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The heat transfer was measured using a uniform heat flux (UHF) liquid crystal technique.
Then the enhancement of mass transfer was measured during reactive extraction.
The unsteady mass transfer was measured applying a counter current flow cell for single droplets.
Strand transfer was measured in vitro, in reactions involving primer switching from a donor to acceptor RNA template.
Mass transfer was measured from small strips using the diffusion-controlled electrode method for both non-reversing and reversing flows, corresponding to small and large pulsation amplitudes, respectively.
After 60 min of incubation at 37 °C, transfer was measured by the fluorescence intensity with BioTek Instrument (Gene Company Limited., USA).
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Bubble-water oxygen transfer is measured by the disturbed equilibrium technique.
The effects of Reynolds and Knudsen numbers on heat transfer were measured and analyzed.
Rates of mass transfer were measured at a vibrating rough (V threaded) vertical cylinder by the electrochemical technique.
The fluid pressure drop along the heat exchanger and the heat transfer were measured and corrections were made to isolate the contribution of the microchannels.
The rate of gas liquid mass transfer is measured spectrometrically while the hydrodynamics of the reactor is studied by γ-ray tomography.
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