S. Coghlan Physics 12 S. Coghlan This concept map is designed to help you; Understand how the various different parts of electric power link together.

Slides:



Advertisements
Similar presentations
S. Coghlan Physics 12. S. Coghlan This concept map is designed to help you; Understand how the various different parts of forces and equilibrium link.
Advertisements

PHYSICS UNIT 8: MAGNETISM
Edexcel A2 Physics Unit 4 : Chapter 2.3 : Electromagnetic Effect
Magnetic Fields Faraday’s Law
ECE 201 Circuit Theory I1 Magnetic Field Permanent magnet –Electrons spinning about their own axis in a particular alignment Charges in motion –Electric.
Basics in Magnetism Electromagnetism Force on a Current-Carrying Wire EM Induction Transformer Generators Electric Motors ELECTROMAGNETISM.
 Electricity and magnetism are different aspects of a single force: electromagnetism  Electricity = result of charged particles  Magnetism = result.
Magnetism and Electromagnetism
Electromagnetic Induction
Magnetic Fields Objective: I can describe the structure of magnetic fields and draw magnetic field lines.
Physics A First Course Electricity and Magnetism Chapter 17.
Magnetism.
SPH4U – Grade 12 Physics Unit 1
Magnetism, Electromagnetism, & Electromagnetic Induction
Magnetism and Uses Goals: magnetism, source, types, electromagnetism, magnetic materials, force calculations, motors, generators and transformers.
ELECTROMAGNETISM. ELECTROMAGNETISM ????? ELECTROMAGNETISM THE BRANCH OF PHYSICS THAT DEALS WITH THE RELATIONSHIP BETWEEN ELECTRICITY & MAGNETISM.
Chapter 31 Faraday’s Law. Introduction This section we will focus on the last of the fundamental laws of electromagnetism, called Faraday’s Law of Induction.
1 19 Overview magnetic force fields & sources forces on charges & currents Homework: 3, 7, 10, 33, 45, 55, 75.
Chapter 29 Electromagnetic Induction & Faraday’s Law.
6: Fields and Forces 6.3 Magnetic Force and Field.
Copyright © by Holt, Rinehart and Winston. All rights reserved. ResourcesChapter menu Objectives Describe the conditions required for electromagnetic induction.
S. Coghlan Physics 12 S. Coghlan This concept map is designed to help you; Understand how the various different parts of movement link together. Study.
The link between electricity & magnetism N S When a wire moves through a magnetic field a voltage is produced N Moving a magnet moves through a coil of.
Magnetism Alternating-Current Circuits
21.3 Electric Energy Generation and Transmission
Review Magnetism – Attractive and Repulsive How is the concept of magnetism and electricity different? 1. Magnetism is caused by the spinning of electrons.
Electromagnetic Induction and Faraday’s Law. Induced EMF Almost 200 years ago, Faraday looked for evidence that a magnetic field would induce an electric.
1 Physics 11 S. Coghlan 2 This concept map is designed to help you; Understand how the various different parts of movement link together. Study the whole.
Magnets and Electromagnetism Chapter Outline 1.Magnets, magnetic poles, and magnetic force. 2.Magnetic effects of electric current. 3.Magnetic effects.
Electromagnetism It’s attractive! (or repulsive).
Pearson Prentice Hall Physical Science: Concepts in Action Chapter 21 Magnetism.
1. Current-carrying wires in an external magnetic field experience a force, dependent on B, I, l and the angle between wire and B field. F = Bilsinθ This.
Magnets and Electromagnetism Chapter Outline 1.Magnets, magnetic poles, and magnetic force. 2.Magnetic effects of electric current. 3.Magnetic effects.
Physics Magnetism and Electromagnetic Induction. California State Standards f. Students know magnetic materials and electric currents (moving electric.
Magnetism and Electromagnetic Induction PHYSICS 1-2 MR. CHUMBLEY CHAPTER 19: MAGNETISM CHAPTER 20: ELECTROMAGNETIC INDUCTION.
Electromagnetism.  A moving charge creates a magnetic field  Electric current (I) is moving electrons, so a current-carrying wire creates a magnetic.
Chapter 3 Magnetism.
Electromagnetic induction And you. When you move a magnet in a solenoid, what happens? Solenoid/magnet demo here Look closely, and describe what you see.
Magnetism, Electromagnetism, & Electromagnetic Induction.
Home Magnet Fields 5.14 Magnetic Flux Electromagnetic Induction 5.16 Magnetic Effect of a Steady Current.
Phy2005 Applied Physics II Spring 2016 Announcements: Test 2 Wednesday, March 23 covers chs , sections listed in syllabus + all material covered.
Magnetic fields & electromagnetic induction
Magnetism, Electromagnetism, & Electromagnetic Induction
Magnetic Force.
Magnetism, Electromagnetism, & Electromagnetic Induction
Magnetism, Electromagnetism, & Electromagnetic Induction
Electromagnetism.
Section 2: Magnetic Induction
Motors and Generators Physics 12 Adv.
Electro-magnetism NCEA AS2.6 Text Chapters:.
Notes 17.1 & 17.2: Electricity, Magnetism and Motors
(13.4) Magnetic Field of a Coil or Solenoid
Induced EMF Generators , Transformers
C H A P T E R   22 Electromagnetic Induction.
Induced EMF Generators , Transformers
What metals could be used to make an induced magnet.
Magnetic Field Permanent magnet Charges in motion
ELECTROMAGNETISM.
ELECTRICITY AND MAGNETISM
Topic 12 –Magnetic fields
Magnetic Field Permanent magnet Charges in motion
Chapter 7 Magnetism.
Energy Transformation
Force on a Current-carrying Conductor & Motor Effect 
Magnetism, Electromagnetism, & Electromagnetic Induction
Magnetism.
Announcement Exam #1 grades are posted on E-learning
Draw 2 magnets that repel and attract each other.
Electromagnetic Induction and Faraday’s Law
Presentation transcript:

