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Source of Magnetic Field
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Source of Magnetic Field

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Long, Straight Current-carrying Wire

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Long, Straight Current-carrying Wire

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µ0

permeability is the measure of the ability of a material to support the formation of

a magnetic field within itself.

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Long, Straight Current-carrying Wire

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Long, Straight Current-carrying Wire

Sample Problem:

A long, straight wire allows 3.50 A through it, What is

the magnitude of the magnetic field 25.0cm from

the wire?

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Answer

B=2.80x10-6 T

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Center of a Circular Current-carrying Loop

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Center of a Circular Current-carrying Loop

r=radius of the loopB=magnetic field strengthI=currentµ0=permeability of free space (4Π x 10-7 m/A)

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Center of a Circular Current-carrying Loop

r=radius of the loopB=magnetic field strengthI=currentµ0=permeability of free space (4Π x 10-7 m/A)

B=µ0I / 2r

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Center of a Circular Current-carrying Loop

Sample Problem:A circular loop with a diameter of 15.0cm lies

on a horizontal plane as viewed from above. Through it is a 3.80A of current moving clockwise. What is the magnitude and direction of magnetic field at its center?

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Answer

B=3.18x10-5 T

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Current carrying Solenoid

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Current carrying Solenoid

N=no. of loopsL=length of coilB=magnetic field strengthI=currentµ0=permeability of free space (4Π x 10-7 m/A)

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Current carrying Solenoid

N=no. of loopsL=length of coilB=magnetic field strengthI=currentµ0=permeability of free space (4Π x 10-7 m/A)

B=µ0NI / L

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Sample Problem

A solenoid 150.0cm long with 1.550 turns has a

central magnetic field of 1.50mT. Find the current

through the coil.

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Answer

B= 1.16 T

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Exercises:

1. A long, straight wire allows 6.20 A through it, What is the magnitude of the magnetic field 17.0cm from the wire?

2. A solenoid 15.0 m long with 2.50 turns has a central magnetic field of 7.80 T. Find the current through the coil.

3. A circular loop with a diameter of 20.0 m lies on a horizontal plane as viewed from above. Through it is a 4.80A of current moving clockwise. What is the magnitude of magnetic field at its center?