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The sediment delivery ratio (SDR) was calculated as: SDR = χ i S l flow 1−− P. where: χ i, coefficient of land use; s, slope (m m−1); l flow, average distance from watercourse (m); P, likeliness of connectivity.
Under the steady-state condition, the effects of the combustor diameter (d), combustor length (L), flow velocity (u0) and fuel air equivalence ratio on the wall temperature distribution were investigated by measuring the detailed wall temperature profiles.
After the removal of the remaining sugars with distilled water (total, 2.5 L; flow rate, 1 mL/min), gallic acid glucoside was extracted with 85% (v/v) acetonitrile in water.
Solutions of methyl orange azo dye were degraded by electrochemical oxidation using a 3 L flow plant with a boron-doped diamond (BDD /stainless steel cell operating at constant current density, ambient temperature and liquid flow rate of 12 L min−1.
The likeliness of connectivity P (day) was calculated using the following square root function according to Voges (1999): P = p 2 l flow + p 2 A + p RO 2. where: pl flow, probability index for the distance to the watercourse; p A, probability index for soil erosion; p RO, probability index for surface runoff.
Hatchlings were then transferred to 10 l flow through tanks (19 × 25 × 20,5 cm) with a water temperature of 17°C and a 16 h: 8 h light: dark cycle.
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l Wikipedia.
then l p ( a, c ) ∈ R p.
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