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Radioactive Decay as A Second-Order Kinetics Transformation Process. Consequences on Radiometric Dating

机译:放射性衰变作为二阶动力学转化过程。辐射定年的后果

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Arguments suggest and recent analysis of experimental work confirm that the current interpretation of the transformation process we call 'radioactive decay' should be revised. The characteristics of this process are better accounted for by re-interpreting it in terms of second-order kinetics. Therefore, the atomic systems of nuclides we observe decay are 'radio-activated', and not, as hitherto believed, 'radio-active'. According to this interpretation, the rate of decay of a radioactive nuclide is at any instant proportional to the concentration of the physical species that determines its activation. The analysis of of alfa- and beta-emitting nuclides show the dependence of these parameters from solar activity and distance. Therefore, if changes in the emission of energy from the sun occurred over time since the formation of a geological system, changes in the values of of the radioactive nuclides would also have occurred, and the calculated radiometric age of the system may differ from the true age. Implications on the science of dating geological samples using parent-daughter decay systematics are investigated.
机译:有关论点的建议和最近对实验工作的分析证实,应修正对我们称为“放射性衰变”的转变过程的当前解释。通过根据二阶动力学重新解释它,可以更好地说明该过程的特征。因此,我们观察到的核素原子系统的衰变是“放射性的”,而不是迄今为止所认为的“放射性的”。根据这种解释,放射性核素的衰变速率在任何时候都与决定其活化作用的物理物质的浓度成正比。对发射α和β的核素的分析表明,这些参数与太阳活动和距离有关。因此,如果自地质系统形成以来,随着时间的推移,太阳的能量发射发生了变化,那么放射性核素的值也将发生变化,并且系统计算出的辐射年龄可能与实际的不同。年龄。研究了使用亲子衰变系统对地质样品进行年代测定的科学意义。

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