GATE 2019 Electronics and Communication Engineering
Book information
Description
Cover About Pearson Title Copyright Preface Key Pedagogical Features Syllabus: Electronics and Communication Engineering Chapter-wise Analysis of Previous Years’ Papers General Information about GATE Solved Papers 2017 Solved Paper 2018 PART I General Aptitude PART A Verbal Ability Chapter 1 Grammar Chapter 2 Vocabulary PART B Numerical UNIT I Quantitative Aptitude Chapter 1 Simple Equations Chapter 2 Ratio-Proportion-Variation Chapter 3 Numbers Chapter 4 Percentage, Profit, and Loss Chapter 5 Simple Interest and Compound Interest Chapter 6 Average, Mixtures, and Alligations Chapter 7 Time and Work Chapter 8 Time and Distance Chapter 9 Indices, Surds, and Logarithms Chapter 10 Quadratic Equations Chapter 11 Inequalities Chapter 12 Progressions Chapter 13 Permutations and Combinations Chapter 14 Data Interpretation UNIT II Reasoning Chapter 1 Number and Letter Series Chapter 2 Analogies Chapter 3 Odd Man Out Chapter 4 Coding and Decoding Chapter 5 Blood Relations Chapter 6 Venn Diagrams Chapter 7 Seating Arrangements Chapter 8 Puzzles Chapter 9 Clocks and Calendars PART II Engineering Mathematics Chapter 1 Linear Algebra Chapter 2 Calculus Chapter 3 Differential Equations Chapter 4 Complex Variables Chapter 5 Probability and Statistics Chapter 6 Numerical Methods Part III Electronics and Communication Engineering UNIT I Networks Chapter 1 Network Elements and Basic Laws Chapter 2 Network Theorems Chapter 3 Transient Analysis (Ac and Dc) Chapter 4 Two-Port Networks Chapter 5 Resonance UNIT II Signals and Systems Chapter 1 Introduction to Signals and systems Chapter 2 Laplace Transform Chapter 3 Z Transform Chapter 4 Continuous time Fourier Analysis Chapter 5 Discrete time Fourier Analysis UNIT III Control Systems Chapter 1 Introduction to Control Systems Chapter 2 Time Response Analysis Chapter 3 Stability Analysis Chapter 4 Controllers and Compensators Chapter 5 State Space Analysis UNIT IV Electronic Devices and Circuits Chapter 1 Semiconductor Theory Chapter 2 Theory of P-N Junction Diode Chapter 3 Bipolar Junction Transistors Chapter 4 Field Effect Transistors Chapter 5 Optoelectronic Devices UNIT V Analog Circuits Chapter 1 Diode Circuits Chapter 2 Transistor Biasing Chapter 3 Amplifiers Chapter 4 Differential and Feedback Amplifiers Chapter 5 Operational Amplifiers UNIT VI Digital Circuits Chapter 1 Number Systems Chapter 2 Boolean Algebra Chapter 3 Combinational Circuits Chapter 4 Sequential Circuits Chapter 5 A/D and D/A Circuits and Semiconductor Memories Chapter 6 Microprocessor 8085 UNIT VII Communication Chapter 1 Probability, Random Variables, and Random Process Chapter 2 Analog Modulation Chapter 3 Pulse Modulation and Baseband Communications Chapter 4 Pass-Band Modulation Chapter 5 Information Theory and Coding UNIT VIII Electromagnetics Chapter 1 Elements of Vector Calculus and Static Fields Chapter 2 Maxwell Equations and Em-Wave Propagation Chapter 3 Transmission Lines Chapter 4 Wave Guides Chapter 5 Basics of Antennas
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