Crystal structure : MATERIALS SCIENCE , MECHANICAL ENGINEERING
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Crystal  structure MATERIALS SCIENCE : MECHANICAL ENGINEERING
Crystal  structure , MATERIALS SCIENCE , MECHANICAL ENGINEERING 

Crystal  structure :

MATERIALS SCIENCE , MECHANICAL ENGINEERING 

BY: MANANJAY MAHATO

  1. Introduction 
  2. Crystal 
  3. Single Crystal 
  4. Whiskers 
  5. Crystal Lattice or Space 
  6. Unit Cell 
  7. Lattice Parameters of a Unit Cell 
  8. Primitive Cell 
  9. Types of Crystal Systems 
  10. Bravis Lattices 
  11. Metallic Structure 
  12. Body Centred Cubic ( BCC ) Structures 
  13. Face Central Cubic ( FCC ) Structures 
  14. Hexagonal Close Packed ( HCP ) Structures 
  15. Miller Indices 
  16. Procedure for Finding Miller Indices of Crystal Planes 
  17. Important Features of Miller Indices of Crystal Planes 
  18. Representation of Crystal Planes in a Cubic Uni Cell 
  19. Procedure for Sketching the Plane from the Given Miller Indices 
  20. Common Planes Cibic Structure 
  21. Crystal Directions 
  22. Procedures for Finding Miller indices of Crystal Directions 
  23. Representation of Crystal Direction in a Cubic Unit Cell 
  24. Procedure for Sketching Directions from the Given Miller Indices 
  25. Representation of Crystal planes and Directions in HCP unit cell
  26. Atomic Radius in Cubic and Hexagonal systems 
  27. Number of Aina Cubic Structure 
  28. Number of Atoms per Square Millimeter in Cubic Crystal Planes 
  29. Number of Atoms per Square Millimeter in Simple Cubic Structure 
  30. Number of Atoms per Square Millimeter in a Body Centered Cubic ( BCC ) Structure 
  31. Number of Atoms per Square Millimetre in a Face Centered Cubic ( FCC ) Structure 
  32. Atomic Packing Factor 
  33. Close Packed Structures ( FCC and HCP ) 
  34. Perpendicular Distance between a Plane and Origin of the Cube 
  35. Angle between Two Planes or Directions 
  36. Dimensions of a Unit Cell 
  37. Calculation of Number of Atoms per Cubic Centimeter 
  38. Mean Distance between Atoms 
  39. Co-ordination Number 
  40. Crystalline and Amorphous Solids 
  41. Polymorphism 
  42. Crystal Defects or Imperfections 
  43. Point Defects  
  44. Line Defects 
  45. Surface Defects 
  46. Determination of Crystal Structure 
  47. Bragg’s Law

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