m agnetism – p art 3. c alendar monday – recorded lecture. today – brief review of the...

34
MAGNETISM – PART 3

Upload: magnus-clarke

Post on 14-Jan-2016

217 views

Category:

Documents


3 download

TRANSCRIPT

Page 1: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

MAGNETISM – PART 3

Page 2: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

CALENDAR

Monday – Recorded Lecture. Today – Brief review of the material + a few

problems. Today, Friday we will continue with chapter

20 materials. There will be a Quiz on Magnetism on Friday.

2

Magnetism

Page 3: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

ABOUT THOSE EXAMS - Grades look pretty bad. I will review on Friday

after I have a look at the papers. Each exam (both sections) had similar problems.

A Kirchoff Law Problem – simple A combine either capacitors or resistors and calculate

what was happening at one of them. A problem involving polarization – a thinker. A question on how much energy was required to bring

three charges together.

3

Magnetism

Page 4: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

THESE WERE THE HINTS I GAVE YOU! Anything in the three chapters is fair game. Read the sections on charge and charge effects very carefully.

We didn’t cover some of this in class. (Problem 2) Know the difference between Potential and Potential energy. Know how much work it takes to create a charge distribution.

We did it in class. (Problem 1) Know how to add capacitors and resistors and how to solve

simple circuit problems. (Problem 3) There WILL be a Kirchhoff's Law problem. (Problem 4) Coulomb’s Law and the addition of forces. Calculation of the

potential (scalar) Be sure to understand all of the HW problems that were

assigned – or not assigned!

4

Magnetism

Page 5: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

5

The force is perpendicularto the direction of motion.

The force has a constant magnitude = Bqv

This will produce circularmotion as in PHY2053.

Magnetism

Page 6: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

6

Magnetism

Page 7: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

LOOK AT THE DIRECTION OF THE FORCE AND THE VELOCITY M

agnetism

7

Page 8: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

8

frequencyangular

cyclotron thecalled is This

v/ror r v:Recall

r

mv qvB

qvB is force magnetic Ther

mv Force lCentripeta

r

v on Accelerati lCentripeta

RECALL

2

2

2

m

Bq

r

v

Bq

mvr

Page 9: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

9

Bq

mvr

m

Bq

fperiodT

f

1

2

Page 10: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

OFF ANGLE Magnetism

10

TvP

PITCH

parallel

P

Page 11: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

PROBLEM

11

An electron at point A in the figure has a speed v0 of 1.4 x 106 m/s. Find

(a)the magnitude and direction of the magnetic field that will cause the electron to follow the semicircular path from A to B and

(b) the time required for the electron to move from A to B.

(c)What magnetic field would be needed if the particle were a proton instead of an electron?

m=9.1E-31 Kge=1.6E-19 C

Magnetism

Page 12: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

FORCE ON A WIRE CARRYING A CURRENT IN A B FIELD

BilF

Page 13: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

13

A straight vertical wire carries a current of 1.20 A downward in a region between the poles of a large electromagnet where the field strength is 0.588 T and is horizontal. What are the magnitude and direction of the magnetic force on a 1.00 cm section of this wire if the magnetic-field direction is

(a)toward the east, (b) toward the south

Magnetism

Page 14: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

• Novel applications have been devised to make use of the force that a magnetic field exerts on a conductor carrying current.

Magnetism

14

Page 15: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

15

CURRENT LOOP

Loop will tend to rotate due to the torque the field applies to the loop.

What is forceon the ends??

Page 16: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism 16

THE LOOP (FROM THE TOP)

pivot

OBSERVATION

Force on Side 2 is outof the paper and that onthe opposite side is into the paper. No net forcetending to rotate the loopdue to either of these forces.

The net force on the loop is also zero,

Page 17: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism 17

THE OTHER SIDES1=F1 (b/2)Sin() =(B i a) x (b/2)Sin()

total torque on the loop is: 21

Total torque:

=(iaB) bSin() =iABSin()

(A=Area)

Page 18: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

APPLICATION: THE MOTOR

If the conductor is a loop, the torque can create an electric motor.

Page 19: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

19

Page 20: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

20

Page 21: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

21

Page 22: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

22

A circular coil of wire 8.6 cm in diameter has 15 turns and carries a current of 2.7 A. The coil is in a region where the magnetic field is 0.56 T.

What orientation of the coil gives the maximum torque on the coil.

What is this maximum torque?

Magnetism

Page 23: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism 23

ANOTHER APPLICATIONTHE GALVANOMETER

Page 24: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

CURRENTS CAUSE MAGNETIC FIELDS

Magnetism

24

Page 25: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

MAGNETIC FIELD OF LONG STRAIGHT CONDUCTOR –

• Placed over a compass, the wire would cause the compass needle to deflect. This was the classic demonstration done by Oersted as he demonstrated the effect.

Magnetism

25

Page 26: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

RESULT Magnetism

26

r(exact) 104

2

70

0

A

Tm

r

IB

Page 27: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

27

FORCE BETWEEN TWO CURRENT CARRYING CONDUCTORS

First wire produces a magnetic field at the second wire position.

The second wire therefore feels a force = Bil

Page 28: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

TWO WIRES Magnetism

28

r

II

l

F

lIr

IlBIF

r

I

2

2

2B

First Wire From B

210

210

2

10

Page 29: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

CURRENTS IN A LOOP – M

agnetism

29

Page 30: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

FIELD OF A CURRENT LOOP Magnetism

30

R

NIB

20

N turns of wire

Page 31: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

31

Page 32: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

SOLONOID Magnetism

32

Length

Turns of

number Total0

L

Nn

nIB

B=~0 outside

Page 33: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

THE SOLENOID – M

agnetism

33

r

NIB

20

B=0 outside

Page 34: M AGNETISM – P ART 3. C ALENDAR Monday – Recorded Lecture. Today – Brief review of the material + a few problems. Today, Friday we will continue with

Magnetism

34