3.1.1 Introduction to Laplace's Equation

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Chapter 3: Special Techniques for Calculating Potentials

3.1: Laplace's Equation

3.1.1 Introduction

I briefly talk about what we're trying to accomplish by solving Laplace's Equation, and some of the challenges involved.

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Thank you very much. I really appreciate your generous effort.
I am a physics student from the middle east and your videos help me understand Electrodynamics.

mathematician
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No, Mr. Mudbari. I must disagree with you.

YOU'RE the man!

jg
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I watched this in 240p and it seems perfectly readable... what device are you using?

jg
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The formula for V might be incorrect, shouldn't it be 1/r^2 within the integral? Because the result needs to be 1/r

PsyTrip
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HI, great videos
but i didnt understand when to use laplace equation and when to use
(charge/(R-R'))ds

Danielgadot
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No, you're great! Than YOU so much.

jg
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Ahh, this is because now we are working backward. We may or may not be given some or all of the charges. We are instead given some kind of boundary condition that acts either on rho, V, or E fields and we are left to determine everything else given that.

In other words, you know that speed = distance / time, and now we are going to explore how to solve all problems involving speed, distance, and time.

jg
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There's a playlist in the description. Start there.

jg
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fantastic =pray solve some examples -thanks

karimkhan
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This is more of calculation than introduction.

zingg
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You just read the textbook and copy from it!
I know the name of that book *David J griffiths*

kartikjha
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what the hell?

don't understand anything

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