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A box with a weight of 100N rests on l horizontal floor .
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A large box whose mass is 30 kg rests on a
frictionless floor. A mover pushes down on the box with a force of 392 N at an angle
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force forward=392*cos30 acceleratin=forcforward/massbox on the ramp section force up the
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A force of 100N pulls a box of weight 200N along a smooth horizontal surface makes 45(degree) to the floor .
Calculate the work
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Horizontal component = 100 cos 45 = 70.7 Work done by moving 25 m = 70.7*25 Joules THE MOTION IS
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A box with a weight of 100N rets on a horizontal floor. The coefficient of static friction is 0.40 and the coefficient of
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What are the calculation
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A large box whose mass is 20 kg rests on a frinctionless floor. A mover pushes on the box with a force of 250 N at an angle of
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250 cos 35 = horizontal force a = F / m = (250 cos 35)/20
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A box weighting 200N is pushed on a horizontal floor. What acceleration will result if a horizontal force of 100N is applied to
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The friction force in the reverse direction is 200*0.4 = 80 N. The net forward force acting on the
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A chair of weight 100N lies atop a horizontal floor; the floor is not frictionless. You push on the chair with a force of F =
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Well, this seems like quite the balancing act! Let's see if we can clown around with the physics
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A chair of weight 100N lies atop a horizontal floor; the floor is not frictionless. You push on the chair with a force of F =
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This question was asked twice by you and has already been answered
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A box a weight of 100 N rests on a horizontal floor.The coefficient of static friction is 0,40 and the coefficient of kinetic
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Well, 0 Newtons gives 0 frictional force
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A box is pulled along a level floor at a constant speed by a rope that makes a 45 degree angle with the floor. The box weighs
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M*g = 100 N. Fn = 100*Cos0 - Fap*sin45 = Normal force Fn = 100 - 0.707Fap Fk=u*Fn =
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A large box whose mass is 19.0 kg rests on a frictionless floor. A mover pushes on the box with a force of 235 N at an angle
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Since the force 235 N is at an angle, you want it to be parallell with the ground. To do that you do
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