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Showing below up to 100 results in range #51 to #150.

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  1. McStas simulation projects‏‎ (2 revisions)
  2. Simulation project SANS-2: A small angle neutron scattering instrument‏‎ (2 revisions)
  3. Basic statistical tools‏‎ (2 revisions)
  4. Useful model-free approximations in SANS‏‎ (2 revisions)
  5. Instruments for inelastic neutron scattering‏‎ (2 revisions)
  6. Scattering of neutrons from magnetic ions‏‎ (2 revisions)
  7. Simulation Project SANS-2: Data analysis‏‎ (2 revisions)
  8. Exercises in Instrumentation‏‎ (2 revisions)
  9. Exercises in Small angle neutron scattering‏‎ (2 revisions)
  10. Scattering from nuclear dynamics‏‎ (2 revisions)
  11. Problem: Magnetic reflectivity‏‎ (2 revisions)
  12. Laue diffraction‏‎ (2 revisions)
  13. Diffraction from nano-sized systems‏‎ (2 revisions)
  14. Coherent and incoherent scattering‏‎ (2 revisions)
  15. Determining the incoming neutron wavelength‏‎ (2 revisions)
  16. Exercises in Diffraction from crystals‏‎ (2 revisions)
  17. Simulation Project tripleaxis: A focusing monochromator‏‎ (2 revisions)
  18. Simulation Project SANS-2: The source-guide system‏‎ (2 revisions)
  19. Inelastic magnetic scattering‏‎ (2 revisions)
  20. Diffraction from crystals‏‎ (2 revisions)
  21. Problem: A neutron guide system‏‎ (2 revisions)
  22. Reflectivity of stratified media‏‎ (2 revisions)
  23. Magnetism in materials‏‎ (2 revisions)
  24. Instrumentation for investigation of magnetic diffraction‏‎ (2 revisions)
  25. Simulation Project powder: Determine the crystal structure of the sample‏‎ (2 revisions)
  26. Simulation Project SANS-2: Velocity selector‏‎ (2 revisions)
  27. Simulation Project tripleaxis: Analyzer and detector‏‎ (2 revisions)
  28. Problem:Attenuation of the neutron beam‏‎ (2 revisions)
  29. Rough and diffuse interfaces‏‎ (2 revisions)
  30. Five reasons for using neutrons‏‎ (2 revisions)
  31. Problem: Critical edge‏‎ (2 revisions)
  32. Quantum mechanics of magnetic diffraction‏‎ (2 revisions)
  33. Diffraction from crystalline materials‏‎ (2 revisions)
  34. Simulation Project powder: Sample‏‎ (2 revisions)
  35. Quantum treatment of inelastic neutron scattering‏‎ (2 revisions)
  36. Neutron sources and moderators‏‎ (2 revisions)
  37. Problem: The cross section‏‎ (2 revisions)
  38. Problem: Attenuation of the neutron beam‏‎ (2 revisions)
  39. Scattering from magnetic dynamics‏‎ (2 revisions)
  40. Powder scattering instruments‏‎ (2 revisions)
  41. Phonons, quantum mechanical treatment‏‎ (2 revisions)
  42. Applications of neutron imaging‏‎ (2 revisions)
  43. Magnetic excitations‏‎ (2 revisions)
  44. Simulation Project SANS-2: The effect of gravity‏‎ (2 revisions)
  45. Simulation Project SANS-2: Pinhole collimation‏‎ (2 revisions)
  46. Simulation Project SANS-2: A full virtual experiment - spheres sample‏‎ (2 revisions)
  47. Simulation Project SANS-2: A full virtual experiment - Liposome sample‏‎ (2 revisions)
  48. Simulation Project tripleaxis: A full virtual experiment‏‎ (2 revisions)
  49. Scattering from lattice vibrations‏‎ (2 revisions)
  50. Quantum mechanics of scattering‏‎ (2 revisions)
  51. Instrumentation for investigation of magnetic excitation‏‎ (2 revisions)
  52. Exercises in Reflection and Refraction‏‎ (2 revisions)
  53. Thin films and interfaces‏‎ (2 revisions)
  54. The total cross section for a system of particles‏‎ (2 revisions)
  55. Inelastic nuclear neutron scattering‏‎ (2 revisions)
  56. The magnetic scattering length‏‎ (2 revisions)
  57. Neutron cross section from ferromagnetic spin waves‏‎ (2 revisions)
  58. Scattering theory for nuclear dynamics‏‎ (2 revisions)
  59. Techniques for neutron ray-tracing‏‎ (2 revisions)
  60. Basic crystallography‏‎ (2 revisions)
  61. Problem: Simulation of SANS scattering‏‎ (2 revisions)
  62. Simulation Project powder: A full virtual experiment‏‎ (2 revisions)
  63. Problem: Snell's Law‏‎ (2 revisions)
  64. Simulation Project tripleaxis: The resolution function‏‎ (2 revisions)
  65. Elastic magnetic scattering‏‎ (2 revisions)
  66. Magnetic neutron scattering‏‎ (2 revisions)
  67. Diffraction from a powder‏‎ (2 revisions)
  68. Correlation between nuclear and magnetic scattering‏‎ (2 revisions)
  69. Spectrometers: Instruments for inelastic neutron scattering‏‎ (2 revisions)
  70. Radiography‏‎ (2 revisions)
  71. Simulation Project SANS-2: Resolution of the SANS instrument‏‎ (2 revisions)
  72. Simulation Project powder: DMC multi-detector‏‎ (2 revisions)
  73. Data analysis in neutron scattering‏‎ (2 revisions)
  74. Basic properties of the neutron‏‎ (2 revisions)
  75. Instrument example: The two axis diffractometer‏‎ (2 revisions)
  76. Instrumentation‏‎ (2 revisions)
  77. On these notes‏‎ (2 revisions)
  78. Diffraction from single crystals with monochromatic radiation‏‎ (2 revisions)
  79. Neutron guide systems‏‎ (2 revisions)
  80. Another test‏‎ (2 revisions)
  81. Simulation Project tripleaxis: Collimator‏‎ (2 revisions)
  82. Exercises in Monte Carlo simulations‏‎ (2 revisions)
  83. Problem: Reflectivity in magnetic materials‏‎ (2 revisions)
  84. Simulation project powder: A powder diffractometer‏‎ (2 revisions)
  85. Problem: Scattering length density for "light" and "heavy" water‏‎ (2 revisions)
  86. Reflectivity of periodically stratified media‏‎ (2 revisions)
  87. Problem: SANS and SAXS from spherical surfactant micelles‏‎ (2 revisions)
  88. Beam optical components‏‎ (2 revisions)
  89. Reflection from a smooth, flat interface‏‎ (2 revisions)
  90. Computed tomography‏‎ (2 revisions)
  91. Problem: Phospholipid bilayer liposomes‏‎ (2 revisions)
  92. Simulation Project tripleaxis: Filter‏‎ (2 revisions)
  93. Imaging‏‎ (2 revisions)
  94. Simulation Project powder: Emulating real experimental data‏‎ (2 revisions)
  95. Problem: Simulation of incoherent scattering‏‎ (2 revisions)
  96. Problem: Refractive index for "light" and "heavy" water‏‎ (2 revisions)
  97. Problem: Estimating the circle area‏‎ (2 revisions)
  98. The scattering cross section for phonons‏‎ (2 revisions)
  99. Quantum mechanical derivation of neutron-phonon scattering‏‎ (2 revisions)
  100. Simulation Project tripleaxis: Determine the full phonon dispersion of the sample‏‎ (2 revisions)

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