LENZ’S LAW Heinrich F.E. Lenz Russian physicist (1804-1865) 1834 Lenz’s Law There is an induced current in a closed conducting loop if and only if the.

Slides:



Advertisements
Similar presentations
Faradays Law of Induction A changing magnetic field induces an electric field. The induced electric field causes a current to flow in a conductor.
Advertisements

Lenzs Law. Minus Sign There is a minus sign in Faradays Law. There is a minus sign in Faradays Law. Relates flux change to polarity of emfRelates flux.
Induction and Inductance Induction Faraday’s Law of Induction Lenz’s Law Energy Transfer Induced Electric Fields Inductance and Self Inductance RL Circuits.
Magnetism and Electromagnetic Induction
Copyright © 2010 Pearson Education, Inc. Lecture Outline Chapter 23 Physics, 4 th Edition James S. Walker.
EXAM 1 Distribution Mean = 75.0 Standard deviation = 11.7.
Lenz’s Law: B-fields form to produce a frictional resistance against the changes that create them. Generated current creates B-fields which OPPOSE the.
Electromagnetism Physics 100 Chapt 15 Michael Faraday.
Interlude: The Hardest Part of this Course Faraday’s Law We will do this twice, today and in about a month (discovered Aug 29,1831)
Physics 121: Electricity & Magnetism – Lecture 11 Induction I Dale E. Gary Wenda Cao NJIT Physics Department.
MUZAIDI BIN MARZUKI Chapter 4: Electromagnetic.
Unit 14 Magnetic Induction. Objectives: Discuss magnetic induction. List factors that determine the amount and polarity of an induced voltage. Discuss.
Electromagnetic Induction
Electromagnetic Induction Faraday’s Law. Induced Emf A magnet entering a wire causes current to move with in the wires I = Emf / R The induced current.
Field Lines.
1 W09D2: Faraday’s Law: The Best Law in the Entire Universe Today’s Reading Assignment Course Notes: Sections
Magnetism Chapter 36. What is a Magnet? Material or object that produces a magnetic field. Two types:  Permanent  Electromagnet.
Faraday's Law dS B.
Faraday’s Law of Induction
Electromagnetic Induction What do we know? Hans Christian Oersted showed that moving charges create a magnetic field.
Magnetic Flux and Faraday’s Law of Induction
Electromagnetic Induction AP Physics Chapter 21. Electromagnetic Induction 21.1 Induced EMF.
Electromagnetic Induction
My Chapter 20 Lecture Outline.
Electromagnetic induction When magnet field lines are broken, current flows in the conductor. (2 ways to cut) (Magnet with a coil breaking the fields induces.
Electromagnetic Induction. Faraday Discovered basic principle of electromagnetic induction Whenever the magnetic field around a conductor is moving or.
Unit 9: Part 2 Electromagnetic Induction and Waves.
The Motor Principle An electromagnet that interacts with another magnet can create a directed force (as discovered by Faraday as the first motor).
Generators and Motors. Lightning Review Last lecture: 1.Induced voltages and induction Induced EMF Induced EMF Faraday’s law Faraday’s law Motional EMF.
Direction of Magnetic Field
Welcome Back Minions!!!.
Magnetic Induction. Key Points about Induction  If the current in the primary circuit is constant, then the current in the secondary circuit is zero.
Magnetism and Electromagnetism Engr. Faheemullah Shaikh.
Faraday’s Law.
REVISION ELECTROMAGNETISM. ELECTROMAGNETIC SPECTRUM (EMS)
1) 2) 3) 4) A mass oscillates displaying the Simple Harmonic Motion plotted in the position vs time graph at right. Which of the velocity vs time graphs.
CH Review Changing the magnetic flux in a coil induces an emf around the coil. (As long as the coil is connected in a complete circuit, a current.
Magnetically Levitated Trains
Induced current produces a secondary magnetic field that is always opposed to the primary magnetic field that induced it, an effect called Lenz’s law.
Electromagnetism.  A moving charge creates a magnetic field  Electric current (I) is moving electrons, so a current-carrying wire creates a magnetic.
Unit G485: Fields, Particles and Frontiers of Physics Revision.
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.
PHY 102: Lecture Induced EMF, Induced Current 7.2 Motional EMF
Electromagnetic Induction and Faraday’s Law Chapter 21.
Home Magnet Fields 5.14 Magnetic Flux Electromagnetic Induction 5.16 Magnetic Effect of a Steady Current.
Unit 12 Magnetism.
Induction and Inductance
Circuit Elements; Ohm's Law; KCL (013.TPTU.DKK.01)
Figure 22-1 The Force Between Two Bar Magnets
From last time… Faraday: Lenz: induced currents oppose change in flux
Electricity and Magnetism
Electromagnetism Sri. S.P.JANWADKAR Associate Professor & Head
Electromagnetism.
Section 2: Magnetic Induction
Which way is the force acting?
Motors and Generators Physics 12 Adv.
Energy in a capacitor is stored
Faraday’s Discovery.

