Difference between revisions of "20.309 Main Page"
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|style="width: 35%;"|'''Resources''' | |style="width: 35%;"|'''Resources''' | ||
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− | | Week | + | | Week 11: Nov. 13 - Nov. 19 |
− | | | + | | Finish DNA Melting Part 1 |
− | | <font color=#04B45F> | + | | <font color=#04B45F> Friday Nov. 18th: DNA Melting Part 1</font color> |
| [[DNA Melting Part 1: Measuring Temperature and Fluorescence]] | | [[DNA Melting Part 1: Measuring Temperature and Fluorescence]] | ||
[[DNA Melting Report Requirements for Part 1]] | [[DNA Melting Report Requirements for Part 1]] | ||
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* [[DNA Melting: DNA Sequences]] | * [[DNA Melting: DNA Sequences]] | ||
* [http://mfold.rna.albany.edu/?q=DINAMelt/Hybrid2 DINAMelt Web Server] | * [http://mfold.rna.albany.edu/?q=DINAMelt/Hybrid2 DINAMelt Web Server] | ||
+ | * [[DNA melting: Identifying the unknown sample]] | ||
Background reading | Background reading | ||
* [[Electronics Primer]] | * [[Electronics Primer]] | ||
<!-- * [[Real electronics]] -->| | <!-- * [[Real electronics]] -->| | ||
|-- | |-- | ||
− | | Week | + | | Week 12: Nov. 20 - Nov. 26 |
− | | | + | | Get started on DNA Melting Part 2, PSet 4 |
− | | | + | | |
− | | [[DNA Melting Part | + | | [[DNA Melting Part 2: Lock-in Amplifier and Temperature Control]] |
− | [[DNA Melting Report Requirements for Part | + | [[DNA Melting Report Requirements for Part 2]] |
| | | | ||
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20.309 This week and next in the 20.309 lab
Week | Summary | Assignments due | Lab Manual | Resources | |
Week 11: Nov. 13 - Nov. 19 | Finish DNA Melting Part 1 | Friday Nov. 18th: DNA Melting Part 1 | DNA Melting Part 1: Measuring Temperature and Fluorescence | Overview
Code examples and simulations
Reference materials
Background reading |
|
Week 12: Nov. 20 - Nov. 26 | Get started on DNA Melting Part 2, PSet 4 | DNA Melting Part 2: Lock-in Amplifier and Temperature Control |
Contents
20.309 course information
Reserve a lab station here: Bioinstrumentation Lab reservation system
Optics bootcamp
Lab manual
Background reading
- Geometrical optics and ray tracing
- Optical detectors, noise, and the limit of detection
- Manta G032 camera measurements
Optical microscopy lab
Code examples and simulations
- Converting Gaussian fit to Rayleigh resolution
- MATLAB: Estimating resolution from a PSF slide image
- Matlab: Scalebars
- Calculating MSD and Diffusion Coefficients
Background reading
- Geometrical optics and ray tracing
- Physical optics and resolution
- Optical aberrations
- Aperture and field stops
- Optical detectors, noise, and the limit of detection
- Manta G032 camera measurements
- Understanding log plots
Electronics bootcamp
Lab manual
Background reading
- Electronics primer
- Khan Academy Material, esp. "Ideal Circuit Elements" and "Voltage Divider"
- Real electronics
- Impedance analysis
- Transfer functions and Bode plots
- Complex number review
- Input and output impedance
DNA melting lab
Lab manuals
- Lab Manual:Measuring DNA Melting Curves
- DNA Melting Part 1: Measuring Temperature and Fluorescence
- DNA Melting Report Requirements for Part 1
- DNA Melting: Model function and parameter estimation by nonlinear regression
- DNA Melting: Simulating DNA Melting - Intermediate Topics
- DNA melting: Identifying the unknown sample
- DNA Melting Part 2: Lock-in Amplifier and Temperature Control
- DNA Melting Report Requirements for Part 2
Code examples and simulations
- DNA Melting: Simulating DNA Melting - Basics
- DNA Melting: Simulating DNA Melting - Intermediate Topics
- DNA Melting: Model function and parameter estimation by nonlinear regression
Reference materials
Background reading
Limits of detection mini-lab
- Lab Manual: Limits of Detection
- Lab Manual: Atomic Force Microscopy (AFM)
- Limits of Detection: Data Sessions