atomic energy
- atomic energy的基本解释
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原子能, 核能, 原子能量
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- atomic energy commission
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So, the average density of spatial energy of spatial radius is the length of Planck of relative time-space cosmic energy follow the rise and fall of quantum spatial measurement, at original cosmic time-space set out, from the structure-energy of mass 16.38×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 8.19×10-71 N · m, come to do not exceed the structure-energy of mass 32.76×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 24.57×10-71 N · m, not smaller the structure-energy of mass 21.84×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 13.65×10-71 N · m, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach the stable state of structure-energy mass 24.57×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 16.38×10-71 N · m maintain unchanging.
所以,宇宙能量的相对时空空间的半径为普朗克长度的空间的能量平均密度随宇称量子的涨与落,在原初的宇宙时空启动,从16.38×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与8.19×10-71N · m 质能,成不大于32.76×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与24.57×10-71N · m 质能,不小于21.84×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与13.65×10-71N · m 质能,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到24.57×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与16.38×10-71N · m 质能的稳定状态保持不变。
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We show that the atomic c.m motion dont affect the atomic spectrum phase sensitivity when there is no correlation between atomic cm. motion and the field. With the increase of the average energy for atomic cm. motion, the peaks of the emission spectrum move towards each other, their heights change according to the state of the field and atomic motion. While there is correlation between atomic c.m.
当原子质心运动与光场无关联时,原子质心运动不影响原子发射谱对原子偶极矩和光场相对相位的敏感性,随着原子质心运动平均能量的增加,原子发射谱峰间的相对距离变小,峰高的变化与原子质心运动和光场所处的状态有关。
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The theoretical system for describing the structures of organic and drug molecules using 3 types of molecular electronegativity-distance is created based on various atomic types and atomic attributes. These MEDVs include MEDV-4 based on 4 atomic types and relative electronegativity and relative bond length to carbon atom, and molecular holographic distance vector based on 13 atomic types and relative bond length to carbon atom, and MEDV-13 based on 13 atomic types and atomic attributes and the modified electrotopological state index.
通过不同原子类型与原子属性划分方案,创建了3种形式的分子电性距离矢量即以4种原子类型划分方案和以碳原子为标准的相对电负性与相对键长为基础的分子电性距离矢量MEDV-4、以13种原子类型划分方案和相对键长为基础的全息分子距离矢量MHDV、以13种原子类型与43种原子属性划分方案以及修饰的电拓扑状态指数和拓扑距离为基础的分子电性距离矢量MEDV-13等3种矢量描述子表征分子结构的理论体系。
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atomic energy:原子能
3.原子能(atomic energy)又称原子核能. 原子核结构发生变化时放出的能量. 重核裂变和轻核聚变时都发生核结构变化,称为核反应,并放出核能. 原子能比化学能大几百万倍至1千万倍以上. 原子弹和氢弹即是分别依据核裂变和核聚变的核原理制造的.
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atomic energy:原子能学
journalism 新闻学 | atomic energy 原子能学 | civil engineering 土木工程
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atomic energy:核能
atomic clock 原子钟 | atomic energy 核能 | atomic fuel 核燃料
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atomic energy:原子能量
atomic absorption spectroscopy 原子吸收光谱学 | atomic energy 原子能量 | atomic weight 原子量
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Dept.of Atomic Energy:原子能系
天文系 Dept.of Astronomy | 原子能系 Dept.of Atomic Energy | 解剖系 Dept. of Anatomy
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