Difference between revisions of "Team:Tianjin/Model"

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\[\frac{{d[mACE1]}}{{dt}} = cp{n_{\rm{1}}} \times (tr{c_1} - {\deg _1} \times [mACE1])\]
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\[\mu  = {\mu _{\max }}\frac{S}{{{K_s} + S + \frac{{{S^2}}}{{{{\rm{K}}_{l,s}}}}}}\]
  
 
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<p>μ —— Specific growth rate,s-1;
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<p>\[\mu \] —— Specific growth rate,\[{{\rm{s}}^{ - 1}}\];
μ_max —— Maximum specific growth rate,s-1;
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\[{\mu _{\max }}\]—— Maximum specific growth rate,\[{{\rm{s}}^{ - 1}}\];
S ——The concentration of limiting substrate,g/L;
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S ——The concentration of limiting substrate,\[g/L\];
Ks ——Saturation constants, its value is equal to the concentration of limiting substrate when the specific growth rate is exactly half the maximum specific growth rate,g/L.
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\[{K_s}\]——Saturation constants, its value is equal to the concentration of limiting substrate when the specific growth rate is exactly half the maximum specific growth rate,g/L.
 
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   <p>Bistability is a common phenomenon in single-cell microbes, that two types of cell phenotype coexist. Bistability is very important for many single-cell microbes adapting to environmental changes. Single-cell microbes can choose the appropriate form according to changes of the environment, and bistability is the basis for achieving this change.</p>
 
   <p>Bistability is a common phenomenon in single-cell microbes, that two types of cell phenotype coexist. Bistability is very important for many single-cell microbes adapting to environmental changes. Single-cell microbes can choose the appropriate form according to changes of the environment, and bistability is the basis for achieving this change.</p>

Revision as of 02:18, 27 October 2017

/* OVERRIDE IGEM SETTINGS */

Model