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Features
- 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
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