A block of mass 5 grams slides down a frictionless plane having an inclination of 0 = (10 + n)° where n is equals to 7. The block starts from rest at the top, and the length of the incline is 2.00 m. Use differential equations to find the speed of the block when it reaches the bottom of the incline. Compare the result using the kinematic equation. Draw the free-body diagram.

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solve in differential equation
A block of mass 5 grams slides down a
frictionless plane having an inclination of 0 = (10
+ n)° where n is equals to 7. The block starts
from rest at the top, and the length of the incline
is 2.00 m. Use differential equations to find the
speed of the block when it reaches the bottom of
the incline. Compare the result using the
kinematic equation. Draw the free-body diagram.
Transcribed Image Text:A block of mass 5 grams slides down a frictionless plane having an inclination of 0 = (10 + n)° where n is equals to 7. The block starts from rest at the top, and the length of the incline is 2.00 m. Use differential equations to find the speed of the block when it reaches the bottom of the incline. Compare the result using the kinematic equation. Draw the free-body diagram.
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