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Find the Best Online Electronic Circuits Tutors & Teachers for Private Lessons

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115 online electronic circuits teachers

Adam

verified teacher icon
Poland
C$44

60-min

/h

trusted teacher iconTrusted teacher

Tutoring in Electrical Engineering, Circuit Theory, Analogue and Digital ElectronicsTranslate this text using Google Translate.

Tutoring in Electrical Engineering, Circuit Theory, Analogue and Digital ElectronicsTranslate this text using Google Translate.

I graduated in Electrical Engineering and Electronics and Telecommunications at the University of Science and Technology(AGH). I will give tutoring in the theory of electrical circuits, electrical engineering and analog and digital systems. I provide additional materials. Welcome. Scope of assistance: - Electronic semiconductor components - Bipolar transistor - working point setting, small signal description, common collector, common emitter, common base - Differential amplifier - transition zone, polarization methods - Operational amplifier - circuits with an operational amplifier, negative feedback, non-linear amplifier application - Linear and pulse stabilizers - Analog electronic circuits - Digital electronic circuits - ADC / DAC converters - Current, voltage and magnetism issues - Non-isolated converters (boost, buck and buck-boost, SEPIC) - Non-isolated converters (flyback, forward, full-bridge, half-bridge, Push-Pull, Ćuk) - Resonant and ferroresonant converters - selective amplifiers - power amplifiers -stabilizers with continuous work - PLL phase coupling loop - network rectifiers - switching power supplies -high frequency technique and fast switching - Kirchoff's laws, delta-star / star-delta transform - Thevenin's theorem - loop potential method - the method of nodal potentials - methods of solving DC and sinusoidal current circuits, - crosses and filters - circuits containing magnetically coupled coils - operational amplifiers - transmission properties of linear systems - three-phase, - the phenomenon of resonance, - vector (phasor) charts of currents and voltages, - transient states - classical method I also provide assistance in the field of: - matlaba / simulinka, scilab, LTSpice, PSpice, Spice, Tina-TI, Falstad Simulator - Interfaces: CAN, I2C, SPI, UART - ADC converter - designing electronic diagrams in EAGLE, Altium. If you have any questions, write to me - I will answer up to 24 hours To facilitate cooperation, please include in the e-mail: - topics that I am supposed to help with, if you have tasks, you can attach them in the e-mail - since when you need help and for how long

Abdullah

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Egypt
C$24

60-min

/h

trusted teacher iconTrusted teacher

Electrical engineering fundamentals basic circuitsTranslate this text using Google Translate.

Electrical engineering fundamentals basic circuitsTranslate this text using Google Translate.

1. Introduction to Electrical Circuits • Basic concepts: charge, current, voltage, and power • Passive and active circuit elements (resistors, capacitors, inductors, sources) • Ohm’s Law and Kirchhoff’s Laws (KVL and KCL) 2. Circuit Analysis Techniques • Series and parallel circuits • Voltage and current division rules • Node voltage method • Mesh current method • Source transformation • Superposition theorem • Thevenin’s and Norton’s theorems 3. Capacitors and Inductors • Capacitance and inductance fundamentals • Energy storage and release in capacitors and inductors • Transient response in RC, RL, and RLC circuits • Initial and final value theorems 4. First and Second-Order Circuits • Natural and forced responses • Step response analysis • Time constants • Overdamped, underdamped, and critically damped systems 5. Sinusoidal Steady-State Analysis • AC sources and phasor representation • Impedance and admittance • AC circuit analysis using phasors • Power in AC circuits: real, reactive, apparent power, and power factor 6. Frequency Response and Resonance • Resonance in series and parallel RLC circuits • Bandwidth and quality factor • Bode plots (optional or advanced) 7. Three-Phase Circuits (Introductory Level) • Star and Delta configurations • Line and phase quantities • Balanced three-phase power calculations 8. Circuit Simulation and Practical Applications • Use of simulation tools such as PSPICE, Multisim, or MATLAB/Simulink • Real-world applications and circuit design examples

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