Mastering the Art of Circuit Analysis

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课程主页: https://www.udemy.com/course/the-tao-of-phasor-mastering-the-art-of-circuit-analysis/

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Coursera 课程 "Mastering the Art of Circuit Analysis" 助您奠定坚实的工程基础。本课程是 "The Tao of Phasor Series" 的第一部分,着重于理解电路分析的原理和方法,而非仅仅停留在操作层面。 课程亮点包括: * **深入理解基础:** 探究欧姆定律、基尔霍夫电流和电压定律,以及节点电压和网孔电流分析法。 * **历史视角:** 回顾电学发展史,了解电阻、电容 (RC)、电感 (RL) 电路的演变。 * **微分方程:** 剖析一阶和二阶微分方程,学习如何分析电路的暂态响应,包括各种阻尼情况。 * **相量分析:** 深入理解相量这一强大工具,学习如何运用复数、复平面分析正弦激励下的电路。 * **非传统教学:** 采用独特的教学方法,解答您对电路分析“为何”的疑问,并展示分析方法的进化过程。 通过本课程,您将不仅掌握电路分析的技巧,更能理解其背后的理念,这将对您整个电气工程职业生涯产生深远影响,助您成为一名自信且成功的工程师。

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At the heart of every great engineer lies a strong foundation in the fundamentals.Do you feel like you're missing something fundamental?Are you struggling to understand the core concepts of electrical engineering?Do you feel overwhelmed by the vast amount of knowledge available, and wish you had a key to unlock the door of understanding? Look no further than "Mastering the Art of Circuit Analysis" - The first course in The Tao of Phasor Series.This course is not just about analyzing circuits with phasors:With high-quality content, insightful lessons and engaging storytelling, you'll gain a deep understanding of the fundamental principles that underpin all of electrical engineering.Our focus is not just on the HOW, but also on the WHY and the evolution of analytical methods in this field.You'll discover that phasors are not just a mathematical tool, but a KEY to unlock the secrets of electrical engineering. By the end of this course:You'll learn how to harness the vast knowledge in this field and apply it to your career. You'll learn how to master this field and develop the skills that will set you apart from your peers. You'll have a solid foundation that will impact your entire electrical engineering career.You'll be well on your way to becoming a confident and successful engineer.Join us on this journey and discover the joy of understanding the Tao of electrical engineering!Course Highlights:Don't overlook this seemingly boring agenda. I am not using a conventional teaching style, but explaining how the circuit analysis approach is built up. This may solve many of the "WHYs" in your mind.Basic Laws and Methods, OhmKirchhoff Current and Voltage Laws, KirchhoffNodal Voltage and Mesh Current AnalysisHistory of ElectricityRC and RL Circuits, 1st-order Differential Equation, 1st-order Circuit ResponseGeneral Solution for 1st-order Differential Equation, ExamplesReason to Study RLC CircuitsKelvin, Ruhmkorff CoilRLC Circuit Analysis, Maxwell, and Hertz2nd-order Differential Equation, Natural ResponseDerivatives, Newton, Leibniz, Lagrange, and ArbogastHeaviside & Heaviside's TrickCharacteristic Equation and Natural ResponsesUndamped, Underdamped, Critically Damped and OverdampedDiscriminant and Damping RatioSimple Spring System and Pendulum SystemZero-state Response Examples, Complete Response ExampleRevisit 1st-order CaseSinusoidal Properties, Formula of Power Calculations, Magnitude vs. AmplitudeSinusoidal Excitation Analysis (Time-domain)Coordinate Systems and DescartesComplex Plane and GaussComplex Numbers, Complex Plane and Sinusoidal WaveComplex Excitation Analysis (Time-domain), Phasor Excitation Analysis (Frequency-domain)Phasor Plane and Its Base FunctionSinusoidal Waves SynthesisPhase Noise: The Leeson's ModelPhasors EverywhereImpedance and Admittance, Kirchhoff's LawsMr. Bigs, SteinmetzChallenges and Silver Lining, The Paper, and CarsonThe Beauty of Phasor

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