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MAGNETISM
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MAGNETISM –THE ABILITY OF CERTAIN MATERIALS TO ATTRACT IRON, COBALT OR NICKEL.
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CLASSIFICATION OF MAGNETS
NATURAL MAGNETS ARTIFICIAL PERMANENT MAGNETS ELECTROMAGNET
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NATURAL MAGNET -EARTH
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NATURAL MAGNETS--LODESTONES
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LODESTONES BECAME MAGNETIZED BY LYING IN THE EARTH’S MAGNETIC FIELD FOR THOUSANDS OF YEARS
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THE SPHERE OF ARCHIMEDES
THE ANCIENT GREEKS RECOGNIZED THE MAGNETISM OF LODESTONES MORE THAN 2500 YEARS AGO THE SPHERE OF ARCHIMEDES
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ARTIFICIAL PERMANENT MAGNETS
HARD STEEL MAGNETIC COMPASS ALNICO
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HARD STEEL—HORSHOE MAGNET
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MAGNETIC COMPASS The magnetic compass was brought to Europe in the Middle Ages from the Chinese who had been using the compass for over 1500 years
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ALNICO—ALLOY OF: AL—ALUMINIUM NI—NICKEL CO—COBALT
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ALUMINUM CAN NOT BE MAGNETIZED
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ALNICO—SUPER STRONG MAGNETS
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ELECTROMAGNETS TEMPORARY MAGNETS PRODUCED BY MEANS OF ELECTRIC CURRENT.
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ELECTROMAGNET
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MRI ELECTROMAGNET
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LAWS OF MAGNETISM EVERY MAGNET HAS TWO POLES
LIKE MAGNETIC POLES REPEL: UNLIKE POLES ATTRACT THE FORCE OF ATTRACTION OR REPULSION FOLLOWS INVERSE SQUARE LAW ( NOT ACCURATE)
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EVERY MAGNET HAS TWO POLES- NORTH & SOUTH
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LIKE MAGNETIC POLES REPELEACH OTHER UNLIKE POLES ATTRACT EACH OTHER
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THE FORCE OF ATTRACTION OR REPULSION BETWEEN TWO MAGNETS
Pp F = k d2 THE FORCE IS PROPORTIONAL TO THE PRODUCT OF THE MAGNETIC POLE STRENGTHS DIVIDED BY THE SQUARE OF THE DISTANCE BETWEEN THEM
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NATURE OF MAGNETISM
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BREAKING A MAGNET WILL RESULT IN EACH FRAGMENT BECOMING A WHOLE MAGNET
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HEATING OR HAMERING STEEL IN PROXIMITY TO A MAGNET –WILL MAGNETIZE IT.
STROKING OF IRON WITH MAGNET WILL MAGNETIZE IT GENTLY JARRING A TEST TUBE OF IRON FILINGS NEAR A MAGNET WILL MAGNETIZE IT
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MAGNETIZATION
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AN ELECTRIC CHARGE SPINNING ON ITS AXIS WILL CREATE MAGNETIC FIELD
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MOVING CHARGED PARTICLE WILL INDUCE MAGNETIC FIELD
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THE SMALL MAGNET CREATED BY ELECTRON ORBIT IS CALLED A MAGNETIC DIPOLE
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ACCUMULATION OF MANY ATOMIC MAGNETS WITH THEIR DIPOLES ALIGNED CREATES A MAGNETIC DOMAIN
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THE MAGNETIC DIPOLES IN BAR MAGNET GENERATE IMAGINARY LINES OF THE MAGNETIC FIELD
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MAGNETIC LINES OF FORCE ARE CLOSE LOOPS
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MAGNETIC LINES OF FORCE EARTH
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MAGNETIC LINES OF FORCE BAR MAGNET
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THE STRENGTH OF MAGNETIC FIELD IS EXPRESSED IN SI UNIT TESLA
1 TESLA = 10,000 GAUSSES
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MAGNETIC ELEMENT TWO OR MORE ELECTRONS SPINNING IN THE SAME DIRECTION
NUCLEUS
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A MAGNETIC ELEMENT CAN EXISTS EITHER IN MAGNETIZED OR NON-MAGNETIZED STATE
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MAGNETIZED MAGNETIC MATERIAL
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NON-MAGNETIZED MAGNETIC MATERIAL
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IN NONMAGNETIC MATERIALS JUST AS MANY ELECTRONS SPIN IN ONE DIRECTION AS IN OTHER. THEIR OPPOSING MAGNETIC FIELDS CANCEL OUT NUCLEUS
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AURORA BOREALIS
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CHARACTERISTICS OF THE LINES OF FORCE
FROM NORTH TO SOUTH OUSIDE THE MAGNET IN THE SPACE FROM SOUTH TO NORTH INSIDE THE MAGNET IF IN THE SAME DIRECTION THEY WILL REPEL MAGNETIC FIELD IS DISTORTED BY MAGNETIC MATERIALS BUT NOT AFFECTED BY NON-MAGNETIC MATERIALS
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LINES OF FORCE
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LINES OF FORCE REPEL N S N S
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LINES OF FORCE ATTRACT S N N S
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NONMAGNETIC MATERIALS DO NOT AFFECT THE LINES OF FORCE OF MAGNETIC FIELD
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MAGNETIC MATERIALS LIKE IRONAFFECT THE LINES OF FORCE
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MAGNETIC INDUCTION (MAGNETIZATION)
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MAGNETIZATION –DOMAINS MOVE
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MAGNETIC PERMEABILITY
EASE WITH WHICH A GIVEN MATERIAL CAN BE MAGNETIZED
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MATERIAL RESISTANCE TO MAGNETIZATION
MAGNETIC RETENTIVITY MATERIAL RESISTANCE TO MAGNETIZATION
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SOFT IRON HIGH PERMEABILITY LOW RETENTIVITY
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HARD STEEL LOW PERMEABILITY HIGH RETENTIVITY
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“EASY COME—EASY GO”
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MAGNETIC CLASSIFICATION OF MATTER
FERROMAGNETIC PARAMAGNETIC MATERIALS NONMAGNETIC MATERIALS DIAMAGNETIC MATERIALS
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FERROMAGNETIC MATERIALS –IRON, COBALT, NICKEL
FERROMAGNETIC MATERIALS –IRON, COBALT, NICKEL. STRONGLY ATTRACTED BY MAGNETS
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PARAMAGNETIC MATERIALS—PLATINUM. FEEBLY ATTRACTED BY MAGNETS
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NONMAGNETIC MATERIALS—COPPER, WOOD, GLASS
NONMAGNETIC MATERIALS—COPPER, WOOD, GLASS. THEY ARE NOT ATTRACTED TO MAGNETS.
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DIAMAGNETIC MATERIALS—BERYLLIUM & BISMUTH. FEEBLY REPELLED BY MAGNETS
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DETECTION OF MAGNETISM ---COMPASS
GEOGRAPHIC NORTH POLE IS MAGNETIC SOUTH POLE????? S. MAGNETIC N. GEOGRAPHIC S. GEOGRAPHIC N. MAGNETIC
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SMALL MAGNETS
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