Science And Engineering

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Created by AP SSC Last updated Wed, 06-Jan-2021 English


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Syllabus / What will i learn?
  • Materials Science And Engineering An Introduction


Curriculum for this course
148 Lessons 00:00:00 Hours
INTRODUCTION
8 Lessons
  • INTRODUCTION
  • HISTORICAL PERSPECTIVE
  • MATERIALS SCIENCE AND ENGINEERING
  • WHY STUDY MATERIALS SCIENCE AND ENGINEERING?
  • CLASSIFICATION OF MATERIALS
  • ADVANCED MATERIALS
  • MODERN MATERIALS’ NEEDS
  • PROCESSING/STRUCTURE/PROPERTIES/ PERFORMANCE CORRELATIONS
  • Atomic Structure and Interatomic Bonding
  • INTRODUCTION
  • FUNDAMENTAL CONCEPTS
  • ELECTRONS IN ATOMS
  • THE PERIODIC TABLE
  • BONDING FORCES AND ENERGIES
  • PRIMARY INTERATOMIC BONDS
  • SECONDARY BONDING OR VAN DER WAALS BONDING
  • MOLECULES
  • The Structure of Crystalline Solids
  • INTRODUCTION
  • FUNDAMENTAL CONCEPTS
  • UNIT CELLS
  • METALLIC CRYSTAL STRUCTURES
  • DENSITY COMPUTATIONS
  • POLYMORPHISM AND ALLOTROPY
  • CRYSTAL SYSTEMS
  • Crystallographic Points, Directions, and Planes
  • POINT COORDINATES
  • CRYSTALLOGRAPHIC DIRECTIONS
  • CRYSTALLOGRAPHIC PLANES
  • LINEAR AND PLANAR DENSITIES
  • CLOSE-PACKED CRYSTAL STRUCTURES
  • SINGLE CRYSTALS
  • POLYCRYSTALLINE MATERIALS
  • ANISOTROPY
  • X-RAY DIFFRACTION: DETERMINATION OF CRYSTAL STRUCTURES
  • NONCRYSTALLINE SOLIDS
  • SUMMARY
  • REFERENCES
  • Imperfections in Solids
  • Learning Objectives
  • Introduction
  • VACANCIES AND SELF-INTERSTITIALS
  • IMPURITIES IN SOLIDS
  • SPECIFICATION OF COMPOSITION
  • DISLOCATIONS—LINEAR DEFECTS
  • INTERFACIAL DEFECTS
  • BULK OR VOLUME DEFECTS
  • ATOMIC VIBRATIONS
  • BASIC CONCEPTS OF MICROSCOPY
  • MICROSCOPIC TECHNIQUES
  • GRAIN SIZE DETERMINATION
  • SUMMARY
  • REFERENCES
  • Diffusion
  • Introduction
  • DIFFUSION MECHANISMS
  • STEADY-STATE DIFFUSION
  • NONSTEADY-STATE DIFFUSION
  • FACTORS THAT INFLUENCE DIFFUSION
  • DIFFUSION IN SEMICONDUCTING MATERIALS
  • OTHER DIFFUSION PATHS
  • SUMMARY
  • REFERENCES
  • Mechanical Properties of Metals
  • INTRODUCTION
  • CONCEPTS OF STRESS AND STRAIN
  • STRESS–STRAIN BEHAVIOR
  • ANELASTICITY
  • ELASTIC PROPERTIES OF MATERIALS
  • TENSILE PROPERTIES
  • Ductility
  • Resilience
  • Toughness
  • TRUE STRESS AND STRAIN
  • ELASTIC RECOVERY AFTER PLASTIC DEFORMATION
  • COMPRESSIVE, SHEAR, AND TORSIONAL DEFORMATIONS
  • HARDNESS
  • Brinell Hardness Tests
  • Knoop and Vickers Microindentation Hardness Tests1
  • Hardness Conversion
  • Correlation between Hardness and Tensile Strength
  • VARIABILITY OF MATERIAL PROPERTIES
  • Computation of Average and Standard Deviation Values
  • DESIGN/SAFETY FACTORS
  • Introduction
  • BASIC CONCEPTS
  • CHARACTERISTICS OF DISLOCATIONS
  • SLIP SYSTEMS
  • Slip in Single Crystals
  • Plastic Deformation of Polycrystalline Materials
  • Deformation by Twinning
  • Mechanisms of Strengthening in Metals
  • STRENGTHENING BY GRAIN SIZE REDUCTION
  • Solid-Solution Strengthening
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