About Course

Welcome to Electric Circuit I (DC) on Today’s School, where we dive deep into the fundamental principles of direct current (DC) circuits. This course offers a comprehensive exploration of DC circuit theory, including Ohm’s Law, Kirchhoff’s Voltage and Current Laws, series and parallel resistive circuits, and circuit analysis techniques. Students will engage with hands-on exercises, simulations, and real-world applications to solidify their understanding of circuit behavior and design.

Throughout this course, you’ll learn to:

  • Analyze and solve complex DC circuits using various methods.
  • Apply Kirchhoff’s laws and Ohm’s Law to practical circuit problems.
  • Understand the role of components like resistors, capacitors, and inductors in DC circuits.
  • Utilize circuit simulation tools to model and test circuit designs.
  • Develop problem-solving skills relevant to both academic and professional engineering contexts.

Designed for beginners and intermediate learners, this course equips you with the essential knowledge and skills needed for advanced studies in electrical engineering and related fields. Enroll now to build a solid foundation in DC circuits and kickstart your journey in electronics and electrical engineering.

Key Topics:

  • Ohm’s Law
  • Kirchhoff’s Voltage and Current Laws
  • Series and Parallel Circuits
  • Voltage and Current Dividers
  • Power Calculations
  • RC Circuits
  • Circuit Theorems

Join Today’s School to gain a thorough understanding of DC circuits and enhance your expertise in electrical engineering!

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What Will You Learn?

  • Topics in Electric Circuit I (DC) include Ohm's Law, Kirchhoff's Laws, series and parallel circuits, voltage and current division, Thevenin and Norton theorems, mesh and nodal analysis, and DC power calculations.

Course Content

Electric Circuit I DC

  • Mesh Analysis
    00:00
  • Voltage and Current Divider Rule
    00:00
  • Temperature Effect in DC Circuits
    00:00
  • Superposition in DC Circuits
    00:00
  • Parallel Circuit DC
    00:00
  • Ohm’s Law
    00:00
  • Norton’s Theorem
    00:00
  • Atomic structure
    00:00
  • Capacitor in Series
    00:00
  • Capacitor, Faraday Law, Capacitance
    00:00
  • Current
    00:00
  • Efficiency
    00:00
  • Inductor in Series Parallel Circuit
    00:00
  • Inductor
    00:00
  • Kirchhoff’s Current Law
    00:00
  • Kirchhoff’s Voltage Law
    00:00
  • Magnetic Circuit
    00:00
  • Nodal Analysis
    00:00
  • Power & Energy
    00:00
  • Power Distribution in Parallel Circuit
    00:00
  • Power Distribution in Series Circuit
    00:00
  • Resistance
    00:00
  • Series Circuit
    00:00
  • Series Parallel Circuit
    00:00
  • Thevenin Theorem
    00:00
  • Voltage and Current in Parallel Circuits
    00:00
  • Voltage Sources in Parallel
    00:00
  • Voltage Sources in Series
    00:00
  • Voltage
    00:00
  • Y Delta Conversion
    00:00

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