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Theoretical Calculation On Cr-39 Response For Radon Measurements And Optimum Diffusion Chambers Dimensions

机译:Cr-39 Rad测量响应和最佳扩散室尺寸的理论计算

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One method to measure radon gas concentration in the air with a long time of radiation is trace chemical etching technique. There is a direct proportion between the number of traces on solid-state nuclear track detectors (SSNTDs) and activity concentration of radon. In this paper, calibration constant for a cylindrical chamber with CR-39 detector has been measured analytically. Using this measurement, trace curves on the base of concentration for chambers with different heights and radii have been drawn. The results show that to measure radon gas concentration, the optimum chamber should have a height between 3.5 and 4 cm and a radius between 2.5 and 3.2 cm.
机译:痕量化学蚀刻技术是一种测量长时间辐射的空气中ra气浓度的方法。固态核径迹检测器(SSNTD)上的痕迹数量与of的活动浓度之间存在直接比例关系。在本文中,已经分析性地测量了带有CR-39检测器的圆柱形腔室的校准常数。使用该测量,绘制了基于浓度的高度和半径不同的腔室的迹线曲线。结果表明,要测量ra气浓度,最佳腔室的高度应在3.5至4 cm之间,半径应在2.5至3.2 cm之间。

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