• 它们压电介电性能合适的四方性结构特性有关。

    Their piezoelectric and dielectric properties relate to the structure characters such as suitable tetragonality.

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  • 介电常量的二三次方根密度成线性关系。

    The square root and the cubic root of the dielectric constants are linearly related to the volume ratios.

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  • 部分化合物具有介电各向异性

    Some of the target compounds show negative dielectric anisotropy.

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  • 优化低温烧结微波介质陶瓷介电性能

    Optimize the dielectric properties of low temperature sintered microwave dielectric ceramics.

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  • 随着粒径变化介电性质也随之变化

    With the change of the grain size, the dielectric properties changed.

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  • 本文着重介绍高精度介电测井系统方案

    This paper introduces a scheme of high accuracy dielectric constant well logging system.

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  • 就意味着介电系数大于空气介电系数。

    This means the permittivity of oil is greater that of air.

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  • 本文介绍了介电层厚度控制意义控制方法

    The paper introduces meaning of control and method of control about the medium thickness.

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  • 木材—吸附水系一个多重弛豫时间介电体系

    The wood-absorptive water is a multi dielectric relaxation time system.

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  • 结果表明:极化介电常数介电损耗低于极化前。

    It was found that the dielectric constant and dielectric loss of unpoled samples is higher that those of poled samples.

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  • 证明了电能密度表达式介电量对称性必然推论

    The expression of energy density is proved as the deduction of this symmetry.

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  • 4 - 2说明使用静电计确定介电吸收基本电路

    Figure 4-2 illustrates the basic circuit that USES an electrometer to determine dielectric absorption.

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  • 光子穿透介电质会使极化而且造成部份抵消

    Photons penetrating into a dielectric polarize it and, in turn, are partially canceled out.

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  • 这项工作介电单片电容器材料应用打下实验基础

    This work lay an experimental foundation for the application of monolithic highly dielectric capacitor materials.

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  • 介电陶瓷制造介电陶瓷方法以及单片陶瓷电容器

    Dielectric ceramic, method for manufacturing the dielectric ceramic, and monolithic ceramic capacitor.

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  • 针对介电晶格结构特殊极化问题自行研制极化设备

    Aiming at the polarization problem of dielectric superlattice field, we developed poling equipment by ourselves.

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  • CCL介质性能主要是指介电常数介电损耗介质厚度

    Dielectric property of CCL embody dielectric constant, dielectric lose and dielectric thickness.

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  • 氟代柔韧线缆优良的介电性质使非常适合数据音频应用

    FluoroFlex's excellent dielectric properties also make it ideal for data and audio applications.

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  • 复合材料介电常数介电损耗随pani含量增加而上升

    The dielectric constant and dielectric loss of the composites rise with increasing the content of PANI.

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  • 各种电压测量应用电容器介电吸收电化学测量等。

    Applications for Measuring Voltage from High Resistance Sources: Capacitor dielectric absorption and electrochemical measurements.

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  • 研究的结果表明由于还原气氛中烧结材料介电损耗上升

    Also the result shows that, as sintered in reducing atmosphere, the dielectric loss of the material increase.

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  • 采用不同沉积氧气,分析其对薄膜微观结构介电性能影响

    Study indicated that oxygen deposition pressure exerts a strong impact on the microstructure and the dielectric properties of the films.

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  • 介电安装在加工上。反应气体注入装置将反应气体注入加工室内

    A reaction gas injection device injects a reaction gas into an interior of the processing chamber.

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  • 研究STO薄膜金属绝缘体半导体(MIS)结构介电界面特性

    The dielectric and interface characteristics of STO with a metal insulator semiconductor (MIS) structure were investigated.

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  • 本论文中,吾人探讨种高介电系数介电金属闸极研究与应用

    In this dissertation, we will investigate the application of several high-k dielectric and metal gate process technologies.

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  • 介绍一个实用晶体管开关电路,用能够较准确地测定电容介电常量

    A practicable transistor on-off circuit is presented which can measure capacitance and dielectric constant accurately.

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  • 随着氧化含量增加晶粒尺寸均匀长大介电常数介电损耗增加

    With the increasing of dopant content, grains grew up uniformly, and dielectric constant and loss increased.

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  • 对于三维晶体,其介电参数与晶体结构以及外电场频率密切相关张量。

    Meanwile , the corresponding relationship of the crystal structure and model parameters is solved.

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  • 正如最初电容取决于水电介电性能形成导电分子大小分离

    As noted initially, the capacitance depends on the dielectric properties of the water and the size and separation of the conductive elements forming the water capacitor.

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  • 正如最初电容取决于水电介电性能形成导电分子大小分离

    As noted initially, the capacitance depends on the dielectric properties of the water and the size and separation of the conductive elements forming the water capacitor.

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