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LECTURE PLAN & PROGRESS REPORT Faculty Name : RAKESH THAPLIYAL Subject : Basic Electrical Engineering [TEE-201] Course : B.Tech No. of Credits : 4 Semester : 2 nd Section : F Unit Lec tNo . Topics to be covered Topic actually covered Date I DC Network Theory 1 Basics of Electrical Engineering and an overview of the subject & Ohm’s Law 2 Ideal & Practical Energy Sources, Energy Source Transformation 3 Independent & Dependent Energy Sources, KCL, KVL, Superposition Theorem 4 Mesh Analysis & Node Analysis 5 Thevenin’s and Norton’s Theorem and Significance 6 Maximum Power Transfer Theorem, Star-Delta Transformation II Steady State Analysis of AC Circuits 7 Sinusoidal and Phasor Representation of Voltage & Current 8 Average Values, RMS Values, Form Factor and Peak Factor 9 Behavior of Resistance, Capacitance and Inductance towards AC Supply 10 RLC Series and Parallel Circuits 11 AC Circuit Analysis using j Operator, Power Factor Concept 12 Phenomena of Resonance, Bandwidth and Quality Factor for Series Resonance and applications II I 3 Phase AC Circuits 13 Concepts of 3-phase Voltage Generation & Advantages 14 Importance of Star and Delta Connections 15 Relation b/w Line and Phase Voltage/Current for Star-Delta Connections 16 Three-Phase Power Measurement using 2-

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LECTURE PLAN & PROGRESS REPORT Faculty Name: RAKESH THAPLIYAL

Subject: Basic Electrical Engineering [TEE-201] Course

: B.Tech No. of Credits : 4 Semester: 2nd Section: F

Unit LectNo.Topics to be coveredTopic actually coveredDate

IDC Network Theory1Basics of Electrical Engineering and an overview of the subject & Ohms Law

2Ideal & Practical Energy Sources, Energy Source Transformation

3Independent & Dependent Energy Sources, KCL, KVL, Superposition Theorem

4Mesh Analysis & Node Analysis

5Thevenins and Nortons Theorem and Significance

6Maximum Power Transfer Theorem, Star-Delta Transformation

IISteady State Analysis of AC Circuits7Sinusoidal and Phasor Representation of Voltage & Current

8Average Values, RMS Values, Form Factor and Peak Factor

9Behavior of Resistance, Capacitance and Inductance towards AC Supply

10RLC Series and Parallel Circuits

11AC Circuit Analysis using j Operator, Power Factor Concept

12 Phenomena of Resonance, Bandwidth and Quality Factor for Series Resonance and applications

III3 Phase AC Circuits13Concepts of 3-phase Voltage Generation & Advantages

14Importance of Star and Delta Connections

15Relation b/w Line and Phase Voltage/Current for Star-Delta Connections

16Three-Phase Power Measurement using 2-Wattmeter Method

17Analysis for Balanced Loads

IV

1-phase Transformer

18Introduction to Series and Parallel Magnetic Circuits

19Eddy Currents and Hysteresis Losses

20Faradays Laws of Electromagnetic Induction

21Construction of a Single Phase Transformer

22Types of Transformer according to applications

23Principle of Operation and Working

24Equivalent Circuit [Ideal vs Practical Transformer]

25Efficiency & All-day Efficiency of 1-phase Transformer

26Open Circuit Test and Analysis

27Short Circuit Test and Analysis

VDC Machines28Principle of operation of DC Machines

29Construction and Types of DC machines

30Construction and Types of DC machines

31Analysis of Torque Equations

32Analysis of EMF Equation

3-phase Induction Motor33DC Motor Characteristics

34DC Motor Characteristics

35Losses and Efficiency, Applications

36Losses and Efficiency, Applications

37Similarities and Differences between Transformer and Induction Motor, Principle of Operation

38Three phase Rotating Magnetic Field

39Constructional Features

40Circuit Model Equations

41Equivalent Circuit, Concept of Torque Production

42Concept of Torque Production and equation

Text Books : B. L. Theraja , A.K. Theraja A text-book of Electrical Technology Vol -1 &2 S. Chand, 2012

I.J. Nagrath, Basic Electrical Engineering, Tata Mc Graw Hill, 2011

Reference Books : J.B. Gupta A text-book of Electrical Engineering Katson Books,2011

W.H. Hayt & J.E. Kemmerly, Engineering Circuit Analysis Mc Graw Hill,2012

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