• These chemical events rely on the electron carrier NADPH and ATP generated by the first set of reactions.

    这些化学反应依赖电子载体NADPH第一阶段产生AT P。

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  • The present invention relates to a technique for measuring a glucose level by utilizing a reaction system containing an enzyme and an electron carrier.

    发明涉及利用包含电子传递物质的反应体系测定葡萄糖浓度的技术

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  • CoQ10 works as an electron carrier in themitochondria, the powerhouse of the cells, to produce energy and is also apowerful antioxidant. It is the only antioxidant that humans synthesise in thebody.

    辅酶Q10线粒体细胞能量产地)中作为电子携带者生产能量而且抗氧化剂

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  • We only need consider electron as carrier of electric charge in former electron transporting process, but in GMR effect, electron not only is the carrier of electric charge, but also has spin.

    以往电子输运过程中人们需要考虑电子作为电荷载体巨磁电阻效应中,电子不仅电荷的载体,而且具有自旋。

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  • The rules of electron subband energies and corresponding wave functions depending upon free carrier concentration have been obtained.

    得到电子亚带能量函数自由载流子浓度变化规律

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  • In conventional microelectronics, however, the spin of electron, which was simply seen as a carrier of charges, barely caught attentions.

    但是传统微电子学之中电子只是当作电荷载体旋特性一直未被引起重视。

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  • The invention relates to a taxi roof numeral multi-purpose intelligence integration electron display screen system, belongs to the advertisement issue carrier domain.

    出租车车顶数字多功能智能一体化电子显示屏系统广告发布载体领域

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  • The electron information equipment and defence abilities of the aircraft carrier fleet are discussed, and the weakness of electron information defence is mainly analyzed.

    讨论航母编队电子信息装备现状防御能力重点分析了其电子信息防御能力薄弱环节

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  • Carbon nanotubes not only have the ability to promote electron transfer reaction when used as electrode modification material, but also is promising as catalyst carrier due to their high surface area.

    纳米管修饰电极不仅可以提高电子传递速度,而且由于表面积能够作为一种优良的催化剂载体

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  • It is presented that one of the most important energy relaxation processes is the electron-phonon interaction, which determines the energy transfer from electronic carrier system to the lattice.

    指出能量转换特性重要弛豫过程电子-声子相互作用决定电子载流子系统晶格能量转换。

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  • The results show that the quantum path through which the electron gains kinetic energy deviates the dominant quantum path. In addition, the deviation is effected of the carrier-envelope phase.

    结果显示,超短脉冲谐波辐射过程电子获得动能量子路径偏离主要量子路径,而且偏离效应受载波包络相位影响。

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  • The results show that the quantum path through which the electron gains kinetic energy deviates the dominant quantum path. In addition, the deviation is effected of the carrier-envelope phase.

    结果显示,超短脉冲谐波辐射过程电子获得动能量子路径偏离主要量子路径,而且偏离效应受载波包络相位影响。

    youdao

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