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Material Science

SKU: B00JTXOCGC (Updated 2022-03-08)
Price: US$ 0.00
 
 
Description

 
Features & details

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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