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This paper describes a computational approach for system modelling and model based design of microfluidic networks for processing of microsegmented sample streams and its application for modelling of the self-controlled 1 1 fusion of two independently generated sample streams.
Then, except the beginning point, the two generated sample streams do not have any overlap in origin signal sequence.
Liquid/liquid segmented flow based highly integrated lab-on-a-chip devices offer a powerful and versatile approach for high-throughput processing of linearly organized sample streams.
In [13], those authors propose an approximate maximum likelihood method (AML) for wideband signals using spectral properties of the signal when rather long sample streams are available.
Original sample rate is T s, and the down sampling rate for two sample streams are M and N whose greatest common divisor is one.
The sample/standard solutions were propelled making use of a four channels peristaltic pump whereas 4 colorimetric reagents specific for the metal ions were separately injected in sample streams using multi-syringe pump.
Similar(50)
being the polyphase decomposition of the received sample stream.
By performing colour intensity analysis on acquired frames, the sample stream position and width are derived.
Nitrite is determined with identical chemistry but omitting the copper-cadmium column from the sample stream.
These were introduced to the sample stream via a T-piece.
Furthermore, the effect of diffusive dispersion between the sheath stream and the sample stream is investigated analytically and numerically.
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