Simple Machines Study Guide

Slides:



Advertisements
Similar presentations
Work, Power, and Machines
Advertisements

Chapter 14 Work & Simple Machines 4/12/2017 2:57 PM
Chapter 5 Work and Machines
Simple Machines Outline Notes
Work, Power, and Simple Machines
Work and Machines.
Mouse Mischief. Yes No When a machine is used to do work, the force applied by the machine is called the effort force.
Work and Machines Chapter 5 Sections 1-3.
Work and Machines Chapter 5 Sec 2. What is a Machine?  Any device that makes work easier.
Work & Power How the world works….. Define / Describe WORK Work is done when a force causes an object to move in the direction that the force is applied.
Work, Power, Simple machines
Name ________________________________ Physical Science
Chapter 8: Work, Power, Simple machines
Work  The product of the force and distance when a force is used to move an object.
Machine- a device that makes work easier by changing the direction or size of the force.
Work and Machines. What is Work? Work is force times distance. To be exact, work is force times the distance moved in the direction of the force. The.
Work and Simple Machines. Work is the use of force to move an object some distance. Work is done only when an object that is being pushed or pulled actually.
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:
Chapter 12 Work and Machines
Work and Simple Machines SWBAT define work; distinguish the different types of simple machines; explain how machines make work easier.
Work Power Simple Machines Energy
Bell Ringer  Why do we use machines?  What is the formula for work?  What are the SI units for work?  What is the formula for power? 
Work and Machines. Work is being done when you exert a force that moves an object in the direction of the force.
Chapter 8 Work and Machines Work Simple Machines Power Simple Machines
What type of simple machine is a screw? Inclined plane.
 When a force causes an object to move in the same direction of the force that is being applied  Does effort always equal work?  Calculating Work ›
SIMPLE MACHINES STUDY GUIDE VOCABULARY REVIEW. ESSENTIAL VOCABULARY 1. Input force – A force you apply to a simple machine. 2. Efficiency – Ability of.
Physical Chapter Seven Simple Machines Levers Pulleys Inclined Planes Screws Wheel & Axle Wedge Compound Machines.
Work What is work? –Work is what happens when a force moves an object over a distance in the direction of the force. –Examples: Push a shopping cart Turn.
Work and Simple Machines. Work Work means to (1) apply a force to an object over a distance, and (2) the object moves in response to the force. If something.
Work, Power, and Machines Physical Science. What is Work? Transfer of Energy Occurs when a force makes an object move a distance.
Chapter 7 Review.
Machines, Machines, Machines. When a force moves an object in the direction you are pushing or pulling that object Work.
Picture This Crazy for Calculating Keeping it Simple.
Work & Simple Machines.
Simple Machines.
Work, Power, and Machines
Work and Machines.
Simple Machines Study Guide
Work and Machines Types of Machines.
Can you tell what this lesson is about?
“Work, Power, and Simple Machines”
Simple Machines Study Guide
Work and Machines Final Review.
SIMPLE MACHINES.
Work and Simple Machines
Simple Machines.
8th- Chapter 12 Study Guide Answers
Chapter 6 – Work and Machines
Chapter 4: Work and Machines
Do Work!!!.
Ch. 5 – Work & Machines I. Work A. Work:
Work, Simple Machines, and Mechanical Advantage
Simple Machines and Work
Work, Power, & Machines.
Work & Machines.
Machines.
Welcome to a world full of machines!
Chapter 3 Work & Machines.
Chapter 8 Work and Machines.
Chapter 8 Work and Machines
Work & Simple Machines.
Work The amount of energy transferred by a force over a certain distance Measured in joules If an object doesn’t move a distance, no work was done W=FxD.
How the world works…. F. Ishmael
Work, Power and Efficiency
Levers and Equilibrium
Work, Power, and Simple Machines
If I use an inclined plane does the amount of work change?
Chapter 3 Work & Machines.
Presentation transcript:

Simple Machines Study Guide VOCABULARY REVIEW

Essential Vocabulary 1. Input force – A force you apply to a simple machine. 2. Efficiency – Ability of a machine to convert work input into work output. 3. Mechanical advantage – Ratio of output force to input force.

4. Output force – Force you overcome when using a simple machine. 5. compound machine – Device made of more than one simple machine. 6. Fulcrum – The pivot point of a lever.

Remember you should be able to describe the following simple machines and give an example of each: A. Inclined plane – A slanted surface used to raise an object. ex: wheelchair ramp B. Wedge – An inclined plane with one or two sloping sides. ex: knife C. Lever – A bar that is free to pivot about a fixed point. ex: a rake D. Wheel and axle – Simple machine that consists of two circular objects. ex: potter’s wheel E. Screw – An inclined plane wrapped around a cylinder post. ex: threaded bolt F. Pulley – A grooved wheel with a rope or chain wrapped around it. ex: flagpole

Can you explain What is work? Work is when a force causes an object to move in the same direction that the force is applied. Give 3 examples of work being done. 1. Pushing a box from the bottom of a hill to the top of the hill. 2. Pulling a sled across a field covered with snow. 3. Lifting a book bag off the floor.

Give 3 examples of work not being done. 1. The Moon orbiting Earth. 2. Standing still. 3. Pushing on a refrigerator that doesn’t move. Explain if it is possible to get more work out of a machine than you put into it? No- Why not? The unit for power is ____. Watt

Describe the relationship between distance and work in reference to simple machines. The amount of work needed decreases as the distance between the fulcrum and the force you apply increases. The thread that wraps around a screw can be classified as what type of simple machine? Inclined plain Describe how a fixed pulley makes doing work easier. A fixed pulley makes work easier by changing the direction of the input force.

Describe how a screw makes doing work easier Describe how a screw makes doing work easier. A screw makes work easier by changing the size or direction of a force with one movement. The rate at which work is done is called _____. Power Explain mechanical advantage. Mechanical advantage occurs when a machine allows you to do less work to complete a job.

Next to each situation write work or no work. Then explain your answer. Work is done on an object when an object moves in the same direction as the force being applied. A. Studying for this test. N B. Lifting a bag of groceries W C. Walking a dog on a leash N D. Sleeping N E. Pressing a stamp onto an envelope N F. Holding an umbrella N

Can you explain What is the purpose of a machine? The purpose of a machine is to make work easier. A winding mountain road would be an example of what type of simple machine. Inclined plane What type of simple machine is a doorknob? Wheel and Axle

Answer the Question All forms of energy can do _______. Work The unit for work is _______. Joules What is the formula for work? Work = Force x Distance What is the formula for power? Power = Work / Time

What is the formula for mechanical advantage What is the formula for mechanical advantage? Mechanical Advantage = Output / Input A rock weighing 2 newtons was lifted 3 meters. How much work was done? 2N x 3 Watts = 6 Joules How much power was used in question 27 if it took 2 seconds to lift the rock? 6J / 2 S = 3 Watts

To pry the lid off a paint can, you apply a force of 50 newtons to the handle of a screwdriver, what is the mechanical advantage of the screwdriver if it applies a force of 500 newtons to the lid? 500N / 50N = 10