Block 1, with mass my and speed 5.3 m/s, slides along an x axis on a frictionless floor and then undergoes a one-dimensional elastic collision with stationary block 2, with mass m₂-0.56m₁. The two blocks then slide into a region where the coefficient of kinetic friction is 0.55; there they stop. How far into that region do (a) block 1 and (b) block 2 slide? (a) Number (b) Number Units Units
Block 1, with mass my and speed 5.3 m/s, slides along an x axis on a frictionless floor and then undergoes a one-dimensional elastic collision with stationary block 2, with mass m₂-0.56m₁. The two blocks then slide into a region where the coefficient of kinetic friction is 0.55; there they stop. How far into that region do (a) block 1 and (b) block 2 slide? (a) Number (b) Number Units Units
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
Transcribed Image Text:Block 1, with mass m; and speed 5.3 m/s, slides along an x axis on a frictionless floor and then undergoes a one-dimensional elastic
collision with stationary block 2, with mass m₂-0.56m₁. The two blocks then slide into a region where the coefficient of kinetic friction
is 0.55; there they stop. How far into that region do (a) block 1 and (b) block 2 slide?
(a) Number
(b) Number
Units
Units
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