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  1. Assignment 2: epi illuminator for fluorescence microscopy‏‎ (3 categories)
  2. Assignment 7 Overview‏‎ (3 categories)
  3. Assignment 8, Part 1: convolution‏‎ (3 categories)
  4. Lab Manual: Atomic Force Microscopy (AFM)‏‎ (3 categories)
  5. Resource list: Image Enhancement‏‎ (3 categories)
  6. Assignment 5, Part 1: MSD difference tracking and microscope stability‏‎ (3 categories)
  7. Assignment 7, Part 2: measure temperature and fluorescence‏‎ (3 categories)
  8. Assignment 9 Overview‏‎ (3 categories)
  9. DNA Melting: Simulating DNA Melting - Intermediate Topics‏‎ (3 categories)
  10. Lab Manual: Measuring DNA Melting Curves‏‎ (3 categories)
  11. ESTORM‏‎ (3 categories)
  12. Spring 2012: Ajoke Jumoke Williams‏‎ (3 categories)
  13. Williams: PSF and Deconvolution Lab 2‏‎ (3 categories)
  14. Assignment 1 Overview: Transillumination microscopy‏‎ (3 categories)
  15. Assignment 5 Overview‏‎ (3 categories)
  16. Lab Manual:Optical Trapping‏‎ (3 categories)
  17. Resource list: Electronics‏‎ (3 categories)
  18. Williams: Optical Trapping Lab 1‏‎ (3 categories)
  19. Converting Gaussian fit to Rayleigh resolution‏‎ (3 categories)
  20. Optical Microscopy Part 3: Resolution, Stability, and Particle Tracking‏‎ (2 categories)
  21. Input and output impedance‏‎ (2 categories)
  22. 20.109(F19):Class data‏‎ (2 categories)
  23. Assignment 4: finding and measuring things‏‎ (2 categories)
  24. Matlab:Matlab Fundamentals‏‎ (2 categories)
  25. DNA Melting Report Requirements‏‎ (2 categories)
  26. Optical Microscopy Part 4: Particle Tracking‏‎ (2 categories)
  27. Shot noise and centroid finding‏‎ (2 categories)
  28. Optical detectors, noise, and the limit of detection‏‎ (2 categories)
  29. Relay Lens Example‏‎ (2 categories)
  30. Assignment 9 Overview: Analyzing yeast images‏‎ (2 categories)
  31. Calculating MSD and Diffusion Coefficients‏‎ (2 categories)
  32. Electronics written problems II‏‎ (2 categories)
  33. Assignment 6, Part 2: Electronics bootcamp‏‎ (2 categories)
  34. Spring 2011:3D PSF lab‏‎ (2 categories)
  35. DNA Melting Part 2: Lock-in Amplifier and Temperature Control‏‎ (2 categories)
  36. Protocols for cell culture‏‎ (2 categories)
  37. Fall 2012: Journal Presentations‏‎ (2 categories)
  38. DNA Melting: Using the Matlab DNAMelter GUI‏‎ (2 categories)
  39. Super resolution microscopy‏‎ (2 categories)
  40. Matlab: Scalebars‏‎ (2 categories)
  41. Compound Microscope Example‏‎ (2 categories)
  42. Assignment 7: Amplifiers and feedback‏‎ (2 categories)
  43. Assignment 9, Part 1: Analyze two-color yeast images‏‎ (2 categories)
  44. Assignment 3, Part 2: experimental design with fluorescence‏‎ (2 categories)
  45. Final Project Proposal Williams‏‎ (2 categories)
  46. Protocols‏‎ (2 categories)
  47. DNA Melting II: Using the Matlab DNALockIn GUI‏‎ (2 categories)
  48. Cellular microrheology‏‎ (2 categories)
  49. Beam Expander Example‏‎ (2 categories)
  50. SToNCalculator.m‏‎ (2 categories)
  51. Electronics boot camp I: passive circuits and transfer functions‏‎ (2 categories)
  52. Spring 2020 Assignment 9‏‎ (2 categories)
  53. DNA Melting Part 1: Measuring Temperature and Fluorescence‏‎ (2 categories)
  54. DNA Melting Report Requirements for Part 1‏‎ (2 categories)
  55. Optical Microscopy Part 1: Brightfield Microscopy‏‎ (2 categories)
  56. Limits of Detection: Data Sessions‏‎ (2 categories)
  57. Optical Microscopy Part 2: Fluorescence Microscopy‏‎ (2 categories)
  58. MATLAB: Estimating resolution from a PSF slide image‏‎ (2 categories)
  59. Assignment 2 Part 4: Fluorescent imaging of actin‏‎ (2 categories)
  60. Finding and measuring things‏‎ (2 categories)
  61. Electronics boot camp lab part 1‏‎ (2 categories)
  62. 20.309:Course Information‏‎ (2 categories)
  63. Spring 2011:CellFinder‏‎ (2 categories)
  64. Limits of Detection:Report Requirements‏‎ (2 categories)
  65. Spring 2012:LFM Proposal‏‎ (2 categories)
  66. 20.345: Wiki guidelines‏‎ (2 categories)
  67. Assignment 2 Part 3: Build an epi-illuminator for your microscope‏‎ (2 categories)
  68. Flat-field correction‏‎ (2 categories)
  69. Electronics written problems‏‎ (2 categories)
  70. DNA Melting Thermodynamics‏‎ (2 categories)
  71. DNA Melting: Processing DNA Melting Data‏‎ (2 categories)
  72. Status Report Interrogatories (Spring 2012)‏‎ (2 categories)
  73. Optical Microscopy Part 3: Resolution and Stability‏‎ (2 categories)
  74. Geometrical optics and ray tracing‏‎ (2 categories)
  75. DNA Melting: Using the Basic DNAMelter GUI‏‎ (2 categories)
  76. Assignment 4 part 2: Measure resolution‏‎ (2 categories)
  77. Assignment 8 Overview: flow channel & two-color microscope‏‎ (2 categories)
  78. Impedance Analysis‏‎ (2 categories)
  79. Protocols for making microscopy samples‏‎ (2 categories)
  80. 20.309 Assignment 1: Optics bootcamp‏‎ (2 categories)
  81. Assignment 3, Part 1: visualizing actin with fluorescence contrast‏‎ (2 categories)
  82. Resource list: Particle tracking‏‎ (2 categories)
  83. Optical Microscopy Data Sheets‏‎ (2 categories)
  84. Cell Reservations‏‎ (2 categories)
  85. Real electronics‏‎ (2 categories)
  86. DNA Melting: Using the LockIn DNAMelter GUI‏‎ (2 categories)
  87. Assignment 4 part 3: Track microspheres over time‏‎ (2 categories)
  88. Electronics bootcamp II: feedback systems‏‎ (2 categories)
  89. Bode plots‏‎ (2 categories)
  90. Assignment 6 Overview‏‎ (2 categories)
  91. Assignment 9, Part 1: model function‏‎ (2 categories)
  92. 20.345:Course Information‏‎ (2 categories)
  93. DNA Melting: Simulating DNA Melting - Basics‏‎ (2 categories)
  94. Spring 2012:Vincent Lee Journal‏‎ (2 categories)
  95. Spring 2012:LFM Documentation‏‎ (2 categories)
  96. Electronics primer‏‎ (2 categories)
  97. Electronics Mini-Lab‏‎ (2 categories)
  98. Physical optics and resolution‏‎ (2 categories)
  99. Understanding the lock-in amplifier‏‎ (2 categories)

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