Poisson's and Laplace Equations: Derivations and Explanations

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Poisson's and Laplace Equations is covered by the following outlines:

0. Poisson's equation
1. Laplace equation
2. Derivation of Poisson's equation
3. Derivation of Laplace equation
4. Physical interpretation of Poisson's equation
5. Physical interpretation of Laplace equation

Chapter-wise detailed Syllabus of the Electromagnetics Theory Course is as follows:

Basics of Vector, Parameters of vector, Examples of Vector, Coordinate Systems, Magnitude and direction of vector, Dot and Cross multiplication of Vector, Resultant of vector, Law of parallelogram, Law of polygon, Cartesian Coordinate System, Cylindrical Coordinate System, Spherical Coordinate System, Conversion of Coordinate System.

Coulomb's Law, Electric Field, Electric Flux, Gauss's Law for Electric field, Electric Dipole, Electric Potential, Boundary Conditions of Electric field, Capacitor and Capacitance.

Biot Savart Law, Ampere Circuit Law, Maxwells Equations, Magnetic Field, Gauss's Law for Magnetic field, Examples of Magnetic field, Vector Magnetic potential, Faraday's Law, Boundary conditions of Magnetic field, Induction and Inductance.

EM wave propagation, Plane EM wave in medium, Skin Effects, Intrinsic Impedance, Loss tangent of medium, Pointing Theorem, Examples on EM wave propagation.

Basics of Transmission Line, Parameters of Transmission Line, Types of Transmission Line, Examples of Transmission Line, Impedance matching of Transmission Line, Losses in Transmission Line, Transmission Line Parameters {Propagation constant, Phase constant, Attenuation constant, Characteristics Impedance, Reflection Coefficient, Transmission Coefficient, VSWR, Input Impedance, Line Impedance}.

Basics of Smith Chart, Mathematics of Smith Chart, Examples of Smith Chart, Examples of smith chart using following parameters: VSWR, Reflection Coefficient, Load Impedance, Input Impedance, Line Impedance, Vmax and Vmin location, Admittance, Parallel stub Impedance matching, Series stub Impedance matching.

Engineering Funda channel is all about Engineering and Technology. Here this video is a part of Electromagnetic Theory.

#PoissonsEquation #LaplaceEquation #ElectromagneticTheory @EngineeringFunda
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EngineeringFunda
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I just love your colour pens. Notes becomes attractive when we make them with colour pens. And nice explanation sir it was so easy. 😊

Khushisingh
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Sir your explanation is azammmming, and detailed no one can explains like u even my college lecture also, I seen ur almost half of the series of emf and I getting what is emf subject, a tons of thks for u to making this much of series videos for engg students.

rohitkatke
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That's the exact kind of video i have been searching for 🙏🙏

_hiddenprofile_
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nice and detailed explanation. thankyou for the lecture sir

SerdceDikarya
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....Gud job 👍 thank you for your this video 🤗 thanks

sakshu
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Sir i have a 2nd year supply exams so please make a videos on this kind of subjects so it will be really helpful for me

aneera
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Sir, is del a vector or scalar quantity ? I get confused ! In some places the above arrow sign is absent but here the arrow sign is present . Please answer ASAP 🙏 .

DK-pwzf
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It is now becoming clearer to me sir, thank you

tituskiprono
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Explanation is good... Try to improve your pronunciation.... Good luck....

darpanbhattacharjee
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Sir laplace Or poisson eqn mein bss etna hee hai ya Or bhi kuchh hai. Or exam mein eska derivation hee pochha jata hai na?

shaileshbhagat
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Is This equation is for magnetic field????

shrutiprasad
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EngineeringFunda
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sir is here no need to prove gauss law of electric field ? .. and same as you teach is writen in exam

narayanprajapati
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Sir, why the electric field is equal to the negative of potential gradient. Here, why this is negative sign

nilakanta
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This concept are used in our jee advanced practice

pwarevolutionunoffical
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Sir one question, here on radius b, we have voltage v, while inside is 0, so how we calculate that voltage, i mean electric potential

safeegull
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why you said to ground that metallic tiffin like it won't be zero potential until grounded.

adhit
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Another great lecture sir, thank you.

DTrain
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Sir... increase the size of equal...it looks like a dot

singleanuj