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Machines 4. Simple Machines
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Simple Machines
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There are thousands of different kinds of machines
You use machines every day
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A device that makes work easier
But did you know that all machines are based on only six (6) kinds of simple machines Vocabulary: Simple machines A device that makes work easier
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A lever is one type of simple machine
Vocabulary: lever A rod that can turn on a point called a fulcrum
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A point on which a lever can turn
Vocabulary: fulcrum A point on which a lever can turn
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If you push down on the end of one kind of lever
The other end moves up
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You can lift things more easily because less force is needed
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There are three (3) basic kinds of levers
They are different because each kind has the fulcrum in a different place
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The fulcrum is between the load force and the effort force
First class lever: The fulcrum is between the load force and the effort force
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The load force is between the effort force and the fulcrum
Second class lever: The load force is between the effort force and the fulcrum
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The effort force is between the fulcrum and the load force
Third class lever: The effort force is between the fulcrum and the load force
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An inclined plane is a flat surface that slopes
Vocabulary: Inclined plane A flat surface that slopes
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A board from a low place to a high place is an inclined plane
called a ramp
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Less force is needed to slide an object up a ramp
than to lift the object
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A wedge can split a log more easily by hitting a wedge stuck in the log
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Two inclined planes that come together at a point
Vocabulary: wedge Two inclined planes that come together at a point
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A screw is an inclined plane wrapped around a rod
Screws hold things together better than nails
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You can fasten an object to one end of the rope on a pulley
If you pull the other end, you can lift the object
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A wheel with a rope around it and is used to lift objects
Vocabulary: pulley A wheel with a rope around it and is used to lift objects
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3 Basic Types of Pulleys:
Fixed Pulley Mechanical Advantage is 1 If you are lifting 150 pounds you have to apply 150 pounds force
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Mechanical Advantage: Count number of rope sections
NOTE: Subtract 1 if you have to pull down on rope 2 ropes pieces 1 you use to pull down to apply force Mechanical Advantage: 1
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Mechanical Advantage is 2
Moveable Pulley Mechanical Advantage is 2 If you are lifting 150 pounds you have to apply 75 pounds force
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Combined Pulley Mechanical Advantage is 2
Count number of rope pieces Subtract 1 since pulling down Mechanical Advantage is 2 If you are lifting 150 pounds you have to apply 75 pounds force
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Combined Pulley Mechanical Advantage is 3
Count number of rope pieces Pulling up so it counts Mechanical Advantage is 3 If you are lifting 150 pounds you have to apply 50 pounds force
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Several pulleys can be joined together
Count number of rope pieces Subtract 1 since pulling down Mechanical Advantage is 3 to make it easy to lift heavy objects
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Identify the mechanical advantage in each set of pulleys:
MA ? MA ? MA ?
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A wheel and axle is really a kind of lever
that continues to turn around its fulcrum
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