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Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in...

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Work & Simple Machines
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Page 1: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Work & Simple Machines

Page 2: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Define / Describe WORK

Page 3: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Define / Describe WORK

• Work is done when a force causes an object to move in the direction that the force is applied.

• The formula for work is: W = F X D• If there is no movement, there is no work

Page 4: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Two things must happen for work to be done.

What are they?

Page 5: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Two things must happen for work to be done.

What are they?

• A force must applied to an object• The object must move in the same direction

as the force.

Page 6: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

• Work ‘s symbol is W• Work’s unit is Joule• A joule is a unit of energy• W= Fd• Joule= N m

Page 7: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is power?

• Power is the rate at which work is done.• Power symbol is P• Power unit is Watt, W (for James Watt)• Defined as P=Work / time• P=W/t• Watt= Joule/time

Page 8: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is the purpose of a machine?

Page 9: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is purpose of a machine?

• To make work easier• To make easier the transfer of energy

Page 10: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How do machines make work easier?

Page 11: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How do machines make work easier?

• They can change the amount of force• They can change the distance

(Remember that Work = Force X Distance)

• They can also change the direction

MORE

Page 12: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How do machines make work easier?

Any change in the size of the force changes the distance. No machine can increase both force and distance.

1. Multiply force which decreases distance the load moves.

2. Multiply the distance which decreases force.3. Or, they leave force and distance alone but

change the direction in which the load moves.

Page 13: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is mechanical advantage?

Page 14: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is mechanical advantage?

The number of times a machine multiplies the effort or input force.

Mechanical Advantage= input d/output d

Or output F/input F

Efficiency= W output/ W input

W=Fd

Page 15: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What are the 6 types of simple machines?

Page 16: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.
Page 17: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What are the 6 types of simple machines?

• Screw• Wedge• Inclined plane• Pulley• Wheel and axle• Lever

Page 18: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a compound (or complex) machine?

• A machine made up of two or more simple machines.

Page 19: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Describe LEVER

Page 20: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Describe LEVER

A simple machine made with a rigid bar free to pivot (move) around a fixed point called a fulcrum

Page 21: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Describe the 3 types of levers:

Page 22: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Describe the 3 types of levers:

• A first class lever is like a teeter-totter or see-saw. One end will lift an object (child) up just as far as the other end is pushed down.

• A second class lever is like a wheel barrow. The long handles of a wheel barrow are really the long arms of a lever.

• A third class lever is like a fishing pole. When the pole is given a tug, one end stays still but the other end flips in the air catching the fish.

MORE

Page 23: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagrams of Levers

Effort force = input force

Load – output force

Page 24: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagrams of Levers

http://www.professorbeaker.com/lever_fact.html

Page 25: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Describe PULLEYS

Page 26: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Describe PULLEYS

A simple machine made with a rope, belt or chain wrapped around a grooved wheel. A pulley works two ways.

Page 27: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagrams of Pulleys

Fixed pulley: http://www.smartown.com/sp2000/machines2000/pulley2.htm

Movable Pulley: http://www.smartown.com/sp2000/machines2000/pulley3.htm

Page 28: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How does a pulley work?

Page 29: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How does a pulley work?

A pulley works two ways.

It can change the direction of a force or it can change the amount of force.

Page 30: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What are the types of pulleys?

Page 31: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What are the types of pulleys?

• Fixed pulley Does not multiply force. Changes the direction of the effort force. Mechanical advantage is equal to one.

• Movable pulley Multiplies effort force but cannot change direction of the effort

force. Mechanical advantage is the effort distance divided by the resistance distance.

• Pulley system A combination of fixed and movable pulleys. Mechanical advantage is equal to the number of supporting ropes.

Page 32: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How does a fixed pulley work?

Page 33: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How does a fixed pulley work?

A fixed pulley changes the direction of the applied force. ( Ex. Raising a flag )

Page 34: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How does a moveable pulley work?

Page 35: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

How does a moveable pulley work?

A movable pulley is attached to the object that is being moved.

Page 36: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is an inclined plane?

Page 37: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is an inclined plane?

A simple machine with no moving parts. It is simply a straight slanted surface. ( Ex. a ramp.)

Page 38: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagram of Inclined Plane

http://www.smartown.com/sp2000/machines2000/inclinedplane.htm

Page 39: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a wheel and axle?

Page 40: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a wheel and axle?

A wheel and axle is a modification of a pulley. A wheel is fixed to a axle.

The wheel and axle must move together to be a simple machine.

Sometimes the wheel has a crank or handle on it.

Examples of wheel and axles include roller skates and doorknobs.

Page 41: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagram of Wheel & Axle

http://www.smartown.com/sp2000/machines2000/wheelandaxle.htm

Page 42: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a wedge?

Page 43: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a wedge?

A modification of an inclined plane that moves .

It is made of two inclined planes put together.

Instead of the load being moved up an inclined plane, the inclined plane moves the load.

Page 44: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagram of Wedge

www.angelfire.com/scifi/dschlott/ simplemachines.html

Page 45: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a screw?

Page 46: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

What is a screw?

A simple machine that is like an inclined plane.

It is an inclined plane that wraps around a shaft.

Page 47: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Diagram of Screw

Page 48: Work & Simple Machines. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied. The formula.

Go to this link for more information about machines. Remember to hit the “back”

button on your browser to return to this slide show.

http://www.usoe.k12.ut.us/curr/science/sciber00/8th/machines/sciber/intro.htm


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