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HYDROGEN PEROXIDE YIELDS USING GAS MIXTURES
HYDROGEN PEROXIDE YIELD AS A FUNCTION
2.0 Mc/sec fre 2.0 Mc/sec frequency adiabatic compression hypothesis argon provide ARGON-OXYGEN MIXTURES Catholic University causes the chemical cavitation bubble cavitation causes cavitation produced chemical cavitation threshold chem chemical action chemical effects chemical yield decrease deflection diatomic dissolved gas doubly distilled water effective intensities effects of ultrasonics evaporation Experimental Procedure four irradiation free radicals frequency and temperature FREQUENCY DEPENDENCE function of intensity GAS MIXTURES gassed water Griffing helium and argon hold determination hot doubly distilled HYDROGEN PEROXIDE YIELD ical yield increase initial thresholds intensity of irradiation inversely dependent irradiated solution irradiation vessel liquid maximum output meq liter mole fraction NITROGEN-OXYGEN MIXTURES Noltingk PEROXIDE YIELD VERSUS polyatomic gases pure argon quencies radiation pressure rare gases ratio of specific reaction saturated solutions solubility specific heats stopcock surface tension thermal conductivity thres threshold of cavitation threshold values threshold was taken tion bubbles University of America VERSUS GAS COMPOSITION VERSUS IRRADIATION YIELD VERSUS GAS