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single electrode相关的网络例句

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His firm's technology has reduced the brainwave pickup to the minimum specification imaginable—a single electrode.

他的公司将脑电波的接收器减小到可想象的最小尺寸——单个电极。

The control principle of electrostatic shaping was introduced according to the balance between electrostatic force and resulting force formed by membrane deformation and the complex shaping process of SMEC. Then, taking the trisection circularity electrode for an example, the distribution characteristic of electric potential in the electrostatic field was analyzed, namely, the expression of potential function in the electrostatic field was deduced by Laplacian equation. And then, by combining the difference equation with electric potential expression, the numerical solutions of electrostatic force in single electrode mode and trisection circularity electrode mode were disposed. Finally, the calculated figure was compared with the ideal paraboloid and comparison shows that more accuracy would be achieved by multi-electrode control.

根据静电力与薄膜变形载荷作用力之间的平衡关系和静电拉伸薄膜反射镜成形的复杂过程,介绍了薄膜反射镜静电成形的控制原理;以三等分环状电极为例,分析了静电场中空间电势分布特性,即从拉普拉斯方程推导出静态场势函数的表达式;然后,利用差分与电势方程结合的方法,对单电极电场力和三等分环状电极电场力进行了数值求解;最后,将计算面形与理想抛物面进行了比较,结果显示,单电极情况下得到的薄膜反射镜面形不是理想抛物面,若采用多电极控制可获得更高的控制精度。

The control principle of electrostatic shaping was introduced according to the balance between electrostatic force and resulting force formed by membrane deformation and the complex shaping process of SMEC. Then, taking the trisection circularity electrode for an example, the distribution characteristic of electric potential in the electrostatic field was analyzed, namely, the expression of potential function in the electrostatic field was deduced by Laplacian equation. And then, by combining the difference equation with electric potential expression, the numerical solutions of electrostatic force in single electrode mode and trisection circularity electrode mode were disposed.

根据静电力与薄膜变形载荷作用力之间的平衡关系和静电拉伸薄膜反射镜成形的复杂过程,介绍了薄膜反射镜静电成形的控制原理;以三等分环状电极为例,分析了静电场中空间电势分布特性,即从拉普拉斯方程推导出静态场势函数的表达式;然后,利用差分与电势方程结合的方法,对单电极电场力和三等分环状电极电场力进行了数值求解;最后,将计算面形与理想抛物面进行了比较,结果显示,单电极情况下得到的薄膜反射镜面形不是理想抛物面,若采用多电极控制可获得更高的控制精度。

The present invention is process of separating and assembling metallic single wall carbon nanotube and semiconductive single wall carbon nanotube synchronously. The process includes the following steps: photoetching silica substrate to prepare Au electrode, cutting intervals in the electrode with focused ion beam, soaking the electrode in DMF solution of single wall carbon nanotube, and applying electric field of 2-8 V magnitude and 1-10 Hz frequency.

本发明的目的在于提供一种金属性和半导体性单壁碳纳米管的同步分离与组装方法,该金属性和半导体性单壁碳纳米管的同步分离与组装方法包括如下步骤:通过常规光刻在含二氧化硅的衬底上制备金电极的步骤;利用聚焦离子束在电极上刻出若干个间隙的步骤;将上述电极浸入到单壁碳纳米管的DMF溶液的步骤;施加大小为2~8V、频率为1~10Hz的电场的步骤。

The invention has the advantages that by means of single film growth craft, supporting structures of a pier, a bridge leg, and a deck are accomplished, thus greatly lowering the difficulty and complicity of the craft; the pier, the bridge leg, and the deck are formed into a trinity, thus assuring the mechanical support of the whole micro bridge to be firmer and to have higher stability; meanwhile, the pier manufactured by means of the single film growth craft has a hollow shape, thus ensuring that the manufacturing process of the electrical channel of the micro-bridge structure is more simple, without the need of tapping in the pier; only simple photoetching craft is needed to guarantee the connection between the electrode at the upper end and the electrode at the lower end.

本发明利用一次薄膜生长工艺完成桥墩、桥腿和桥面的支撑结构,大大降低了工艺难度和复杂性,且桥墩、桥腿和桥面三位一体,使得整个微桥的机械支撑更为牢固,稳定性更高;同时,本发明利用一次薄膜生长工艺制作出的桥墩成空心状,使得微桥结构的电学通道制作过程变得更为简单,无需另外在桥墩中开孔,只需简单的光刻工艺即可保证上端电极和下端电极相连。

The second system involves a single electrode implanted in a subcortical area at which electrical stimulation has behavioral reward properties.

第二个系统涉及到一个单一的电极植入在一个皮层区,其中电刺激的行为已悬赏属性。

We now know that this device operated by emitting electrons from the single electrode through a combination of field emission and thermionic emission.

现在大家都知道这个装置运作是电子从单一的电极通过结合场发射和热电子发射。

Metal oxide materials are employed as electrodes for Faradaic capacitors, a typical representative of metal oxides is hydrated RuO2, which can yield a capacitance as high as 768 F·g-1 in H2SO4 electrolyte for a single electrode. However, it has a relatively high cost and this will prevent broader commercial applications; Besides, if RuO2 contacts with H2SO4 electrolyte for a long time, it may dissolve at a certain extent; at the same time, H2SO4 electrolyte can erode current collector, which cause entironment pollution.

赝电容器主要是以金属氧化物为电极材料,典型代表为RuO2,无定型RuO2在H2SO4溶液中单电极的比电容高768F·g-1 ;但由于Ru是贵金属、价格昂贵、难于实现商业化,并且RuO2长时间接触硫酸电解液,会出现一定程度的溶解,同时硫酸很容易腐蚀集流体,造成环境污染。

We studied the effects of substance P on voltage-dependent ion channels of lateral geniculate neurons in rat's in vitro brain slice with a single-electrode-voltage-clamp technique.

在离体的大鼠外膝体脑片上用单电极电压籍位的方法研究了P一物质对外膝体神经元电压依赖性离子通道的作用。

For single-electrode, its interface region is slowly expanding out, the residual gas washer will be evicted Bubble formation is not easy, the interface quality is very good, but the bonding speed has been rather slow.

对於单点式电极,其接合区域是慢慢扩张出去,因此接合面的残存气体也会被驱赶出去,不易形成气泡,接合品质相当好,但接合速度相当缓慢。

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