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The distance of (N_k u)) to u is defined as the max distance between u and each nearest neighbor, namely (ktext mathrm{{Dist}}^tau (u)=max limits _{vin N_k u)} D^* nu _{u}^{tau },nu _{v}^{tau })).
At its fullest extension, it subtended a visual angle of 58° vertically (max distance between a hand and a foot ≈200 cm) and 31° horizontally (max distance between the right and left hand ≈100 cm) at the viewing distance of the subjects (180 cm).
HLH-1 bound peaks and interval sequences were identified using the following parameters in the notator function: analysis type, p-value; percentile value, 0.95; -log p-value cutoff, 13; minimal number of probes, 5; max distance between two probes, 100; min distance between two peaks, 200; window length, 500; promoter definition (bp), −2000; annotation priority, gene.
Further parameters were anatomical joint angles, peak ground reaction forces, step length (from right heel marker (calcaneus) at heel strike to the left heel markers (calcaneus) at heel strike), step width (the max distance between the two lateral malleolus) and foot progression angle.
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Minimum distance is 2.75-feet and the max distance is 30-feet for a 100-inch screen.
The following settings were used: mismatched SSR-search with a fixed mismatch penalty; minimum score: 15; fixed mismatch penalty: 5; minimum SSR-seed length: 8; minimum SSR-seed repeats: 3; max mismatches at once: 5; If not denoted otherwise, a d max (maximum distance between adjacent microsatellites as to account as compounded) of 10 bp was used.
For the discovery of the most reliable rules, a distance separation technique is used to determine the Max-Min distance between the normal and cancer classes separated by each rule, and the widest distance is then taken to recommend the best rules.
Three possible modes of crossover operators—"Max Distance", "Min-Max Distance", and "Neighboring-Max"—are suggested and analyzed.
The Respiration Rate (RSP_Rate) index represents the peak-to-peak time (max-to-max distance of the sinusoid).
d max denotes the maximum distance between the two mobile nodes.
Here, R max is the largest distance between the volume elements within a particle.
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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