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Published byClifton Day Modified over 9 years ago
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Work, Power and Simple Machines
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Work Distance 10 m Force 40 N W = F * d = 40 N * 10 m = 400 Joules Force acting through a distance
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Work l Force must be in same direction as distance Force Distance
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Work l Force must be in same direction as distance Force Distance There is no work being done on the farmer
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Power How fast (or the rate) Work is done P = W/t 400 J/1 sec = 400 watts 400 J/5 sec = 80 watts
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How do machines make work easier? Work InWork Out DistanceForce DistanceForce DistanceForce DistanceForce Increase F MA>1 Increase D MA<1 Change direction of F MA=1
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Even though machines make work easier, they cannot change the amount of work Work InputWork Output F effort *distanceF resistance *distance Work Input is always greater than Work Output due to Friction
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Even though machines make work easier, % Efficiency = Work Output / Work Input *100 Work InputWork Output F effort *distanceF resistance *distance Work Input is always greater than Work Output due to Friction 10N*5m= 50J 20N*2m= 40J
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Even though machines make work easier, % Efficiency = (40 J / 50 J) = 0.8 Work InputWork Output F effort *distanceF resistance *distance Work Input is always greater than Work Output due to Friction 10N*5m= 50J 20N*2m= 40J
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Even though machines make work easier, % Efficiency = (40 J / 50 J) = 0.8 *100 =80% Work InputWork Output F effort *distanceF resistance *distance Work Input is always greater than Work Output due to Friction 10N*5m= 50J 20N*2m= 40J
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Inclined Plane A slanted surface used to raise an object
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Inclined Plane
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5 N
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Inclined Plane l Decreases the size of the effort force 5 N 4 N
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Inclined Plane l Decreases the size of the effort force 5 N 4 N
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Inclined Plane l Decreases the size of the effort force l Increases the distance 5 N 4 N
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Wedge An inclined plane that moves
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Wedge An inclined plane that moves
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Wedge An inclined plane that moves
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Wedge An inclined plane that moves
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Wedge An inclined plane that moves
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Wedge An inclined plane that moves
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Wedge As a wedge moves through an object to be cut,
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Wedge A small effort force
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Wedge A small effort force Is able to overcome
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Wedge A small effort force Is able to overcome A large resistance force
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Wedge A small effort force Is able to overcome A large resistance force
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Wedge How can the mechanical advantage be increased?
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Wedge How can the mechanical advantage be increased? Reduce the effort force by decreasing the angle
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Screw An inclined plane wrapped around a central bar or cylinder to form a spiral
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How fast (or the rate) Work is done
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1st class Mechanical Advantage = resistance F / effort F = 2 N
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1st class Mechanical Advantage = resistance F / effort F = 2/2 = 1 2 N
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2nd class Mechanical Advantage = resistance F / effort F = 2 N 1 N
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2nd class Mechanical Advantage = resistance F / effort F = 2/1 = 2 2 N 1 N
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3rd class Mechanical Advantage = resistance F / effort F 2 N 3 N
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3rd class Mechanical Advantage = resistance F / effort F = 2/3 = 0.66 2 N 3 N
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5 N Pulleys Fixed Movable
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5 N Pulleys 5 N 2.5 N Fixed Movable MA = 5/5=1 MA = 5/2.5 =2
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5 N Pulleys 5 N 2.5 N Resistance distance = Effort distance Resistance distance = 1/2 Effort distance
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Wheel and Axle l Two circular objects of different size l The wheel always moves a greater distance than the axle
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Wheel and Axle l Wheel : Large Distance, Small Force l Axle : Small Distance, Large Force
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Compound Machine Corkscrew l Inclined Plane? l Wedge? l Screw? l Lever? l Pulley? l Wheel and Axle?
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Compound Machine Corkscrew l Inclined Plane l Wedge l Screw l Lever l Pulley l Wheel and Axle
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Compound Machine Drill l Inclined Plane? l Wedge? l Screw? l Lever? l Pulley? l Wheel and Axle?
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Compound Machine Drill l Inclined Plane l Wedge l Screw l Lever l Pulley l Wheel and Axle
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Compound Machine Jack l Inclined Plane? l Wedge? l Screw? l Lever? l Pulley? l Wheel and Axle?
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Compound Machine Jack l Inclined Plane l Wedge l Screw l Lever l Pulley l Wheel and Axle
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