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A mathematical model considering external and internal mass-transfer resistances and variable velocity due to change of liquid composition was developed to describe the dynamic behaviour of the SMBR and it was validated by the experiments performed; it was observed that the experimental results were well predicted by the model.
A mid-short-term risk assessment model considering external environment is proposed.
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The ion exchange dynamics within the column was described by a model considering the external mass transfer and the diffusion within the particle.
A closed form dynamic model considering the external excitations on the base platform is performed based on the Newton Euler approach.
Then stiffness model considering the external axial load in static state, and axial displacement as well as operational preload model in rotational state of the spindle-bearing system with piezoelectric actuators in variable pressure preload and variable position preload are proposed and simulated.
As suggested by Magnus et al. [ 52], metabolites whose concentrations cannot be explained in terms of the model are considered external, i. e., they are an input to the model but involved in numerous other reactions that are not reflected by this system.
Chemical shifts were referenced considering external DSS.
An irreversible regenerative Brayton cycle model considering internal and external irreversibilities is developed in matrix laboratory (MATLAB) simulink environment and thermodynamic optimization based on finite time thermodynamic analysis along with multiple criteria is implemented.
A new deformation model considering both the external (mainly climatic) and internal factors (such as tectonic activities and thermal character of frozen soil) is constructed and introduced into the SBAS-InSAR to estimate the surface deformation over permafrost.
The model considers the external mass transfer from the bulk liquid phase to the particle surface and the effective diffusion within the particle itself.
This paper proposes a mid-short-term risk assessment model considering the impact of external environment on transmission lines.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com