An aluminum cube with a mass of 22 g sits on top of a block of wood with a mass of 57 g. The block of wood is placed on a ramp inclined at 20\deg from horizontal. A string is tied to the wood block. It runs parallel to the ramp to a pulley at the top, and then it comes down to a 40 g hanger. The cube stays atop the block of wood,
An aluminum cube with a mass of 22 g sits on top of a block of wood with a mass of 57 g. The block of wood is placed on a ramp inclined at 20\deg from horizontal. A string is tied to the wood block. It runs parallel to the ramp to a pulley at the top, and then it comes down to a 40 g hanger. The cube stays atop the block of wood,
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
Transcribed Image Text:An aluminum cube with a mass of 22 g sits on top of a
block of wood with a mass of 57 g. The block of wood
is placed on a ramp inclined at 20\deg from horizontal.
A string is tied to the wood block. It runs parallel to the
ramp to a pulley at the top, and then it comes down to
a 40 g hanger. The cube stays atop the block of wood,
and they accelerate up the ramp at 0.40 m/s?. Write
out the equations of morion (FNet = ma) in
components.
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