spheres A and B:
VA =
(i) +
(j) (m/s)
VB =
(i) +
(j) (m/s)
Show your detailed solution on paper.
A
Vo
Transcribed Image Text:Two spheres, each with a mass of 100 g, can slide freely on a frictionless, horizontal surface and are connected via an inelastic, inextensible cable with a length of L = 1m. At the position shown (horizontal cable), sphere B has a velocity of Vo = 2 m/s in the negative y direction. When the cable reaches a vertical position (the first time) Find: The horizontal and vertical velocities of spheres A and B: VA = (i) + (j) (m/s) VB = (i) + (j) (m/s) Show your detailed solution on paper. A Vo
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