Team:Colombia/Scripting

From 2014.igem.org

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dCS = acs + kcd*CSa - C*CS*kcc - gcs*CS;                       % Differential equation governing the change in the concentration of the membrane bound CqsS protein (CAI-1 unbound=Inactive)through time
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dCS = acs + kcd*CSa - C*CS*kcc - gcs*CS;                               % Differential equation governing the change in the concentration of the membrane bound CqsS protein (CAI-1 unbound=Inactive)through time
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dCSa = -kcd*CSa + C*CS*kcc - gcsa*CSa;                         % Differential equation governing the change in the concentration of the membrane bound CqsS protein (CAI-1 bound=Active) through time
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dCSa = -kcd*CSa + C*CS*kcc - gcsa*CSa;                                 % Differential equation governing the change in the concentration of the membrane bound CqsS protein (CAI-1 bound=Active) through time
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dUf = U*Of*duo-Uf*O*fuo-CSa*Uf*dsu + CS*U*fsu - guf*Uf;       % Differential equation governing the change in the phosphorelay protein LuxU (phosphorylated) Concentration through time
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dUf = U*Of*duo-Uf*O*fuo-CSa*Uf*dsu + CS*U*fsu - guf*Uf;     % Differential equation governing the change in the phosphorelay protein LuxU (phosphorylated) Concentration through time
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dU = au-U*Of*duo+Uf*O*fuo - CS*U*fsu + CSa*Uf*dsu -gu*U;       % Differential equation governing the change in the phosphorelay protein LuxU (unphosphorylated) Concentration through time
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dU = au-U*Of*duo+Uf*O*fuo - CS*U*fsu + CSa*Uf*dsu -gu*U; % Differential equation governing the change in the phosphorelay protein LuxU (unphosphorylated) Concentration through time
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dOf = Uf*O*fuo - U*Of*duo - gof*Of;                 % Differential equation governing the change in the phosphorelay protein LuxO (phosphorylated) Concentration through time
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dOf = Uf*O*fuo - U*Of*duo - gof*Of;                             % Differential equation governing the change in the phosphorelay protein LuxO (phosphorylated) Concentration through time
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dO = ao - Uf*O*fuo + U*Of*duo - go*O;                 % Differential equation governing the change in the phosphorelay protein LuxO (unphosphorylated) Concentration through time
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dO = ao - Uf*O*fuo + U*Of*duo - go*O;                             % Differential equation governing the change in the phosphorelay protein LuxO (unphosphorylated) Concentration through time
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dTR = atr + (btr*Of^n)/(ho^n+Of^n) - gtr*TR;                   % Differential equation governing the change in the ptet Repressor protein concentration through time
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dTR = atr + (btr*Of^n)/(ho^n+Of^n) - gtr*TR;                           % Differential equation governing the change in the ptet Repressor protein concentration through time
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dTA = ata + bta/((1+TR/TA)+(htr/TA)) - gta*TA;                 % Differential equation governing the change in the ptet Activator protein concentration through time
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dTA = ata + bta/((1+TR/TA)+(htr/TA)) - gta*TA;                       % Differential equation governing the change in the ptet Activator protein concentration through time
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dR = ar + br/((1+TR/TA)+(htr/TA)) - gr*R;                     % Differential equation governing the change in the response molecule concentration through time
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dR = ar + br/((1+TR/TA)+(htr/TA)) - gr*R;                               % Differential equation governing the change in the response molecule concentration through time
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y(1)=dCS;                                      %
y(1)=dCS;                                      %

Revision as of 00:44, 16 October 2014

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= Scripting =
== RALSTONIA DIFFERENTIAL EQUATION SOLUTION ==