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conductivities的中文,翻译,解释,例句

conductivities

conductivities的基本解释
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[变形] conductivity的复数形式

n.

传导率, 传导性, 导电率

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更多 网络例句 与conductivities相关的网络例句 [注:此内容来源于网络,仅供参考]

Different compound adsorbents thermal conductivities were measured at different adsorption capacities.It got these conclusions: At the same adsorption capacity,the compound adsorbents thermal conductivities increase with the quantities of the silicate sol contents increase.The compound adsorbents thermal conductivities increase sharply during the silicate sol contents vary between 0%~(7.5%).The therm...

试验结果表明:在同一吸附量的情况下,导热系数与其添加的粘结剂含量正相关,并且在w=0%~7.5%的添加粘结剂范围内导热系数随着粘结剂含量增加而显著增加;13X沸石原粉、复合吸附剂样品Z1和Z2的导热系数随其吸附量增加呈近似线性增长,当吸附量从0%增加到25%时,各吸附剂导热系数均增加了150%以上;配置出复合吸附剂Z1和Z2在分别添加w=5.0%和7.5%的添加剂下,平均导热系数分别为0.183和0.199 W/,比13X原粉分别提高65.4%和80.1%;将配置的复合吸附剂Z2应用于太阳能冷管,其制冷系数COP约为

The results indicated that BaCe0.8Ho0.2O(subscript 3-α) sinters are of single-phase structures of orthorhombic perovskite. In the temperature range of 600~1000℃, the nonstoichiometric materials (x=1.03 and 0.97) have higher conductivities in wet hydrogen and wet air and better performances of hydrogen-air fuel cells than the stoichiometric one (x=1). In this series, BaCe0.8Ho0.2O(subscript 3-α) has the highest conductivities 2.10×10^(-2Scm^(-1) in wet hydrogen, 3.46×10^(-2) Scm^(-1) in wet air, at 1000℃ and the maximum power output density 122 mWcm^(-2 at 1000℃.

结果表明,在600~1000℃温度范围内、湿润氢气和湿润空气气氛中,该系列材料的电导率随温度和钡离子含量的变化均与以该系列材料为固体电解质的氢-空气燃料电池性能随温度和钡离子含量变化的次序一致,即:非化学计量组成材料BaCe0.8Ho0.2O(下标 3-α)(x=1.03, 0.97)具有较化学计量组成材料BaCe0.8Ho0.2O(下标 3-α)(x=1)高的电导率和氢-空气燃料电池输出功率密度,其中BaCe0.8Ho0.2O(下标 3-α)有最高的电导率(1000℃时、在湿润的氢气气氛中:2.10×10^(-2)Scm^(-1);在湿润的空气气氛中:3.46×l0^(-2)Scm^(-1))和最大的氢-空气燃料电池输出功率密度(1000℃时:122mWcm^(-2))。

A study on physical mechanism responsible for these differences reveals that the principal factor controlling the midnight-morning westward electrojet is ionospheric conductivities, while the principal factor controlling the afternoon eastward electrojet is electric field, instead of conductivities.

电动力学分析表明,在不同地方时段,控制电流的主要因素不同,因而,电流及其磁扰有不同的特点:下午—黄昏东向电集流和晨侧西向电集流组成了DP2电流体系,主要受控于磁层对流电场,反映了&驱动过程&的行为;而子夜—凌晨西向电集流是DP1电流体系的基本部分,主要受控于电导率,反映了&卸载过程&的特点。

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FORMATION CONDUCTIVITIES:地层电导率

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thermal conductivities coefficients:热导率

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Conductivities of Common Pure Liquids:常用纯液体的电导率

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effective electronic conductivities range only from 300 to 500 S/m:电子电导率有效射程从300至500只收盘/米

inappropriate in the gas diffusion and cataly... | effective electronic conductivities range only from 300 to 500 S/m电子电导率有效射程从300至500只收盘/米 | gas diffusion layer GDL is 300 m and the typ...