S. Coghlan Physics 12

S. Coghlan This concept map is designed to help you; Understand how the various different parts of electric power link together. Study the whole section of work. Main Concepts Linking words Printer friendly version available from my web site

Magnetic Fields Force on a conductor in a field Force on a moving charge in a field Generation Motors involves drives causes causes requires Electric Power

Magnetic Fields involves Motors drives Force on a moving charge in a field causes Force on a conductor in a field causes Generation requires

Electric Power Magnetic Fields involves Motors drives Force on a moving charge in a field causes Force on a conductor in a field causes Generation requires Earth Inclination or dip Moving charges in outer core GNP MNP Variation Field shape - magnetic flux Bar or horseshoe RH screwdriver RH grasp Field strength B, tesla shows shows has has caused by wire solenoid units permanentshow

Electric Power Magnetic Fields involves Motors drives Force on a moving charge in a field causes Force on a conductor in a field causes Generation requires Earth in Moving charges in outer core caused by GNP has MNP has Inclination or dip shows Variation shows Field shape & magnetic flux Bar or horseshoe permanent RH screwdriver wire RH grasp solenoid Field strength B, tesla units show

Electric Power Magnetic Fields involves Motors drives causes Force on a conductor in a field F = IlB causes Generation requires Earth in Moving charges in outer core caused by GNP has MNP has Inclination or dip shows Variation shows Field shape & magnetic flux Bar or horseshoe permanent RH screwdriver wire RH grasp solenoid Field strength B, tesla units show require produce applications LH rule commercial involves low V, low I can be depends on types high V, low I Force on a Moving charge in a field F = qvB Torque, FxdSplit ring commutatorCRO TVMass spectrometer AC power supply Home 50 Hz Transmission lines, High V, Low I InductionLenz’s Law CalcsAC/DC generator Transformers

Electric Power Magnetic Fields involves Motors drives causes Force on a conductor in a field F = IlB causes Generation requires Earth in Moving charges in outer core caused by GNP has MNP has Inclination or dip shows Variation shows Field shape & magnetic flux Bar or horseshoe permanent RH screwdriver wire RH grasp solenoid Field strength B, tesla units show Force on a Moving charge in a field F = qvB Torque, Fxd produce Split ring commutator require Mass spectrometer CRO TV applications AC power supply commercial Home 50 Hz low V, low I Transmission lines high V, low I Induction depends on Lenz’s Law Calcs AC/DC generator can be F B I LH rule Transformers Step up Step down involves types

S. Coghlan Your own concept map Single page concept map

Magnetic Fields Force on a conductor in a field Force on a moving charge in a field GenerationMotors Earth Inclination or dip Moving charges in outer core GNP MNP Variation Field shape - magnetic flux Bar or horseshoe RH screwdriver RH grasp Field strength B, tesla Torque, Fxd Split ring commutator CRO TVMass spectrometer AC power supply Home 50 Hz Transmission lines, High V, Low I InductionLenz’s Law Calcs AC/DC generator Transformers Involvesdrives causes causes requiresshows shows has has caused by wire solenoid units permanentshowrequire produceapplications LH rule commercial involveslow V, low I can bedepends on types high V, low I You can use these Main Concepts and Linking Words to complete your own concept map. You can print out the next page and use it as a framework. Main Concepts Linking Words Printer friendly version available from my web site

Electric Power

Magnetic Fields involves Motors drives causes Force on a conductor in a field F = IlB causes Generation requires Earth in Moving charges in outer core caused by GNP has MNP has Inclination or dip shows Variation shows Field shape & magnetic flux Bar or horseshoe permanent RH screwdriver wire RH grasp solenoid Field strength B, tesla units show Force on a Moving charge in a field F = qvB Torque, Fxd produce Split ring commutator require Mass spectrometer CRO TV applications AC power supply commercial Home 50 Hz low V, low I Transmission lines high V, low I Induction depends on Lenz’s Law Calcs AC/DC generator can be F B I LH rule Transformers Step up Step down involves types

+- Electric Field Conventional current Electron current Electric Field +- q = I t

Alternating current V t Direct current V t Electric field