work power simple machines energy. work work is done on an object when the object moves in the same...

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Work Power Simple Machines Energy

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Page 1: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

WorkPower

Simple MachinesEnergy

Page 2: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

WorkWork is done on an object when the object moves in the same direction in which the force is exerted.

Formula: Work = Force x Distance

Units:Work is measured in Joules (J)Force is measured in Newtons (N)Distance is measured in meters (m)

Page 3: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

PowerPower is the rate of transfer of energy or the

rate at which work gets done.

Power = Work / Time

Power = Watts (W)

Work = Joule (J)

Time = seconds (s)

Page 4: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:
Page 5: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

PulleyA pulley is a simple machine made of a grooved

wheel with a rope or cable wrapped around it.

Page 6: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Types of PulleysSingle Fixed Pulley:

attached to the structure, like a flag pole

Does not change the amount of force applied

Does change direction of the force

Page 7: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Types of PulleysSingle Movable Pulley:

this pulley is attached to an object you wish to move

Decreases the amount

of input force neededDoes not change the

direction of the force.

Page 8: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Types of PulleysBlock and Tackle:

combination of fixed and moveable pulleys

Decreases input force even more than a moveable pulley

Page 9: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Mechanical AdvantageMA = Output force / Input force

MA also equals the number of sections of ropethat support the pulley

Page 10: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Inclined PlaneAn inclined plane is a flat, sloped surface.

An inclined plane allows you to exert your input force over a longer distance

Page 11: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Ideal Mechanical Advantage

MA = Length of the incline divided by the height of the incline .

Page 12: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

LeversA lever is a rigid bar that is free to pivot, or

rotate, at a fixed pointThe fixed points that a lever pivots on is called a

fulcrum

Page 13: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Ideal Mechanical Advantage

MA = Distance from fulcrum to input force ÷ Distance from fulcrum to output force

Input Force

Output Force

Page 14: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Types of LeversLevers are classified according to the location of

the fulcrum relative to the input and output forces

1st Class 2nd Class 3rd Class

Page 15: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Examples of Levers Third Class

Page 16: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Three Other Simple Machines

Wheel and Axle – a machine consisting of a wheel that turns an axle so that the two parts rotate together.

Wedge – a machine with at least one slanting side ending in a sharp edge.

Screw – a machine that contains an inclined plane wrapped around a post.

Page 17: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Compound MachinesA machine that is made of two or more simple

machines.

Page 18: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

EnergyEnergy is the ability to do work or cause change.

Kinetic energy is the energy an object has due to its motion. Formula: KE = ½ mv2

Ex: a ball dropped off of a ledge, a bike going up a hill and down a hill

Potential energy is stored energy that results from the position or shape of an object.Ex: holding a ball at the top of a ledge, a bike at the top of the hill

Page 19: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Gravitational Potential Energy

(GPE) is the energy related to an objects height. The higher an object is raised the more GPE.

Formula: GPE = Weight (N) x Height (m)

Page 20: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

Elastic Potential EnergyElastic potential energy is the energy associated

with objects that can be stretched or compressed.

Page 21: Work Power Simple Machines Energy. Work Work is done on an object when the object moves in the same direction in which the force is exerted. Formula:

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