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<hr> | <hr> | ||
− | <h3><li>Starting concentration of 948 | + | <h3><li>Starting concentration of 948 Yf1 molecules (Gillespie)</li></h3> |
<figure> | <figure> | ||
<div class="row"> | <div class="row"> | ||
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<br><hr> | <br><hr> | ||
− | <h3><li>Starting concentration of 95 and 948 | + | <h3><li>Starting concentration of 95 and 948 Yf1 molecules (deterministic)</li></h3> |
<figure> | <figure> | ||
<div class="row"> | <div class="row"> | ||
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<figcaption> | <figcaption> | ||
<center> | <center> | ||
− | <span style>(Left) Starting concentration of 95 | + | <span style>(Left) Starting concentration of 95 Yf1 molecules; (Right) Starting concentration of 948 FixJ molecules<br></span> |
<span style="color:blue;">yDD (Dark-Dark state); </span> | <span style="color:blue;">yDD (Dark-Dark state); </span> | ||
<span style="color:orange;">yDL/LD (Dark-Light state); </span> | <span style="color:orange;">yDL/LD (Dark-Light state); </span> |
Revision as of 03:13, 14 October 2018
Light Operon
Introduction
Equations
Results
The different states of Yf1 are being hit with different intensities of light, producing alternating results unique to the state. Click on any of the images to view full size.
- Starting concentration of 95 FixJ molecules (Gillespie)
- Starting concentration of 948 Yf1 molecules (Gillespie)
- Starting concentration of 95 and 948 Yf1 molecules (deterministic)