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D Stanga

Publications and source records attributed to D Stanga.

8 recordsLinked to original sources

Standardization of tritiated water by two improved methods.

Tritiated water has been standardized in the framework of a French-Romanian cooperation by two improved methods: liquid scintillation counting based on the triple to double coincidence ratio method and the internal gas proportional counting used in conjunction with a tritium generator for chemical reduction of water. The uncertainties of measurement for both methods were smaller than 0.6% and the two results were consistent within these uncertainties, indicating that either method is equally suited for standardizing tritiated water.

Calibration↗

Improved method of measurement for tritiated water standardization by internal gas proportional counting.

Tritiated water has been standardized by internal gas counting following its chemical reduction to tritiated hydrogen by using a new tritium generator and an improved method of measurement. This method is based on the equality between the molar activities of the tritiated water and the tritiated hydrogen and is valid only when the reduction yield is unitary. It is simpler and more accurate than the conventional method. Two samples of tritiated water from a sealed ampoule were measured by internal gas proportional counting using both the conventional method and the improved method of measurement. The obtained results demonstrated the validity of the improved method.

Journal Article↗

Interfacial conditions during evaporation or condensation of water.

Steady-state evaporation and condensation experiments have been conducted with water under conditions where buoyancy-driven convection is not present. The temperature profile in each phase has been measured. At the interface, independently of the direction of the phase change, a temperature discontinuity has been found to exist in which the interfacial vapor temperature is greater than that in the liquid. In a thin layer immediately below the interface the temperature is uniform in a layer ( approximately 0.5 mm) and below that the temperature profile is linear, indicating thermal conduction. The uniform temperature layer indicates a mixing process occurs near the interface that could result from surface-tension driven (Marangoni-Bénard) convection and/or from "energy partitioning" that is necessary to account for the measured temperature discontinuity near the interface. When the measured interfacial properties are used with the expression for the phase change rate that is obtained from statistical rate theory, it is found that the predictions are in close agreement with the measurements.

Journal Article↗

Importance of covariances for uncertainty estimates in measurement of radionuclide mixtures by multichannel counting.

Multichannel counting is often used when samples containing a mixture of known radionuclides are measured. Solutions to this method have been presented but to our knowledge, none of them took into account the covariances for evaluating the uncertainty of measurement. This paper presents new solutions for estimating uncertainties in measurement of radionuclide mixtures by multichannel counting and shows that covariances may contribute significantly to uncertainty of measurement so that they must be evaluated.

Alpha Particles↗

Complement activation involvement in decompression sickness of rabbits.

A hypothesis has been proposed that claims much of the phenomena of decompression sickness (DCS) are mediated by the complement system of blood plasma. This "complement hypothesis" can be used to explain the variation in susceptibility of individuals to DCS, including the phenomena of acclimatization and de-acclimatization. In this study, certain predictions of the complement hypothesis were examined by exposing rabbits to a particular pressure profile; some were observed to have symptoms of DCS and some showed none. Those that were observed to have symptoms were also found to have native complement systems that were activated by air bubbles, and those that did not show symptoms of DCS when exposed to the same pressure profile had native complement systems that were not activated by air bubbles. Rabbits that had shown symptoms of DCS the first 2 times that they were exposed to the pressure profile could be acclimatized to the pressure profile by pharmacologically decomplementing them in vivo. After being decomplemented, they showed no symptoms of DCS when they were exposed to the same pressure profile for a third time. When the decomplemented rabbits were allowed to remain inactive for a period of time that was sufficient to allow their complement systems to return to normal, after having been decomplemented, and were then subjected to the pressure profile for the fourth time, they were each again observed to have symptoms of DCS, i.e., they became de-acclimatized when their complement systems had returned to their native sensitivity. These results provide further experimental support for the complement hypothesis.

Animals↗

Analytical calculations of counting losses in internal gas proportional counting.

In internal gas proportional counting, the evaluation of counting losses is important in order to obtain high accuracy measurement results. In this paper, counting losses due to the wall effect and not counted beta particles with very low energy are evaluated by analytical calculations. The calculated and experimental results are compared and a very good agreement is found.

Journal Article↗