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The graded exams are being returned today. You will have until the next class on Thursday, Nov 10 to rework the problems you got wrong and receive 50%

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Presentation on theme: "The graded exams are being returned today. You will have until the next class on Thursday, Nov 10 to rework the problems you got wrong and receive 50%"— Presentation transcript:

1 The graded exams are being returned today. You will have until the next class on Thursday, Nov 10 to rework the problems you got wrong and receive 50% added credit. Make sure you are in class as you will not have another opportunity to turn in the reworked exam. I will be going over the answers in class on Thursday. This will also be your only opportunity to ask for corrections/clarifications on any grading mistakes.

2 Magnetic Dipole in a Non-uniform Magnetic Field y

3 Magnetic Dipoles and How Magnets Work

4 The Direct-Current Motor

5 Magnetic Field of a Moving Charge Magnetic field of a point charge moving with constant velocity

6 Example: Force between two moving protons Find the ratio of electric and magnetic forces on the protons Magnetic field of the lower proton at the position of the top one

7 Magnetic Field of Current Element The Biot-Savart law.

8 Magnetic field around a straight wire

9 Magnetic Field of Two Wires Field at points on the x-axis to the right of point (3) Magnetic field outside of a conductor pair falls off more rapidly

10 Magnetic field of a circular arc

11 Magnetic Field of a Circular Current Loop Falls off just as the electric field of the electric dipole Magnetic Field on the Axis of a Coil

12 The magnetic field of a (small) loop behaves “on the outside” like the electric field of the electric dipole of the same orientation – that’s why “magnetic dipole”.

13 Magnetic force between two parallel conductors with currents

14 Example: Two straight, parallel, superconducting wires 4.5 mm apart carry 15,000 A current each in opposite directions Should we carry about the mechanical strength of the wires?

15 Ampere’s Law

16 General Statement Magnetic fields add as vectors, currents – as scalars

17 Just as with the integral form of Gauss’s law, the integral form of Ampere’s law is powerful to use in symmetric situations

18 Magnetic Field of a Solenoid


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