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- W2597392856 abstract "Most methods measure changes in the mass of a sample due to adsorption, condensation, or reaction in high-pressure, high-temperature vessels by balancing or directly sensing its weight. This study presents a simple, integrated, mechanical and electromagnetic method to determine mass through the object's inertia. The natural frequency of a sample suspended by a spring was measured using a solenoid and oscilloscope. The effect of the surrounding fluid on the frequency of oscillation was characterized and accounted for in mass determination. The combination of simple mechanical/electromagnetic components and proper calibration provided an average accuracy of 0.25−0.35% for tested masses between 56 g and 106 g. The measuring range in this technique can be changed by fitting the system with springs with different moduli." @default.
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- W2597392856 date "2017-04-12" @default.
- W2597392856 modified "2023-09-25" @default.
- W2597392856 title "Experimental technique to measure mass under high pressure conditions using oscillatory motions of a spring-mass system" @default.
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- W2597392856 doi "https://doi.org/10.1088/1361-6501/aa66c8" @default.
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