A block of mass m1= 4.5 kg is at rest on a plane that makes an...
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A block of mass m1= 4.5 kg is at rest on a plane that makes an angle of 0 = 30° above the horizontal. The coefficient of kinetic friction between the block and the plane is Hk = 0.100. The block is attached to a second block of mass m2= 42 kg that hangs freely by a string that passes over a frictionless, massless pulley (see the Figure). Calculate the speed when the second block has fallen 6.9 m. (Your result must contain 1 digit after the decimal and must be in units of m/s. Take g=9.81 m/s2. 2% of error will be tolerated in your answers.) m2 30 A block of mass m1= 4.5 kg is at rest on a plane that makes an angle of 0 = 30° above the horizontal. The coefficient of kinetic friction between the block and the plane is Hk = 0.100. The block is attached to a second block of mass m2= 42 kg that hangs freely by a string that passes over a frictionless, massless pulley (see the Figure). Calculate the speed when the second block has fallen 6.9 m. (Your result must contain 1 digit after the decimal and must be in units of m/s. Take g=9.81 m/s2. 2% of error will be tolerated in your answers.) m2 30
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Related Book For
Fundamentals of Physics
ISBN: 978-0471758013
8th Extended edition
Authors: Jearl Walker, Halliday Resnick
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