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The GOR of the cycles was found to decrease with increasing component terminal temperature difference (TTD).
The reduction in the capacitance after 100 cycles was found to be less than 25%.
Concerning the extraction yield, an ethanolic extraction at 190 °C for 3 consecutive cycles was found to be optimal.
The shape hysteresis between heating and cooling cycles was found to be due to the barrier of ledge nucleation necessary to advance the faceted interfaces.
Applying lower duty cycles was found to result in increased breakdown voltages and microdischarges with higher spatial density and lower intensity.
A strengthening effect of increased frequency was observed for both materials and the effect of small stress cycles was found to be negligible.
Similar(42)
Transient temperatures cycles were found to be small.
Thus, whether ¼-lag or antiphase cycles are found depends on whether prey biomass and defense cycle synchronously or anti-synchronously.
Pluto's climate and ice cycles are found to be very sensitive to model parameters and initial states.
The areas of multiplicity and limit cycles were found and the phenomenon of hysteresis in the reactor was shown.
The optimum PL for both VSA cycles is found to be ~0.02 atm with respect to both objectives.
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