SIMULASI AKTIVITAS KESTABILAN INTI PELURUHAN DERET NEPTUNIUM DENGAN PENDEKATAN ENERGI IKAT INTI MODEL TETES CAIRAN

Auralia Febriandina, T. Prihandono, A. D. Lesmono
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Abstract

The purpose of this study was to calculate the activity, binding energy, and disintegration energy produced by the decay of radioactive substances in the Neptunium series based on the liquid drop core model. The research steps: 1) prepare supporting data for research on activity and binding energy on nuclear stability decay; 2) review the material that has been obtained; 3) perform calculation simulations; 4) analyze and discuss the calculation results; 5) conclude the research results. The conclusion in this study is that the activity value has increased linearly with a range of values ​​from  Bq to  Bq. The binding energy decreased linearly with values ​​ranging from 1797.4088 MeV to 1627.7112 MeV. Meanwhile, the binding energy of the nucleons increases linearly. The disintegration energy in the Neptunium series has the largest positive value (Q>0) of 5.2712 MeV and the smallest disintegration energy of Radium-225 which is -0.4317 MeV.  Keyword : The activity, binding energy, liquid drop model
采用流体结缔量模型的细胞核衰减速率再现
本研究的目的是基于液滴核模型计算镎系放射性物质衰变产生的活度、结合能和衰变能。研究步骤:1)为核稳定衰变的活度和结合能研究准备支撑数据;2)对已获得的材料进行评审;3)进行计算模拟;4)对计算结果进行分析讨论;5)总结研究成果。本研究的结论是,在Bq到Bq的范围内,活度值呈线性增加。结合能在1797.4088 ~ 1627.7112 MeV范围内呈线性下降。同时,核子的结合能呈线性增加。镎系的衰变能最大正值(Q>0)为5.2712 MeV,镭-225的衰变能最小,为-0.4317 MeV。关键词:活度,结合能,液滴模型
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