ii. electric field [physics 2702] dr. bill pezzaglia updated 2015feb09

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II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

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Page 1: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

II. Electric Field[Physics 2702]

Dr. Bill Pezzaglia

Updated 2015Feb09

Page 2: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

II. Electric Field

A. Faraday Lines of Force

B. Electric Field

C. Gauss’ Law (very lightly)

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Page 3: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

A. Lines of Force

1) Action at a Distance

2) Faraday’s Lines of Force

3) Principle of “Locality”

3

Page 4: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

1. “Action at a Distance”

• Newton proposes gravity must act instantaneously, regardless of distance (else angular momentum not conserved).

• “actio in distans” (action at a distance), no mechanism proposed to transmit gravity

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"...that one body may act upon another at a distance through a vacuum without the mediation of anything else, by and through which their action and force may be conveyed from one to another, is to me so great an absurdity that, I believe no man, who has in philosophic matters a competent faculty of thinking, could ever fall into it." -Newton

Sir Isaac Newton(1643-1727)

How does moon “know”the earth is there to falltowards it?

Page 5: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2a. Sir Humphry Davy 1778 - 1829

•1807 Electrolysis, used to separate salts. Founds science of electrochemistry.

•His greatest discovery was Michael Faraday.

•1813-15 takes Faraday with him on grand tour visiting Ampere and Volta.

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Page 6: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2b. Michael Faraday 1791 - 1867

•1821 First proposes ideas of “Lines of Force”• Example: iron filings over a magnetic show field lines

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Page 7: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2c. Electric Lines of Force

•Electric charges create “electric field lines”•Field lines start on + charges, end on –•A plus charge will tend to move along these lines

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Page 8: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2d. Other Properties •Field Lines can’t cross (else physics would not be deterministic, ambiguity which way to go)

•Density of lines is proportional to the “strength” of the force

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Page 9: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

3. Principle of Locality

• Argues that the field lines have independent reality

•Force fields exist as distortions in the “aether” of space

•Alternative to “action at a distance”, charges Locally interact with force lines

•Ideas rejected by others. He can’t put them into mathematical form.

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I cannot conceive curved lines of force without the conditions of a physical existence in that intermediate space. (Michael Faraday)

Page 10: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

B. Electric Field

1) Definition of Field

2) Sources of Field

3) Electrodynamics

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Page 11: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

1a. James Maxwell (1831-1879)

•1855 essay On Faraday's Lines of Force, suggests lines are like an imaginary incompressible fluid (obeying hydrodynamic equations)

•1861 paper On Physical Lines of Force, proposes “real” physical model of vortices for magnetic field

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Page 12: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

•Definition: force per unit test charge(i.e. don’t want test charge to affect field)

•Units of Newton/Coul (or Volts/meter)

•So force on charge is: F=qE

1b. Definition of Field 13

q

FLimEq

0

+E

Fq

Page 13: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

1c. Analogy to Gravity

• Gravitational Force Field:force per unit test mass

• i.e. its an “acceleration of gravity” field

• Mass is the “charge” of gravity: F = mg

14

m

FLimgm

0

Page 14: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2. Sources of E Field

(a)Point Charge Source (monopoles

(b)Dipoles

(c) Field of Dipole (incomplete)

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Page 15: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2.a Monopole Sources

• A positive charge is a “source” of electric field. Field radiates outward from a point source

• A negative charge is a “sink” of electric field. Field radiates inward

• Field strength: E=kQ/r2

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Page 16: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2.b Dipole Sources• An “electric dipole” is a “stick”

of length “L” with + charge on one end and equal – charge on other.

• Dipole moment: p=QL• The vector “p” points along axis

from – to + charge

• Units (SI) is Cm• Standard in Chemistry is the

Debye: 1D=3.33564x10-30 Cm

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Page 17: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

2.c Field of Dipole

• Derivation will be done on board. Basically you use “superposition” of fields of two monopoles.

• Field of dipole along its axis drops off like the cube of the distance!

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32212

21

2)(z

pk

Lz

kQ

Lz

kQzE

Page 18: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

3. Electrodynamics

a) Force on monopole

b) Torques on Dipoles

c) Van der Waal Forces

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Page 19: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

B.3.a: Force on a Charge (monopole)

• Force on positive charge is in direction of field

• Force on negative charge is opposite direction of field

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EqF

+E

Fq

-E

Fq

Page 20: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

B.3.a Point Charge Electrodynamics

• Force between monopoles is hence Coulomb’s law

• Force between dipole “p” and monopole “q” decreases cubically:

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3

2

z

kpqEqF

rR

QqkEqF ˆ

2

Page 21: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

B.3.b Torque on Dipole

• An electric dipole will want to twist and line up with the electric field

• Torque on a dipole in an electric field is:

• Recall dipole momentp=qL

21

cospE

Ep

Page 22: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

B.3.c Gradient Forces on Dipole(Van-der-Waal’s forces between molecules,

e.g. Hydrogen Bonding in water)

• If field is not constant (has a “gradient”) then there will be a force on a dipole

• Forces between dipoles (along a line) can be shown to be:

22

x

EpLxqELxqEF

)2/()2/(

4216

z

ppkF

Page 23: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

C. Gauss’s Law (Lightly)

Ignoring the mathematics, Gauss’s law (1813) has the following results:

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Page 24: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

Spherical Symmetry:

Electric field of a spherical ball of charge the same as a point charge:

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Note that the result is INDEPENDENT of radius of ball!

Where “r” is measured from center of ball.

204

)(r

QrE

Page 25: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

Field is zero inside a conductor

Consider a solid conducting sphere.

Electric charge will be pushed to surface

Electric field inside conductor is zero

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Page 26: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

Electric Field inside a conductor is ZERO

Example of Faraday Cage: An external electrical field causes the charges to rearrange which cancels the field inside.

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Page 27: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

Cylindrical Symmetry:

Electric field of a charge “Q” spread out on a long cylinder (length “L”) is:spherical ball of charge the same as a point charge:

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Note that the result is INDEPENDENT of radius of cylinder.

e.g. a line charge, or charge on a wire

Lr

QrE

02)(

Page 28: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

c. Plane Geometry

Consider a large flat sheet (area “A”) with charge “Q” spread out uniformly. The electric field outside is constant [Laplace 1813].

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A

Q

AE

02

With the application of superposition principle, you can show that parallel plates of opposite charge have a constant field between (and zero outside).

A

Q

AE

0

Page 29: II. Electric Field [Physics 2702] Dr. Bill Pezzaglia Updated 2015Feb09

References

•http://maxwell.byu.edu/~spencerr/phys442/node4.html

•http://en.wikipedia.org/wiki/Timeline_of_Fundamental_Physics_Discoveries

•http://www.oneillselectronicmuseum.com/index.html

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