INFLOWS:
ΔF ¼ K3 * I {This is the Michaelis-Menten enzyme model; P_Rate measured in
Moles per Cubic Meter per Time Period}
I(t) ¼ I(t À dt) + (ΔI) * dt
INIT I ¼ 10 {Moles per Cubic Meter}
INFLOWS:
ΔI ¼ K1 * D * EÀ(K2+K3) * I {Moles per Cubic Meter per Time Period}
K1 ¼ .01 {1/Time Period}
K2 ¼ .01 {1/Time Period}.
K3 ¼ .5 {1/Time Period}
Reference
1. Spain JD (1982) Basic microcomputer models in biology. Addison-Wesley, Reading
Reference
73
ΔF ¼ K3 * I {This is the Michaelis-Menten enzyme model; P_Rate measured in
Moles per Cubic Meter per Time Period}
I(t) ¼ I(t À dt) + (ΔI) * dt
INIT I ¼ 10 {Moles per Cubic Meter}
INFLOWS:
ΔI ¼ K1 * D * EÀ(K2+K3) * I {Moles per Cubic Meter per Time Period}
K1 ¼ .01 {1/Time Period}
K2 ¼ .01 {1/Time Period}.
K3 ¼ .5 {1/Time Period}
Reference
1. Spain JD (1982) Basic microcomputer models in biology. Addison-Wesley, Reading
Reference
73
