Chemical Crystallography

Chemical Crystallography

NPTEL-NOC IITM via YouTube Direct link

Introduction to X-Ray Crystallography

1 of 63

1 of 63

Introduction to X-Ray Crystallography

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Chemical Crystallography

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  1. 1 Introduction to X-Ray Crystallography
  2. 2 Sources of X-Rays, Crystal Systems and Bravais lattices
  3. 3 3 Crystallographic Symmetries
  4. 4 Equivalent Points and 1D Lattices
  5. 5 5 Five Fold Symmetry and 2D Lattices
  6. 6 6 2D Space Lattices
  7. 7 7 Crystallographic Point Groups
  8. 8 8 Stereographic Projecitons of Point Groups
  9. 9 9 Understanding of Crystallographic Space Groups
  10. 10 10 2D Projection of Space Groups
  11. 11 Tutorial 1
  12. 12 mod12lec62
  13. 13 mod12lec61
  14. 14 mod12lec60
  15. 15 mod12lec59
  16. 16 mod12lec58
  17. 17 mod11lec57
  18. 18 mod11lec56
  19. 19 Powder X-Ray Diffractometer -Lab
  20. 20 Powder X-Ray Diffractometer -Theory
  21. 21 Sigma 1 and Triplet Relationship
  22. 22 Phase Problem
  23. 23 Identification from Intensity Statistics the presence of 2 fold axis in Lattice
  24. 24 Identification from Intensity Statistics the Correct Crystal System and Presence of Inversion Center
  25. 25 Data Reduction- Scale and Temperature Factor
  26. 26 Data Reduction-Lorentz and Polarization Correction
  27. 27 Data Reduction-Absorption Correction
  28. 28 Cambridge Structure Database and its Application
  29. 29 Disorder Treatment using Olex 2
  30. 30 Disorders in Crystal Structures
  31. 31 Structure Solution using Olex 2 (Rigaku Diffractometer)
  32. 32 Patterson Method
  33. 33 Direct Methods - Part 02
  34. 34 Direct Methods - Part 01
  35. 35 Structure Solution using Apex II (Bruker Diffractometer)
  36. 36 Data Handling (Solution and Refinement) using Various Crystallographic Packages
  37. 37 Understanding the X-Ray Data
  38. 38 Single Crystal X-Ray Diffractometer
  39. 39 Structure Refinement
  40. 40 Systematic Absence Conditions from Special Structure Factor Expression
  41. 41 Structure Fcator and Electron Density
  42. 42 Derivation of Friedel's Law from Structure Factor by Vector Space Diagram
  43. 43 Experimental Methods and Theoretical Understanding of X-Ray Diffraction
  44. 44 Laue's and Bragg's Analysis
  45. 45 Diffractometers and Detectors
  46. 46 Diffractometers
  47. 47 Single Crystal X-Ray Diffraction Data Collection
  48. 48 Tutorial
  49. 49 Special Method of Crystallisation
  50. 50 Systematic Absences and Crystallisation Methods
  51. 51 Bragg's Law in Reciprocal Lattice and Origin of Systematic Absences
  52. 52 Origin of Reciprocal Lattice
  53. 53 Representation of Orthorhombic and Tetragonal Space Groups
  54. 54 Miller Indices for Crystallographic Directions and Planes
  55. 55 Tutorial 3
  56. 56 Theory of X-Ray Diffraction
  57. 57 Ceramic Structures
  58. 58 Tutorial 2
  59. 59 Cubic Structues and atomic packing factors
  60. 60 15 Miller Indices and Planar Densities
  61. 61 12 Obtaining Equivalent points
  62. 62 11 3D Space Groups and Equivalent Points
  63. 63 Systematic absence conditions from special structure factor expression

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