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The measured latencies range from 1 ms up to 30 ms [4].
The fluorescence lifetime is similar (5.3 ± 0.3 ms) up to 8 at% of Eu3+, followed by decreases at higher Eu3+ contents.
An enhancement of Ms up to +20.7% was observed at room temperature in the case of the 10 wt.% CoFe2O4-P VDF-HFP) sample.
Typical phosphorescence lifetimes can vary from 100 ms up to many seconds in duration, while the lifetimes of fluorescent materials usually range from 1 ns to 10 ms.
Results indicate that nanoscale Al particle composites show significantly reduced ignition times that varied from 12 ms up to 6 s for nanometer compared with micrometer scale Al particle composites, respectively.
The variations of the real environment ranges typically from below 1 ms up to more than 100 s and are caused by for example fast and slow fading [3], varying user traffic and continuous network reconfiguration for optimisation as shown in Fig. 1.
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Typical stocking density 34kg (17 birds) per sq m (up to 38kg is allowed).
Some of these gullies may develop into channels with a depth of more than 0.8 m (up to 4 m).
Those revealed considerable variations in the thickness of the clay layer, ranging from 0 m up to 25 m.
Beyond this depth, the resistivity ranges from 51to8585 Ω m up to depth of 10 m.
Those are stacked to form four high-frequency sequences with thickness range from 1 m up to 14 m.
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