forces: f net causes acceleration. forces – act at distance f g – attractive btw masses. f e –...

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Forces : F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag magnetic- attractive/repulsive between objects w net e- spin.. Field g = F g /m. Test mass. E = F e /q. + Test charge. B ~ currents in wire. Compass needle.

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Page 1: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Forces:Fnet causes acceleration.

Forces – act at distance

• Fg– attractive btw masses.

• Fe – attractive/repulsive

between objects w net

charge.

• Fmag magnetic-

attractive/repulsive between

objects w net e- spin..

Field

• g = Fg/m. Test mass.

• E = Fe/q. + Test charge.

• B ~ currents in wire. Compass needle.

Page 2: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

• Magnetism

Page 3: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

What is What is Magnetism?Magnetism?

Magnetism is the force of attraction or repulsion of a material due to the spin of its electrons.

Like all forces Fmag can be a Fnet that causes acceleration & is measured in N.

Page 4: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Magnetic Fields

regions of space around a magnet where magnetic

materials feel a force.

Page 5: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Magnets create a force field which will deflect a compass needle.

• Field lines point in the direction of the deflection of the compass needle.

• Through Magnet.

Page 6: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

The poles of a magnet are where the magnetic effect is the strongest.

Each magnet has 2 poles –north, south.

Field lines are close where field is strong.

Page 7: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Field lines come out of N pole, go into S pole.

• Lines never touch or cross

• Only curves

• Field lines called lines of flux.

• Flux density shows field strength.

Page 9: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

More than 1 magnet – out of N, into S.

Page 10: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Earth has a mag. field. The north seeking end of a compass points toward Earth’s N geographic pole.

Page 11: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Earth’s north pole acts like south pole of bar magnet.

Page 12: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Demo Magnetic Field Lines

• magnet on iron bars.

Page 13: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

What causes magnetism?

Page 14: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Atoms have magnetic fields due to excess e- spin.

These areas of atoms are called “domains”

Groups of atoms join so that their magnetic fields are all going in the same direction.

Page 15: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

When an unmagnetized substance is When an unmagnetized substance is placed in a magnetic field, the substance placed in a magnetic field, the substance can become magnetized. This happens can become magnetized. This happens when the spinning electrons line up in when the spinning electrons line up in the same direction.the same direction.

Page 16: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

An unmagnetized substance An unmagnetized substance looks likelooks likethis…this…

Page 17: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

While a magnetized substance While a magnetized substance lookslookslike this…like this…

Page 18: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Poles of a magnet always come in pairs!

Page 19: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

How to break a magnet:

1. Drop it

2. Heat it

This causes the domains to become random again!

Page 20: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Non-magnets with magnetic properties can be polarized in the presence of a magnetic field.

N

N

S

S

Page 21: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Minute Physics How do magnets work 6.5 minutes.

• http://www.youtube.com/watch?v=hFAOXdXZ5TM

Page 22: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Hwk Intro Sheet.

Page 23: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Relationship of Electricity & Magnetism

Page 24: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Similarities of Magnetic (B) to Electric Fields (E)

• field lines also called lines of flux.

• Both attract opposite. Repel like.

• Drop off with d2.

• Both Polarize objects.

• Flux density shows intensity of field.

• Both vector quantities.

Page 25: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Differences

• For B field, direction compass needle points.• E field direction + test charge would move• Magnet feels no force in static E field.• Charges feel no force in static B field.• Isolated poles do not exist. Isolated charges do.

Page 26: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Electromagnetism 57 Min.

• http://www.youtube.com/watch?v=bht9AJ1eNYc

• Old Navy film How magnetism produce Electricity 7 min.

• http://www.youtube.com/watch?v=uoQelu7XRjk

Page 27: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag
Page 28: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

-Moving charges cause magnetic fields.

When a current flows, a magnetic field is generated.

*Stationary charges do not cause magnetic fields, but do cause electric fields.

Page 29: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Sketching Fields

Use arrows to show the direction of compass needle deflection.

Page 30: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Field into the page X like tail of arrow.

Field out of page … like tip of arrow.

Page 31: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag
Page 32: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag
Page 33: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Mag Field Direction around Wire.

Page 34: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag
Page 35: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

2nd Hand Rule:Wire loop – thumb in current direction. Fingers in B direction.

Page 36: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Solenoid – Coils of wire (can be wrapped around core of iron).

Page 37: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

3rd hand rule: Fingers in direction of current. Thumb points to magnetic N. Pole. Solenoids act like bar magnets.

Page 38: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Charged particles moving in B fields feel a force!!

Force direction determined by hand rule three.

Page 39: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Fourth

Page 40: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Direction of mag force on q perpendicular to v vector & to B field.

For +q place right hand fingers into field, thumb points to v, palm points to mag force.

For – q use left hand.

Page 41: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Electron in mag field B.

Page 42: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Force is proportional to amount of charge on particle.

Page 43: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Force on current carrying wire.

The current in a wire also feels a force in mag field.

Page 44: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Fifth hand rule:–force direction on wire: fingers into field, thumb in current direction, palm points toward force direction.

Page 45: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Currents in same direction exert attractive forces.

Page 46: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Current in opposite directions, create fields with repulsive forces.

I1 I2

F1 F2

By Newton’s 3rd Law, F2 = -F1.

Page 47: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

The Ampere (A) is a unit of rate of current flow, but is based on the force felt between 2 current-carrying wires.

The Ampere, not the Coulomb, is considered a fundamental unit!! Very weird indeed!

Page 48: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

For a straight length of wire the induced B field drops off with distance (r).The circles should get…

B = oI o constant find it. 2r r = dist fr wire m

I = current - A B = field strength T

Page 49: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Mag Field Strength around a solenoid:

B = oNI N = number turns of wire

l I = currentl = length of wire in field m

Page 50: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Force between two wires proportional to current in wires:

F = oI1I2l 2r

Page 51: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Ex 4: What is the magnitude & direction of the force btw 5.00 m lengths of wire each carrying 7.5 A of current in the same direction if they are separated by 25.0 cm?

2.25 x 10-4 N toward each other.

Page 52: Forces: F net causes acceleration. Forces – act at distance F g – attractive btw masses. F e – attractive/repulsive between objects w net charge. F mag

Mag Field Between Current Carrying Wires.These show neg charge flow.