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Engineering Electromagnetics 2026

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Free Download Engineering Electromagnetics 2026

Download this premium online course featuring high-quality video training, step-by-step lessons, practical demonstrations, and expert instruction. With Engineering Electromagnetics 2026, you'll gain practical knowledge through structured learning, hands-on examples, and real-world applications. This comprehensive eLearning resource is ideal for students, professionals, freelancers, and lifelong learners looking to develop valuable skills and stay current with modern industry practices at their own pace.
Published 8/2026
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 48h 55m | Size: 13.61 GB
Engineering Electromagnetics


What you'll learn


Evaluate Electric field in various coordinate system such as rectangular, cylindrical and spherical coordinate in electostatic field
Study Electric flux density and Gauss's law in electrostatic field
Understand divergence in each coordinate system
Calculate potential in electrostatic field and Laplace equation and Poisson equation and understand gradient
Study Current density, image theory and calculate capacitance
Calculate magnetic field using Biot-Savart law and ampere circuital law
Calculate inductance and magnetic circuit. Also, understand curl
Study Maxwell and wave equation in time varying field
Study Transmission Line theory and plane wave equation
Study guided wave such as TE, TM mode
Briefly preview for antenna propagation and spec

Requirements


Vector calculus , differentiation and integration. Circuit theory , physics

Description


This course is for electromagnetic theory.
First, vector analysis and coordinate system are introduced to calculate electric and magnetic field.
In static electromagnetic field, electric field can be calculated in various coordinate. Electric flux density is introduced.
and gauss's law and divergence theorem is exploited to find Electric flux density easily.
Potential is introduced and laplace and poisson equation is used for finding potential and calculate capacitance.
Conductor and dielectric material is studied and also boundary condition is also introduced.
static Magnetic field can be found by Biot-Savart law and ampere circuital law. Scalar and vector magnetic potential is introduced. Force and Torque due to magnetic field and current can be calculated. Self and mutual inductance can be calculated.
In time varying field, Maxwell equation is introduced and this equation generate wave equation. This wave equation can be used in transmission line. In transmission line , Voltage and current are propagating. Impedence , reflection coefficient and VSWR are also studied. This wave equation can be also used to find electric and magnetic field in plane wave. when plain wave is incident normal or oblique to the boundary, reflection coefficient can be studied. In dispersion media , time delay and group velocity is also introduced.
In Wave guide, parallel, rectangular , dielectric slab and optic fiber is introduced. TE and TM mode also studied. Antenna propagtion and antenna specification are also studied.

Who this course is for


people interested in electromagnetic theory and wave
people who want to know theoretical fundamental about microwave devices
University student, who want A+ grade in electromagnetic course
Engineers , who are involved in related field

Homepage


https://www.udemy.com/course/engineering-electromagnetics


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