Ion state, water soluble state in different tectonic areas such as content a little change.
离子态、水溶态等在不同构造区域内含量变化不大。
The experiment shows that the parent molecule first occurs -cleavage and absorbs (2 + 2) photons to get to ion state.
实验结果显示,母体分子首先发生断裂并且吸收(2 + 2)个光子到达离子态。
In this model, ion conduction involves transitions of three states, with one three-ion state and two two-ion states in the selectivity filter respectively.
在这一模型中,离子通道的选择性过滤器主要处于三个态,一个三离子态和两个两离子态,转导过程用这三个态之间的相互跃迁来描述。
The reaction mechanism of 4-methyl-5-ethenyl-heptanitril e oxide cycloaddition is studied with the molecular orbital AM1 method and transit ion state theory.
用过渡状态理论和量子化学AM1方法,对4 甲基5 烯庚腈氧化物环加成反应机理进行了研究。
Information can be "written" to one ion by zapping it with a laser to change its state.
信息可以通过使用激光照射一个离子来改变他的状态而写入。
Planar Energy, a spin-off of the National Renewable Energy Laboratories (NREL), is working on scaling up solid-state lithium-ion batteries.
该公司名为“平面能源”,是国家可再生能源实验室(NREL)的新创公司。该公司正致力于改进固态锂离子电池。
For predicting the state of charge (SOC) of lithium-ion rechargeable battery accurately, a method based on electrochemical impedance spectroscopy was presented.
为了准确预测使用过程中的电池荷电状态,提出了电化学阻抗谱预测法。
Nodular defects, which are in critical state of damage, are cross-sectioned by focusing on the ion beam and by imaging using a field emission scanning electron microscope.
采用聚焦离子束和场发射扫描电镜对处于临界破坏状态的节瘤缺陷做剖面分析和观察。
The enhancement of charge state ion beam intensities in ECR2 ion source with metal tube is introduced in the paper.
叙述了用金属筒来增强ECR2离子源的高电荷态离子束流强度。
This technique can provide important information for identifying natural and synthetic emeralds, combined with the existing state of water and the absorption peak of chloric ion in emeralds.
根据祖母绿中是否含水、水的赋存状态以及氯的吸收峰,可作为准确鉴别天然祖母绿和合成祖母绿的重要依据。
One of main objects of ultra-relativistic heavy ion collisions experiments at RHIC and LHC is to discover this kind of new state of matter-quark gluon plasma.
RHIC和LHC上的相对论性重离子实验的一个主要目标就是寻找这种新的物质形态—夸克胶子等离子体。
From the two-state events of ion-channel we have approached to a way of automatic analysis technique.
本文探讨了基本上属于两态的细胞膜离子通道事件的自动分析方法。
The decrement of the steady state flux was attached to the change of thermal activity of on and the existence of ion competition.
原因是由氯化钠引起的离子强度的增大导致了药物活度的下降,进而致使稳态流量减小。
Carbenium ion is an active intermediate state in organic reactions, which has been investigated for over 100 years.
正碳离子是有机化学反应过程中一种活泼的反应中间体,对于它的研究已经有100多年的历史。
Choosing the appropriate modulating amplitude, we can produce the best squeezed vibrational state of the ion and find that its generation is companied by cancellation of the emitted fluorescence.
适当选择调制振幅,可把离子制备在最佳压缩振动态上,并且它们的产生伴随着自发辐射的相消。
Owing to the liquid state organic electrolyte is fixed in micro polymer network structure, polymer lithium ion cell in apparent dry state is prepared.
由于液态有机电解液固定于聚合物网络的微结构中,从而制得表观干态的聚合物锂离子电池。
The lithium ion battery is a new type of battery with superior performance. Studying of the solid-state electrolyte is the most advanced contents in the lithium ion secondary battery.
锂离子二次电池是性能最优越的电池之一,研究全固态电解质是锂离子二次电池研究中最前沿的课题。
The energy transfer was observed between the charge transfer state of O-W and the rare earth ion Er3+ , and a model for explaining the energy transfer was given.
同时观测到O-W的电荷迁移态与稀土离子之间的能量传递现象,并给出了能量传递的模型。
Also, we tested the varied electrochemical performance and the security of 053048 type liquid state soft-package lithium ion batteries.
考察了053048型成品液态软包装锂离子电池的各项电化学性能及安全性能。
Progress in solid-state NMR spectrum study of positive electrode materials for lithium ion batteries;
正极材料的研究是锂离子二次电池的核心技术之一。
The micro-crystal diamonds come from fast second nucleating on deposit ion process and assume disordered state.
微晶金刚石是沉积过程中快速二次形核而形成,呈无序分布;
The 053048 type liquid state soft-package lithium-ion batteries were successfully prepared by applying soft-package technology.
应用软包装技术成功开发出053048型液态软包装锂离子蓄电池。
Meanwhile PEO and PMSMA electrolyte were investigated, then studied whether this two kinds of materials could be used in printing solid state lithium ion battery.
同时研究了PEO及梳状聚氧硅烷聚合物电解质用于打印全固态电池中的可行性;
With the increasing of the viscosity of electrolyte, the diffusion coefficient of I_3 ion decreased rapidly to be a new controlling step in the quasi-solid state dye-sensitized solar cell.
发现随着电解质体系粘度的增加,I_3~-离子扩散系数急剧下降,进而在准固念染料敏化太阳能电池的光电转换过程中形成新的速控步骤I_3~-离子的扩散过程。
With the increasing of the viscosity of electrolyte, the diffusion coefficient of I_3 ion decreased rapidly to be a new controlling step in the quasi-solid state dye-sensitized solar cell.
发现随着电解质体系粘度的增加,I_3~-离子扩散系数急剧下降,进而在准固念染料敏化太阳能电池的光电转换过程中形成新的速控步骤I_3~-离子的扩散过程。
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