GATE 2020 for Mechanical Engineering | 32 Previous Years’ Solved Question Papers | Also for GAIL, BARC, HPCL | By Pearson

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This book provides a leading platform for<strong> GATE aspirants</strong> to practice and hone their skills required to gain the best score in the examination. It <strong>includes more than 25 previous yearsandrsquo;</strong> GATE questions segregated topic-wise supported by detailed step-wise solutions for all. Besides, the book presents the exam analysis at the beginning of every unit which will enable a better understanding of the subject. The questions in the chapters are divided according to their marks, hence emphasizing on their importance. This, in turn, will help the students to get an idea about the pattern and weightage of these questions that appeared in the GATE exam every year.

<strong>Features:</strong>

<br /> and bull; Includes around 32 years’ GATE questions arranged chapter-wise<br /> and bull; Detailed solutions for better understanding<br /> and bull; Includes the latest GATE solved question papers with detailed<br /> and bull; analysis<br /> and bull; Comprehensively revised and updated<br /><br /><br />

<strong>Table of Contents:</strong>

Reviewers<br /> preface <br /> Syllabus: Mechanical Engineering <br /> Important Tips for GATE Preparation <br /> <strong>Unit 1: Engineering Mechanics</strong>

Chapter1: Engineering Machines

<strong> Unit 2: Strength of Materialsandnbsp;</strong>

Chapter1: Simple Stresses <br /> Chapter2: Complex Stresses <br /> Chapter3: SFD andBMD <br /> Chapter4: Centroids and Moment of Inertia <br /> Chapter5: Pure Bending <br /> Chapter6: Shear Stress in Beams <br /> Chapter7: Springs <br /> Chapter8: Torsion <br /> Chapter9: Slopes and Deflections <br /> Chapter10: Thin Cylinders <br /> Chapter11: Column and Struts <br /> Chapter12: Propped and Fixed Beams <br /> Chapter13: Strain Energy

<br /> <strong>Unit 3: Machine Design</strong> <br /> Chapter1: Static Loading <br /> Chapter2: Fatigue<br /> Chapter3: Bolted, Riverted and Welded Joints<br /> Chapter4: Gears <br /> Chapter5: Rolling Contact Bearings <br /> Chapter6: Sliding Contact Bearings <br /> Chapter7: Brake<br /> Chapter8: Clutches <br /> <br /> <strong>Unit 4: Theory of Machines</strong> <br /> Chapter1: Analysis of of Planner Mechanism<br /> Chapter2: Dynamic Analysis of Single Slider-crank Mechanism<br /> Chapter3: Gear and gear Trains <br /> Chapter4: Fly Wheels <br /> Chapter5: Mechanical Vibrations

<br /> <strong>Unit 5: Fluid Mechanics and Turbo Machinery </strong><br /> Chapter1: Property of Fluids <br /> Chapter2: Fluid Statics <br /> Chapter3: Fluid Kinematics <br /> Chapter4: Fluid Dynamics <br /> Chapter5: Laminar Flow<br /> Chapter6: Turbulent Flow<br /> Chapter7: Boundary Layer <br /> Chapter8: Turbo Machinery

<br /> <strong>Unit 6: Heat Transfer</strong><br /> Chapter1: Conduction<br /> Chapter2: FINSandTHC <br /> Chapter3: Convection <br /> Chapter4: Radiation <br /> Chapter5: Heat Exchangers

<br /> <strong>Unit 7: Thermodynamics </strong><br /> Chapter1: Zeroth Law and Basic Concepts <br /> Chapter2: Work and Heat <br /> Chapter3: First Law of Thermo dynamics <br /> Chapter4: Second Law of Thermo dynamics <br /> Chapter5: Entropy <br /> Chapter6: Property of Pure Substances <br /> Chapter7: Availability <br /> Chapter8: Air Cycles <br /> Chapter9: Psychrometry <br /> Chapter10: Rankine Cycle<br /> Chapter11: Gas Turbines <br /> Chapter12: Refrigeration <br /> Chapter13: Internal Combustion Engines<strong> <br /> <br /></strong>

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