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Upon treatment with 22 μM Cu2+, sensor CuFS achieved a dramatic fluorescence enhancement (fluorescence intensity enhanced up to 811-fold) centered at 469 nm.
It has been known that surface-plasmon-enhanced transmission through nanoholes can be enhanced up to an order of magnitude by matching the refractive index on either side of the metal film.
By using multithreading the performance is further enhanced up to 60.16 fps using 4 threads.
They found that the Nusselt number can be enhanced up to 80%.
According to their results, the thermal efficiency can be enhanced up to 3 4%.
Under the optimal condition the yield of refolding was enhanced up to 7-fold.
The maximum responsivity can be further enhanced up to 174.62 mV/T.
Meanwhile, the average dynamic viscosity enhanced up to 50% for 60 40 (W EG).
In both cases, the selectivity was significantly enhanced (up to 100% in permeate-only mode).
The optical output power of these LEDs was enhanced up to 55.3% for an input current of 100 mA.
The frequency of the CSL boundaries was enhanced up to 86.6% by grain boundary engineering treatment prior to irradiation.
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