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电荷时空论
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作者 娄太平 《松辽学刊(自然科学版)》 1992年第3期19-23,共5页
本文通过电荷与质量对应物理量相似性的类比,提出了电荷时空的新概念,认为电荷时空与四维时空是全息相似的。在电荷时空假设的基础上建立了相应的理论,该理论可以解释一些有关的时间变慢的不可思议的自然现象和一些有关的特异功能方面... 本文通过电荷与质量对应物理量相似性的类比,提出了电荷时空的新概念,认为电荷时空与四维时空是全息相似的。在电荷时空假设的基础上建立了相应的理论,该理论可以解释一些有关的时间变慢的不可思议的自然现象和一些有关的特异功能方面的现象。 展开更多
关键词 电荷时空 相似性 四维时空
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Ionization behavior of deep level donors in passive film formed on surface of stainless steel in 5% salt solution
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作者 王超 盛敏奇 +2 位作者 钟庆东 周国治 鲁雄刚 《Journal of Central South University》 SCIE EI CAS 2010年第2期295-299,共5页
Deep level donor's ionization behavior of passive film formed on the surface of stainless steel was investigated by Mott-Schottky plots. It is indicated that transformation process of deep level donors' ionization b... Deep level donor's ionization behavior of passive film formed on the surface of stainless steel was investigated by Mott-Schottky plots. It is indicated that transformation process of deep level donors' ionization behavior of passive film on surface of stainless steel can be divided into 4 stages with rising immersion time. At the initial immersion stage (10 min), Fe(II) located in the octahedral sites of the unit cell is not ionized and the deep level does not appear in Mott-Schottky plots. At the second stage (9-38 h), Fe(II) located in the octahedral sites starts to be ionized, which results in deep level donors' generation and density of deep level donors almost is constant with augmenting immersion time but the thickness of space charge layer is more and more thicker with rising immersion time. At the third stage (48 h-12 d), density of deep level donors rises with increasing immersion time and the thickness of passive films space charge layer decreases. At last stage (above 23 d), both the space charge layer's thickness and density of deep level donors are no longer changed with increasing immersion time. In the overall immersion stage, the shallow level donors' density is invariable all the time. The mechanism of deep level donor's ionization can be the generation of metal vacancies, which results in crystal lattice's aberration and the aberration energy urges the ionization of Fe( II ) in octahedral sites. 展开更多
关键词 stainless steel deep level donor Mott-Schottky plots donor density space charge layer aberration energy
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