General Physics (PHY 2140) Lecture 17 Electricity and Magnetism
General Physics (PHY 2140) Lecture 18 Electricity and Magnetism
Current flowing out Current flowing in 14-1
Electromagnetic Induction
I2 is decreasing in magnitude I2 is constant
Electromagnetic Induction!
Induction An induced current is produced by a changing magnetic field There is an induced emf associated with the induced current A current can be produced.
Electricity and Magnetism
Electromagnetic Induction
LENZ’S LAW.
Chapter 30 Induction and Inductance
Presentation transcript:

LENZ’S LAW

Heinrich F.E. Lenz Russian physicist ( ) 1834 Lenz’s Law There is an induced current in a closed conducting loop if and only if the magnetic flux through the loop is changing. The direction of the induced current is such that the induced magnetic field always opposes the change in the flux.

Right Hand Rule If you wrap your fingers around the coil in the direction of the current, your thumb points north.

If the field of the bar magnet is already in the loop and the magnet is removed, the induced current is in the direction that tries to keep the field constant

2Direction of induced current In both cases, magnet moves against a force. Work is done during the motion & it is transferred as electrical energy. Induced I always flows to oppose the movement which started it. bLenz's law

Example 1 Current induced along a coil A bar magnet passes through a coil: (a)Indicate the direction of the induced I in each case. Explain briefly. (i)(ii)(iii)

Example 1 Current induced along a coil (a) Indicate the direction of the induced I. Explain. (i) When magnet’s N-pole is moving into coil, induced I flows in such a direction as to produce a N-pole to oppose the approaching of magnet. Lenz’s law I SN

Example 1 Current induced along a coil (a) Indicate the direction of the induced I. Explain. (ii) The induced I become zero  I is about to change direction.

Example 1 Current induced along a coil (a) Indicate the direction of the induced I. Explain. (iii) When magnet’s S-pole is leaving the coil, induced I flows in such a direction as to produce a N-pole to oppose the leaving of magnet. I NS

Lenz’s Law Alternating current through the coil What happens to Iron core? What will happen to the ring?

Lenz’s Law The changing magnetic field in the coil due to the change in current induces a current in the metal ring. Lenz’s Law states that the magnetic field in the ring opposes the magnetic field of the coil and forces the ring to fly away.

Lenz’s Law What just happened? How often does this occur?

Applications of Magnetic Induction Magnetic Levitation (Maglev) Trains Induced surface (“eddy”) currents produce field in opposite direction  Repels magnet  Levitates train Maglev trains today can travel up to 310 mph  Twice the speed of Amtrak’s fastest conventional train! N S rails “eddy” current

liner induction 0-70 mph in 3 sec

liner induction

FALLING MAGNET the copper tube "sees" a changing magnetic field from the falling magnet. This changing magnetic field induces a current in the copper tube. The induced current in the copper tube creates its own magnetic field that opposes the magnetic field that created it.