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Electrical Engineering

✴Electrical engineering is the study of electromagnetism, electricity and electronics. This electrical enginee...

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Electrical engineering is the study of electromagnetism, electricity and electronics. This electrical engineering App is better explaining these concepts and basics of electricity.The App is designed for easy learning, revisions, references at the time of exams and interviews. This app cover most of related topics and Detailed explanation with all the basics topics. Be a professional with this app. This app is for all engineering students and professionals across the world. ✴

►In this App, you will learn topics such as Inductance and Capacitance, Transients, Steady-State Sinusoidal Analysis, and Frequency Response, Bode Plots, and Resonance plus much more.Comprehensive handbook detailing the application of electrical engineering to the oil, gas , petrochemical industries and offshore industries. These have significantly different characteristics to large-scale power generation and long distance public utility industries. An essential reference for electrical engineering students, designers, operations and maintenance engineers and technicians.☆

Few Important Topics covered in this App are Listed Below】

What Is Electrical Engineering
Nature of Electricity
Norton Theorem
Classification of Engineering Materials
Why Measure Voltage?
Battery Technology
What is black Body?
Power Plants and Types
Control Engineering
Electrical Power Transformer
Electrical Motor
Induction Motor
⇢ DC Motor or Direct Current Motor
Alternator Synchronous Generator
Electrical Switchgear Protection
Digital Electronics
What is Electrical Drive?
⇢ Kirchhoff’s Voltage Law (KVL)
Current Divider Circuits
What Is LiDAR and How Can I Use It?
Modelling the Pulse-Width Modulator
Switching Losses: Effects on Semiconductors
⇢ An Intro to Multiplexing: Basis of Telecommunications
Boolean Identities
⇢ A Practical Introduction to Operational Amplifiers
⇢ eMMCs: An Introduction
Universal Logic Gates
Understanding and Applying the Hall Effect
Introduction to Operational Amplifiers
⇢ AC Phase
Diodes and Rectifiers
Negative Feedback
Understanding Illuminance: What’s in a Lux?");
Measuring and Calculating Lux Values
Measuring and Calculating Lux Values, Part 2
Characteristics of Operational Amplifiers
The Inverting Configuration of an Amplifier
⇢ Non-inverting Configuration of an Operational Amplifier
Characteristics of Junction Diodes
Electric Fields and Capacitance
Factors Affecting Capacitance
Introduction to Capacitive Touch Sensing
Circuits and Techniques for Implementing Capacitive Touch Sensing
Analysis of Forward Conducting Diodes
How Sensor Fusion Works
Generation, Transmission and Distribution of Electric Power
Thermal, hydel & nuclear power stations
Transmission of power
Single line representation of power system
Solution of Electric Circuit Based on Mesh (Loop) Current Method
Solution of Electric Circuit Based on Node Voltage Method
Examples of Electric Circuit Based on Node Voltage Method
Wye (Y) - Delta (∆) OR Delta (∆)-Wye (Y) Transformations
Conversion from Delta (Δ) to Star or Wye (Y)
Application of Star (Y) to Delta (Δ) or Delta (Δ) to Star (Y) Transformation
Examples of Star (Y) to Delta (Δ) or Delta (Δ) to Star (Y) Transformation
Superposition Theorem in the context of dc voltage and current sources acting in a ⇢ ⇢ resistive network
Application of superposition theorem
Example of superposition theorem
Limitations of superposition Theorem
⇢ Thevenin’s and Norton’s theorems in the context of dc voltage and current sources acting in a resistive network
The procedure for applying Thevenin’s theorem
Maximum Power Transfer Theorem
Study of DC transients in R-L and R-C circuits
Inductance calculation from physical dimension of coil
Study of dc transients and steady state response of a series R-L circuit.
Energy stored in an inductor
Capacitor and its behaviour
Response of a series R-L-C circuit due to a dc voltage source

Last update

April 2, 2020

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