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We derive a number of structural results and show that the gap is maximized when the customer demand is maximally balanced between the facilities.
Composite score reliability was maximized when the PN was weighted between 30% and 40%.
Preliminary simulations showed that mass flow rate is maximized when the eccentricity is small.
Gas production can be maximized when the temperature is kept within those ranges and the feedstock is constant.
The flexural capacity of the system can be maximized when the deposited layer is subjected to pure compressive stress.
The simulations predict that the ionic conductivity will be maximized when the G4 mole fraction is around 10 20%.
Selectivity for several classes of competitive reactions is maximized when the feed is located in a highly turbulent region.
The FOM was maximized when the inter-detector distance and detector thickness were 18 cm and 1.5 cm, respectively.
The benefits from such integration can only be maximized when the two parts are designed to work cooperatively.
The strength of the fiber-reinforced part is maximized when the fiber direction coincides with the direction of the major principal stress of the part.
These savings can be maximized when the tensions structures are designed in such a way that their material and shape contribute to their optimal photometric and mechanical performance.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com