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Bohr’s Spectrum of Quantum States in the Atomic Hydrogen Deduced from the Uncertainty Principle for Energy and Time
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作者 Stanislaw Olszewski 《Journal of Modern Physics》 2014年第14期1264-1271,共8页
A modified uncertainty principle coupling the intervals of energy and time can lead to the shortest distance attained in course of the excitation process, as well as the shortest possible time interval for that proces... A modified uncertainty principle coupling the intervals of energy and time can lead to the shortest distance attained in course of the excitation process, as well as the shortest possible time interval for that process. These lower bounds are much similar to the interval limits deduced on both the experimental and theoretical footing in the era when the Heisenberg uncertainty principle has been developed. In effect of the bounds existence, a maximal nuclear charge Ze acceptable for the Bohr atomic ion could be calculated. In the next step the velocity of electron transitions between the Bohr orbits is found to be close to the speed of light. This result provides us with the energy spectrum of transitions similar to that obtained in the Bohr’s model. A momentary force acting on the electrons in course of their transitions is estimated to be by many orders larger than a steady electrostatic force existent between the atomic electron and the nucleus. 展开更多
关键词 Uncertainty Principle for Energy and Time Bohr’s spectrum of Quantum levels in the hydrogen Atom
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用PASC0光谱分光计测量氢光谱——一个设计性实验的论文
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作者 闫柳辰 赵改清 《大学物理实验》 2009年第4期48-50,共3页
用PASCO光栅光谱仪及配套的光强传感器,计算机实测了氢光谱的波长和相对强度,指出在用光敏器件标定光谱的强度时,要考虑光敏器件的频谱响应问题。
关键词 氢光谱 光传感器 频谱响应 设计性实验
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