This unique free application is for all students across the world. It covers 143 topics of Material Science in detail. These 143 topics are divided in 3 units. Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail. This USP of this application is 'ultra-portability'. Students can access the content on-the-go from anywhere they like. Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier. Some of topics Covered in this application are: 1. HISTORICAL PERSPECTIVE OF MATERIALS 2. ENGINEERING REQUIREMENTS OF MATERIALS 3. Classification of engineering materials 4. Organic and inorganic materials 5. Semiconductors 6. Biomaterials 7. CURRENT TRENDS AND ADVANCES IN MATERIALS 8. Advanced materials 9. Smart materials (materials of the future) 10. Nanostructured materials and nanotechnology 11. Quantum dots 12. Spintronics 13. Level of material structure examination and observation 14. Material structure 15. Engineering metallurgy 16. Selection of the materials 17. Atomic concepts in physics and chemistry 18. Atomic Structure: FUNDAMENTAL CONCEPTS 19. Atomic Structure: FUNDAMENTAL CONCEPTS 20. ELECTRONS IN ATOMS 21. THE PERIODIC TABLE 22. BONDING FORCES AND ENERGIES 23. Ionic Bonding 24. Covalent Bonding 25. Metallic Bonding 26. SECONDARY BONDING OR VAN DER WAALS BONDING 27. Crystal Structures: FUNDAMENTAL CONCEPTS 28. The Face-Centered Cubic Crystal Structure 29. The Body-Centered Cubic Crystal Structure 30. The Hexagonal Close-Packed Crystal Structure 31. CRYSTALLOGRAPHIC PLANES 32. CRYSTAL SYSTEMS 33. POINT COORDINATES 34. CRYSTALLOGRAPHIC DIRECTIONS 35. Hexagonal Crystals 36. Atomic Arrangements 37. CLOSE-PACKED CRYSTAL STRUCTURES 38. VACANCIES AND SELF-INTERSTITIALS 39. IMPURITIES IN SOLIDS 40. DISLOCATIONS - LINEAR DEFECTS 41. INTERFACIAL DEFECTS 42. Microscopic Examination 43. Optical Microscopy 44. Electron Microscopy 45. GRAIN SIZE DETERMINATION 46. Introduction to mechanical properties 47. CONCEPTS OF STRESS AND STRAIN 48. Compression Tests 49. STRESS-STRAIN BEHAVIOR 50. ANELASTICITY 51. ELASTIC PROPERTIES OF MATERIALS 52. Plastic Deformation 53. Yielding and Yield Strength 54. Tensile Strength 55. Ductility 56. Resilience 57. Toughness 58. TRUE STRESS AND STRAIN 59. ELASTIC RECOVERY AFTER PLASTIC DEFORMATION 60. HARDNESS 61. Rockwell Hardness Tests 62. Brinell Hardness Tests 63. Knoop and Vickers Microindentation Hardness Tests 64. Hardness Conversion 65. Correlation Between Hardness and Tensile Strength 66. VARIABILITY OF MATERIAL PROPERTIES 67. Computation of Average and Standard Deviation Values 68. DESIGN/SAFETY FACTORS 69. Phase diagrams-introduction 70. SOLUBILITY LIMIT 71. PHASES 72. PHASE EQUILIBRIA 73. ONE-COMPONENT (OR UNARY) PHASE DIAGRAMS 74. Binary Phase Diagrams 75. BINARY ISOMORPHOUS SYSTEMS 76. Determination of Phase Compositions 77. Determination of Phase Amounts 78. Equilibrium Cooling 79. Nonequilibrium Cooling 80. MECHANICAL PROPERTIES OF ISOMORPHOUS ALLOYS 81. BINARY EUTECTIC SYSTEMS 82. DEVELOPMENT OF MICROSTRUCTURE IN EUTECTIC ALLOYS 83. EQUILIBRIUM DIAGRAMS HAVING INTERMEDIATE PHASES OR COMPOUNDS 84. EUTECTOID AND PERITECTIC REACTIONS 85. CONGRUENT PHASE TRANSFORMATIONS 86. THE GIBBS PHASE RULE 87. THE IRON-IRON CARBIDE (Fe-Fe3C) PHASE DIAGRAM 88. DEVELOPMENT OF MICROSTRUCTURE IN IRON-CARBON ALLOYS 89. Hypoeutectoid Alloys 90. Hypereutectoid Alloys 91. THE INFLUENCE OF OTHER ALLOYING ELEMENTS 92. FERROUS ALLOYS 93. Low-Carbon Steels 94. Medium-Carbon Steels 95. High-Carbon Steels 96. Stainless Steels 97. Cast Irons 98. Gray Iron 99. Ductile (or Nodular) Iron
Manufacturer: Ashish Kumar
Brand: Ashish Kumar
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