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Temperature induced deteriorations on system level performance are quantified and modeled through a specially designed cooling system to capture the system characteristics.
Conditions for stability of laminar flow in rotating configurations are specified; secondary flows induced by Coriolis forces and their effect on separation performance are quantified.
In this step the unknown key parameters are identified, and their influences on the process performance are quantified in a detailed a priori process analysis.
The effects of pore volume fraction, pore type, pore orientation and pore spacing, together with the wave length and the amplitude of zig-zag pore microstructures on overall thermal performance are quantified.
Following this approach, the environmental and the economic performance are quantified separately as two different objectives, and the final result is given by a set of Pareto optimal solutions.
The flow and mixing performance are quantified using the following: velocity fields in vertical cylindrical sections, Lacey's mixing index, inter-particle forces in vertical cylindrical sections through the particle bed and the applied torque on the blade.
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The classification performance is quantified by the help of a normalized confusion matrix [7].
Solar cell performance was quantified with an Oriel Sol2A solar simulator under standard testing conditions.
The estimation performance is quantified by the relative error and reliability.
Thermal performance is quantified in terms of discharge efficiency, extraction efficiency, and fraction of heat recoverable.
Formation keeping performance is quantified by monitoring shape and size changes of the triangular formation.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com