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A small block of ice with mass 0.120 kg ...

A small block of ice with mass `0.120 kg` is placed against a horizontal compressed spring mounted on a horizonta table top that is `1.90 m` above the floor. The spring has a force constant `k=2300 M//m` and is initially compressed `0.045 m`. The mass of the spring is negligible. The spring is releaded and the block slock slides along the table, goes off the edge and travels to the floor. If there is negligible friction between the ice and the table, what is the speed of the block of ice when it reaches the floor. `(g=9.8 m//s^(2))`
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Text Solution

Verified by Experts

The correct Answer is:
A, B

From conservation of mechanical energy,
`E_(i)=E_(f)`
or `1/2kx_(i)^(2) +mgh_(i) =1/2mv_(f)^(2)`
`:. v_(f) =sqrt(2gh_(i) + k/mx_(i)^(2))`
Substituiting the values have,
`v_(f) =sqrt(2xx9.8xx1.9+(2300)/(0.12)(0.045)^(2))`.
`8.72 m//s`.
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