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The dynamic facility layout problem (DFLP) is the problem of finding positions of departments on the plant floor for multiple periods (material flows between departments change during the planning horizon) such that departments do not overlap, and the sum of the material handling and rearrangement costs is minimized.
The Multi-Floor Layout Problem (MFLP) is the problem of finding the position of each department in a plant floor in a multi-floor building without any overlapping between departments in order to optimize a particular objective function, more commonly the sum of the material handling costs.
Therefore, every player is playing their best response in the outcome that maximizes the sum of the material payoffs.
In Example 2, the outcome where the sum of the material payoffs is maximized is one of the sequential group reciprocity equilibria.
We generalize the circumstances in which the outcome where the sum of the material payoffs is maximized is a sequential group reciprocity equilibrium.
The total initial volume of the lahar is calculated in the combined model as the sum of the material mobilised through overland erosion and shallow landsliding for a given rainfall intensity and duration.
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The subclass IfcWallStandardCase of IfcWall is used for all walls that do not change their thickness (the thickness of a wall is the sum of the materials used).
The average total lead time of raw material n at plant k is calculated as the sum of the raw material lead time and delay time considering all the suppliers, as shown below (Sabri and Beamon 2000): T 4 nk = ∑ v T 1 njk + T 2 nj × 1 - A 1 nj N Open image in new window (3.4).
Noncovalent binding, as estimated by the gap between the sum of the recovered material and that in original ligation solution, seems to be higher and more uniform relative to the LPRTG-gel concentration for the 20 μM GGG- EGF condition.
The complex recovering yield was calculated as the ratio between the complex mass and the sum of the starting materials (βCD and flavonoids as quercetin).
In keeping with the tradition, Twardowski calls the matter of an object the sum of its material parts and the form of an object the sum of its formal parts.
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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