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A brief account is given of the basic principles of uncertainty modelling with first-order second-moment methods.
The bioreaction has been modelled with first order kinetics for COD levels < 125 mg/L and with zero order kinetics for higher COD values.
For all forms, anharmonic motion for the sulfur atoms was modeled with third- and fourth-order Gram-Charlier components.
Using the first harmonic approximation, the controlled system is first modeled with a fifth-order nonlinear state-space representation.
The dynamics of the beam are modelled with a second-order non-linear ordinary-differential equation.
Kinetics of uptake, biotransformation, and elimination of parent compounds and metabolites were modeled with a first-order one-compartment model.
The paper studies a linear errors-in-variables model with first order autoregressive processes.
The adjusted R 2 values are sometimes small but this is not unexpected in time series models with first differences.
Anti-Xa activity time-courses were well described by a one-compartment open model with first order elimination.
The proposed prediction method is based on a so-called modified grey model with first order – one variable – MGM 1,1).
Results: Anti-Xa activity time-courses were well described by a one-compartment open model with first order absorption and elimination.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com