A mass M travels in a straight line on a horizontal plane block. It is attached at one end to a fixed vertical wall through a spring (spring constant k) while at the other end, it is connected through an inextensible cable to a pendulum of mass m. The lower mass m will oscillate in the vertical plane ABC. How many equation(s) of motion will this system have? A k M Wwwxxx m B
A mass M travels in a straight line on a horizontal plane block. It is attached at one end to a fixed vertical wall through a spring (spring constant k) while at the other end, it is connected through an inextensible cable to a pendulum of mass m. The lower mass m will oscillate in the vertical plane ABC. How many equation(s) of motion will this system have? A k M Wwwxxx m B
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
Transcribed Image Text:A mass M travels in a straight line on a horizontal plane block. It is attached at one
end to a fixed vertical wall through a spring (spring constant k) while at the other end,
it is connected through an inextensible cable to a pendulum of mass m. The lower
mass m will oscillate in the vertical plane ABC.
How many equation(s) of motion will this system have?
A
k
M
m
B
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