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The efficiency of sedimentation tanks depends on the following factors: detention period, wastewater characteristics, tank depth, floor surface area and overflow rate, operation, temperature, particle size, and inlet and outlet design.
The one frog for which lung size data are available had 0.25 PCL, uninflated lungs on day 8. Experiment 3 involved five 11-week old frogs transferred to a nonaerated circular tank (depth or D = 6 cm).
Tank depth for experiments 1 and 2 (8 cm) was similar to depths used in other experiments on Xenopus tadpole behaviors (Calich and Wassersug, 2012; Katz et al., 1981).
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Maximum tank depths ranged from 3.5 to 4.5 m at land-based facilities, which produced diameter-to-average-depth ratios of 3.6 1 to 5.5:1 m:m.
Gauges, sometimes called instruments, reveal how much air is left in the tank, the depth and the time spent below.
Simulations were conducted on two full-scale tank types (depth-to-diameter ratios) with different inlet orientations and inlet jet momentum.
On January 22-24th 2007, an average of 307 ± 11 fish were randomly distributed to each of 12 round experimental tanks (water depth = 75 cm; 5.3 m), giving a stocking density of 20.8 kg m-3.
Solved examples are provided to describe methods for theoretically calculating the dimensions of solid-separators, such as cross-section of tanks, their depths and their operating zones.
The rats were subjected to cold water immersion stress by placing them individually in a tank of water (depth = 15.5 cm; temperature = 16 ± 2 °C) for 5 min.
Analysis of a wedge wave-maker in a tank of finite depth.
In Experiments 4 and 5, nine frogs were filmed for one or more 30-minute periods on days 0, 14 14 and 28; aeration and tank shape and depth were varied in one or both experiments.
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