无规运动
- 与 无规运动 相关的网络例句 [注:此内容来源于网络,仅供参考]
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As the temperature rises, strong paramagnetism decreases because of the greater random motion of the atoms.
强顺磁性随温度的升高而减弱,这是因为原子磁体的较强的无规运动产生反排列作用。
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As the temperature rises, strong paramagnetism decreases because of the greater random motion of the atom s.
强顺磁性随温度的升高而减弱,这是因为原子磁体的较强的无规运动产生反排列作用。
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Each collision, particles are changing the state of motion, thus exacerbating the random nature of the movement.
每次碰撞,粒子都改变运动状态,从而加剧了运动的无规性。
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Low- protons can be efficiently heated by the enhanced Alfvén waves. And this efficient heating process is attributed to nonresonant wave-particle scattering that leads to randomize protons motion.
本文的研究重点是日冕加热过程的准线性动理学,即低的质子能被阿尔芬波有效加热的问题,这一有效加热主要是由于波粒非共振散射使粒子运动无规化而实现的。
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For the first time, the dynamics changing process of KGM chain in vacuum is proposed, We obtained the following results: polymerization degree influences the stability and shapes of the chain, the chain stability drops with the increasing of polymerization degree, for the high polymerization degree KGM, KGM chain takes on irregular curl state; acetyl group is not the main factor influencing chain conformation , during the course of dynamics movement KGM chain takes on irregular curl state before and after acetyl group was doffed, Extending and curling states change periodicity and has good flexibility.
首次提出了KGM链的动态模型,得到了以下结果:聚合度影响其链形态和稳定性,对于高聚合度的魔芋葡甘聚糖来说,其链呈现无规卷曲状态且稳定性下降,在整个动态运动过程中KGM链脱乙酰基前后都呈现无规卷曲状态,而且其伸展和卷曲的变化是周期性的,表现出了很好的柔性,说明乙酰基不是影响其链形态的主要因素,二面角能和静电作用是真空中影响单链构象的主要的键合作用力和非键合作用力,但是乙酰基对氢键作用的影响(来源:ABC6c论文网www.abclunwen.com)较大。
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Within the hot gas chamber, molecules are moving randomly in all directions.
在灼热的气体燃烧室内,分子在各个方向上作无规运动。
- 推荐网络例句
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Finally, according to market conditions and market products this article paper analyzes the trends in the development of camera technology, and designs a color night vision camera.
最后根据市场情况和市面上产品的情况分析了摄像机技术的发展趋势,并设计了一款彩色夜视摄像机。
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Only person height weeds and the fierce looks stone idles were there.
只有半人深的荒草和龇牙咧嘴的神像。
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This dramatic range, steeper than the Himalayas, is the upturned rim of the eastern edge of Tibet, a plateau that has risen to 5 km in response to the slow but un stoppable collision of India with Asia that began about 55 million years ago and which continues unabated today.
这一引人注目的地域范围,比喜马拉雅山更加陡峭,是处于西藏东部边缘的朝上翻的边框地带。响应启始于约5500万年前的、缓慢的但却不可阻挡的印度与亚洲地壳板块碰撞,高原已上升至五千米,这种碰撞持续至今,毫无衰退。