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In the following we introduce the parallel version of Meisjter algorithm for both steps.
The time and temperature for both steps were 30 min and 367 K, respectively.
For both steps the in-vitro selection method Proside was employed.
The total synthesis time for both steps combined was about 50 min, with an overall decay-corrected yield of about 50% to 60%. Figure 9 NODA-MPAEM.
In practice, the computation rate for both steps 1 and 2 are thus reduced to every 12.5 milliseconds, without introducing significant degradations.
The calculated individual rate constants for both steps are presented and their changes with the increase in electrolyte concentration are discussed.
Similar(22)
The accelerometer we use for both step detection and stride estimation.
A series of experiments were performed for both step increases and step decreases in the fluidization velocity.
Then, the maximum likelihood estimators of change points designed for both step changes and linear-trend disturbances are derived.
Then, the MLE of change points designed for both step changes and linear-trend disturbances were derived.
Third, new semi-analytical solutions for both step-up and step-down responses have been successfully constructed by using a linear time-varying system formulation that incorporates time-varying compliance.
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