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We examine scenario S3 in Table 4 which has a negative leading wave.
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First, we shall examine scenarios with no clutter.
We examine scenarios under which mineral-water reaction kinetics exhibit mixed-kinetic control, that is, when both surface reaction rates and hydrodynamic conditions influence rates of dissolution and precipitation from aqueous solutions at mineral-water interfaces.
Moreover, the model provides a tool with which to examine scenarios for the spread and control of BTV in Great Britain.
Therefore, because MLE serves as the basis of the distribution-based MI method, we did not examine scenarios in which > 80% of data were < LOD.
Figure 8 Two-dimensional representation of the associated reputation for PUs appearances in the examined scenario.
In the examined scenario, 20 SUs coexist with 2 randomly located PUs over M=2 homogeneous licensed channels, while we assume L=3 available power levels and λ1=λ2=1.
The assumption on arable land and grassland available for renewable energy feedstock production in the examined scenario involves an expansion compared to the baseline situation.
For this reason, the examined scenario assumes that the network links are generally in good state, so when calculating UB, only the case of successfully polling a loaded station is considered.
Taking also into account that in the examined scenario half of the flows are originated in the AP that does not require physical polling for receiving transmission permission, the following formula is finally resulted: (16).
At this point, it should be noticed that in (18) the traffic generation rate is considered to be constant, which is true for the examined scenario, and the traffic throughput is also assumed constant, which does not absolutely hold.
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