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1)  substituted pyridine N-oxide
质子化能
1.
A semi-empirical LCAO-MO-AM 1 calculation is performed for some substituted pyridine N-oxide.
在LCAO-MO-AM1水平上计算了取代氧化吡啶的气相质子化能
2)  proton electron-chemistry potential energy across mitochondrial membrane
跨膜质子电化学势能
3)  Deproton energy
脱质子能
4)  high energy proton
高能质子
1.
Monte Carlo simulations of nuclear reactions induced by high energy protons;
高能质子核反应截面的Monte Carlo计算
5)  high-energy proton
高能质子
1.
In the paper,space high-energy proton-induced SEU rate estimate of electronic devices are engaged in research, and 13 primary methods predicting Proton-induced SEU rate are summarized and compared with each other.
文章对星栽电子系统空间高能质子单粒子翻转率计算方法进行了研究。
2.
The research on the radiation effects of materials induced by high-energy proton irradiation is of important significance in many scientific fields, such as the single event effects of semiconductor components exposed on space, accelerator-driven nuclear energy generator, tritium production by accelerator, intense pulsed ion beam technology, proton radiography, etc.
宇宙高能质子的单粒子效应(SEE)研究、洁静核能系统(ADS)研究、加速器产氚计划(APT)、强脉冲离子束(IPIB)技术、质子断层扫描等领域都涉及质子辐射效应问题。
6)  low energy proton
低能质子
1.
Non-ionizing energy loss of low energy proton in semiconductor materials Si and GaAs;
低能质子在半导体材料Si和GaAs中的非电离能损研究
补充资料:“质子-电子偶极-偶极”质子弛豫增强


“质子-电子偶极-偶极”质子弛豫增强


  物理学术语。原子核外层中不成对的电子质量小,但磁动性很强,可使局部磁场波动增强,促使氢质子弛豫加快,从而使T1和T2缩短,这种效应即为PEDDPRE。过渡元素和镧系元素大部分在d和f轨道有多个不成对电子,所以其离子往往具有PEDDPRE,可用来作顺磁性对比剂,如钆(Gd)。Gd在外层有7个不成对电子,具有很强的顺磁性。
  
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