An object of mass mị slides on a sloped block of mass M2, which in turn slides on a horizontal surface. The slope angle is a constant 3, and both masses are initially at rest. There is no friction between any of the objects, and the masses are subject to the force of gravity –mgêy. Use as co- ordinates the horizontal position x2 of mass m2, and the height yı of mass m1, as shown in the diagram to the right. yA Y1 M2 x2 Find the equation of motion of block 2, #2(t). The expression should only include expressions involving constants: M2, m1, g, and B.

International Edition---engineering Mechanics: Statics, 4th Edition
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Author:Andrew Pytel And Jaan Kiusalaas
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An object of mass m1 slides on a sloped block
of mass M2, which in turn slides on a horizontal
surface. The slope angle is a constant 3, and both
masses are initially at rest. There is no friction
between any of the objects, and the masses are
subject to the force of gravity -mgêy. Use as co-
ordinates the horizontal position x2 of mass m2,
and the height y1 of mass m1, as shown in the
y4
Y1
M2
x2
diagram to the right.
Find the equation of motion of block 2, ä2(t). The expression should only include expressions
involving constants: M2, m1, g, and B.
Transcribed Image Text:An object of mass m1 slides on a sloped block of mass M2, which in turn slides on a horizontal surface. The slope angle is a constant 3, and both masses are initially at rest. There is no friction between any of the objects, and the masses are subject to the force of gravity -mgêy. Use as co- ordinates the horizontal position x2 of mass m2, and the height y1 of mass m1, as shown in the y4 Y1 M2 x2 diagram to the right. Find the equation of motion of block 2, ä2(t). The expression should only include expressions involving constants: M2, m1, g, and B.
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