Get all the details about Electrical Engineering..
►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