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  1. 20.109(F19):Guidelines for working in the tissue culture facility
  2. 20.109(F21):Announcements
  3. 20.109(S07): Building phage nanowires
  4. 20.109(S07): Growth of phage materials
  5. 20.109(S07): Testing redesigned genomes
  6. 20.109(S08): Fall 2007 schedule
  7. 20.109(S09):OpenWetWare
  8. 20.109(S11): Spring 2010 schedule
  9. 20.109(S14): Spring 2013 schedule
  10. 20.109(S15):Data analysis and paper discussion (Day6)
  11. 20.109(S15): Mod 3 Day 1 Growth of phage materials
  12. 20.109(S15): Mod 3 Day 1 Growth of phage materials (Day 1)
  13. 20.109(S17):Guidelines for working in the tissue culture facility
  14. 20.109(S17): Fall 2016 schedule
  15. 20.109(S18):SECONDARY ASSAY D2 (Day6)
  16. 20.109(S19):Guidelines for working in the tissue culture facility
  17. 20.109(S19): M1 Mini-presentation
  18. 20.109(S20):Guidelines for working in the tissue culture facility
  19. 20.109(S20):Journal club presentation (Day4 and 6)
  20. 20.109(S21):M3D5
  21. 20.109(S22):M3D4
  22. 20.109 (S07): Atomic force microscopy
  23. 20.109 (S07): Transmission electron microscopy
  24. 20.109 Main Page
  25. 20.309:Learning outcomes
  26. 20.309: Exam 1 Topics
  27. 20.309 Assignment 1: Optics bootcamp
  28. 20.309 development to-do list
  29. 20.345:Key Factors Table
  30. 20.345:Literature search
  31. 20.345: Wiki guidelines
  32. ANOID Project
  33. Aligning the optical trap
  34. Alumni Page
  35. Assignment 10 Overview
  36. Assignment 2: epi illuminator for fluorescence microscopy
  37. Assignment 2 Part 4: Fluorescent imaging of actin
  38. Assignment 6, Part 3: Identifying unknown filter circuits
  39. Assignment 7: Amplifiers and feedback
  40. BEECH Main Page
  41. BE Classroom Computer Documentation
  42. BE TA Training(Su16):Homepage
  43. BE TA Training (Su17)
  44. BE TA Training (Su18)
  45. BE TA Training (Su19)
  46. Beech
  47. Bode plots and frequency response
  48. Bryan Hernandez/20.109/Lab notebook/Module 1/Day 2
  49. Bryan Hernandez/20.109/Lab notebook/Module 1/Day 3
  50. Bryan Hernandez/20.109/Lab notebook/Module 1/Day 4
  51. Bryan Hernandez/20.109/Lab notebook/Module 1/Day 5
  52. Bryan Hernandez/20.109/Lab notebook/Module 1/Day 6
  53. Bryan Hernandez/20.109/Lab notebook/Module 2/Day 2
  54. CRISPRi module, Part II: Increasing ethanol yield in E. coli MG1655
  55. Capacitors and inductors
  56. Cellular microrheology
  57. Creating 20.109(S17):Scan slides to identify FKBP12 binders (Day5)
  58. DNA Melter Improvements
  59. DNA Melting: Using the Matlab DNAMelter GUI
  60. DNA Melting II: Using the Matlab DNALockIn GUI
  61. DNA melting lab wiki pages
  62. Data Sheets
  63. Deconvolved Image
  64. ESTORM
  65. Equipment on loan
  66. Error analysis
  67. Estimating second order system parameters from noise power spectra using nonlinear regression
  68. Exam 2 study guide
  69. Fall 2010: DNA melting report outline
  70. Fall 2010: Problem Set 3
  71. Fall 2010 Syllabus
  72. Fall 2012: Journal Presentations
  73. Final Projects
  74. Finding and measuring things
  75. Geometrical Optics
  76. Intro Electronics Lab Report
  77. Lab Manual: SLA 3D-Printed Microfluidic Device Master Mold
  78. Laser cutter safe operating procedure
  79. Lecture Notes:Modeling real systems with ideal elements
  80. Limits of Detection:Report Requirements
  81. MATLAB: Estimating viscoelastic spectrum using Mason's method
  82. MATLAB: Intensity-weighted centroid noise formula
  83. MRI lab: FPGA controller documentation
  84. March14
  85. Matlab:Image Processing for Fluorescent Microscopy
  86. Matlab: Simulating Brownian motion
  87. Measuring biological forces mini-lab
  88. Measuring optical magnification
  89. Microscope Objective Lenses
  90. Nonlinear regression
  91. Optical Microscopy: Brownian motion and microscopy stability
  92. Optical Microscopy Data Sheets
  93. Optical resolution
  94. Optical trap
  95. Papers
  96. Papers to read
  97. Photobleaching Model
  98. Power spectral density
  99. Probability and statistics
  100. Problem Set 1

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