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*[http://www.sigmaaldrich.com/sigma-aldrich/datasheet/s9430dat.pdf SYBR Green I] | *[http://www.sigmaaldrich.com/sigma-aldrich/datasheet/s9430dat.pdf SYBR Green I] | ||
*[http://www.ussensor.com/prod_rtds_thin_film.htm PPG102A1 RTD] | *[http://www.ussensor.com/prod_rtds_thin_film.htm PPG102A1 RTD] | ||
*[http://www.datasheetcatalog.org/datasheet/nationalsemiconductor/DS005655.PDF | *[http://www.datasheetcatalog.org/datasheet/nationalsemiconductor/DS005655.PDF Typical Amplifier Schematic Diagram & Datasheet] | ||
===Module 2=== | ===Module 2=== |
Revision as of 14:41, 12 October 2008
Problem Sets
- Packet of Problem Sets: 20.309 course packet
- Problem Set 1 and Answers
- Problem Set 2 and Answers
- Problem Set 3 and Answers
- Problem Set 4 and Answers
Quizes
Labs
Module 1
- DNA Melting Lab
- Lab 1 Report Requirements
- Analyzing Data (filtering)
- Lab Comments Scroll to end
- DNA Melting Lab Simulation
- SYBR Green I
- PPG102A1 RTD
- Typical Amplifier Schematic Diagram & Datasheet
Module 2
- Lab 2 Introduction Scroll down
Lectures
Lecture 1 9.5.08 F Voltage dividers and electrical impedance
Lecture 2 9.9.08 T RC Circuits
Lecture 3 9.11.08 R Filters
Lecture 4 9.12.08 F Thermodynamics of DNA melting
Lecture 6 9.18.08 R Op-amp applications
Lecture 8 9.23.08 T Intro to Fourier Analysis
Lecture 10 9.26.08 F Sampling and Discrete Analysis
Lecture 11 9.30.08 T Convolution
Lecture 12 10.2.08 R Application of Convolution Theorem
Lecture 13 10.3.08 F Lab 1 Requirements and Lab 2 Intro
Lecture 15 10.9.08 R Ultimate Limits of Force and Position Detection