Examples of 'kinetic model' in a sentence
Meaning of "kinetic model"
A kinetic model is a simplified representation of a system that focuses on the motion and interaction of its components. It is commonly used in physics and chemistry to study the behavior of gases and chemical reactions
How to use "kinetic model" in a sentence
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kinetic model
A kinetic model for bioconcentration of lipophilic compounds by oligochaetes.
These experimental results allow the establishment of kinetic model.
Kinetic model for oxidation of cumene.
Four exponential kinetic model.
Testing of kinetic model of etherification by simulation.
Estimates of kinact were obtained using this simple kinetic model.
A kinetic model of membrane repair is proposed.
There is a considerable body of literature on the urea kinetic model.
In this kinetic model were determined kinetic parameters by thermal analyzes.
Experimental results were compared to those obtained with a detailed kinetic model.
A simple kinetic model of the accommodation pumping phenomenon is developed.
The results were applied in constructing a kinetic model for polymerization of acrylamide.
A kinetic model including population balance was employed to simulate the process.
The second chapter provides an analytical kinetic model for resistance degradation.
This simple kinetic model was a powerful stimulus for research.
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The considerable impact of these materials on light diffusion was presented using a kinetic model.
Kinetic model of fermentation.
The data was generated using a kinetic model to simulate the performance of such an engine.
A kinetic model was constructed to describe the delignification of untreated and autohydrolysed birch.
The bubble generation and destruction is described by dynamic of the first order kinetic model.
The kinetic model is based on a reaction scheme and a reactor model.
The data confirmed that a pseudo first order kinetic model provided a good fit.
The kinetic model.
The obtained temperature profile is compared to the temperature profile required by the kinetic model.
The kinetic model more accepted to describe pellet reduction is the topochemical one.
Kinetic studies showed that the adsorption process followed pseudo second order kinetic model.
The kinetic model of first order described well the behavior of degradation of drug.
On the basis of our result, we propose a kinetic model.
The kinetic model predicts those trends as well as the thickness of the oxidized layer.
From that observation, we propose a kinetic model of bilayer growth.
A kinetic model based on this mechanism has shown very good agreement with experimental results.
After metabolism is induced, the elimination approximates a first order kinetic model.
A kinetic model for predicting PET macromolecular changes during its mechanical recycling.
A multi-band radiation model and a reactional kinetic model are also integrated.
For this purpose, a kinetic model of the two polymerizations was developed.
For that, we first derive the magnetohydrodynamic models from the kinetic model.
H-factor is a kinetic model for the rate of delignification in kraft pulping.
From the results obtained, an oxidation mechanism is proposed and a kinetic model is developed.
The kinetic model is two dimensional in space, and one dimensional in energy.
In a second step, we introduce and mathematically analyze a kinetic model capable of generating oscillations.
In addition, a kinetic model of the postcondensation of these powders in dispersed medium is elaborated.
These equations can be distilled down to a kinetic model known as the Michaelis-Menten equation.
The adsorption kinetics of both mycotoxins follow the pseudo-second order kinetic model.
Moreover, a qualitative kinetic model for the oxidation of indane has been proposed.
For each fuel, the experimental results were used to develop and validate a kinetic model.
For simulations, a detailed kinetic model was developed based on recent literature data.
The data of Figure 4 was generated using the same kinetic model.
The Michaelis-Menten kinetic model of a single-substrate reaction is shown on the right.
Fig . 25 is a conceptual description of a pseudo one-compartment kinetic model for potassium.
The Langmuir-Hinshelwood kinetic model well captured the kinetics of the hydrolysis reaction.
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