Block A with a mass of 2.8 kg is at rest on a table 1 m from the edge. The table is inclined to an angle of 19.4°. The table has a coefficient of kinetic friction of 0.111. A string is tied to Block A at one end, and the other is tied to Block B, which has a mass of 2.0 kg. While Block A is being held in place on the table, Block B is lowered over the edge of the table and allowed to hang freely. When Block A is released, it slides to the edge of the table. Assume that the string has an insignificant mass. How much time does it take for Block A to reach the edge of the table?

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Chapter1: Units, Trigonometry. And Vectors
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Block A with a mass of 2.8 kg is at rest on a table 1 m from the edge. The table is inclined to an angle of
19.4°. The table has a coefficient of kinetic friction of 0.111. A string is tied to Block A at one end, and
the other is tied to Block B, which has a mass of 2.0 kg. While Block A is being held in place on the table,
Block B is lowered over the edge of the table and allowed to hang freely. When Block A is released, it
slides to the edge of the table. Assume that the string has an insignificant mass. How much time does it
take for Block A to reach the edge of the table?
Transcribed Image Text:Block A with a mass of 2.8 kg is at rest on a table 1 m from the edge. The table is inclined to an angle of 19.4°. The table has a coefficient of kinetic friction of 0.111. A string is tied to Block A at one end, and the other is tied to Block B, which has a mass of 2.0 kg. While Block A is being held in place on the table, Block B is lowered over the edge of the table and allowed to hang freely. When Block A is released, it slides to the edge of the table. Assume that the string has an insignificant mass. How much time does it take for Block A to reach the edge of the table?
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