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Source phase (mL).
In the source phase, the sources orthogonally broadcast their respective source packet.
The variables of interest were the type of organic phase, pH of the source phases, ionic strength, volume of the source phase, stirring rate, extraction time and temperature.
By using Algorithm 1, subscarriers can be assigned to the two flows in the source phase.
Fig. 2 Proposed resource allocation algorithm for the source phase transmission.
So the interflow interference can be completely avoided in source phase.
the suboptimal resource allocation scheme for the transmission of source phase is illustrated in Fig. 2.
This gives us an insight to design the suboptimal resource allocation schemes for source phase.
Let Π k be the set of allocated subcarriers for flow k in the source phase.
All considered sources overhear each other during the source phase, and act as relay in the relay phase.
The net result is the mass transfer of phenol forms source phase to the receiving phase through a PIM system.
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