A 10.0 kg block is connected to a light, non-stretchable string to a 6.30 kg mass, which is hanging over the edge of a frictionless table. (1 pt each = 3 pts) a) Draw a free body diagram and label the coordinate systems for each block. b) Calculate the acceleration of the system when the blocks are released. c) Give the magnitude and direction of the net force on each block. d) Calculate the acceleration for the same system with the table replaced by a ramp with an angle of 27.0°, with the 10.0 kg block on the ramp and the 6.30 kg block hanging
A 10.0 kg block is connected to a light, non-stretchable string to a 6.30 kg mass, which is hanging over the edge of a frictionless table. (1 pt each = 3 pts) a) Draw a free body diagram and label the coordinate systems for each block. b) Calculate the acceleration of the system when the blocks are released. c) Give the magnitude and direction of the net force on each block. d) Calculate the acceleration for the same system with the table replaced by a ramp with an angle of 27.0°, with the 10.0 kg block on the ramp and the 6.30 kg block hanging
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- A 10.0 kg block is connected to a light, non-stretchable string to a 6.30 kg mass, which is hanging over the edge of a frictionless table. (1 pt each = 3 pts) a) Draw a free body diagram and label the coordinate systems for each block. b) Calculate the acceleration of the system when the blocks are released. c) Give the magnitude and direction of the net force on each block. d) Calculate the acceleration for the same system with the table replaced by a ramp with an angle of 27.0°, with the 10.0 kg block on the ramp and the 6.30 kg block hanging
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