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

    木材—吸附水系一个多重弛豫时间介电体系。

    youdao

  • Complex plane analysis for the dielectric relaxation of 1, 2-polybutadienes was performed.

    本文对1,2 -聚丁二烯介电松弛进行了平面分析

    youdao

  • The phenomena and results were discussed and analyzed by Debye's model and dielectric relaxation theory.

    这些现象结果通过电介质的德拜模型介质松弛理论进行分析讨论

    youdao

  • The conduction contributes to the high temperature dielectric relaxation which has the similar activation energy of that of conduction.

    高温区介电弛豫激活电导激活十分接近,因此电导对高温介电弛豫的产生起到了关键作用。

    youdao

  • The results indicate that high frequency dielectric relaxation of the ferroelectric ceramics is caused by piezoelectric resonance of domains.

    实验研究表明陶瓷高频介电弛豫主要材料内部的畴壁共振引起的。

    youdao

  • The investigation on the multiple transitions and relaxations of 1,2-polybutadiene was carried out by dynamic mechanical, dielectric relaxation, and solid state NMR methods.

    工作动态力学介电松弛固态核磁共振等方法研究1,2-聚丁二烯多重转变松弛

    youdao

  • The distribution mechanism of dielectric relaxation time in such system deponds mainly on the variation of the energy of the hydrogen bonds between water molecules and wood.

    木材—吸附水系介电弛豫时间分布机构是:因分子同木材之间形成的氢键结合能呈某种分布所致。

    youdao

  • The experiments prove the prediction of phenomenological theory that the free and random relaxation will appear in a dielectric sample under different conditions.

    实验证明同一样品介电弛豫不同条件可分别出现随机弛豫自由弛豫两种规律

    youdao

  • Mechanical response induced by the relaxation of nano-domains has been observed as well, which is consistent with dielectric measurements.

    同时我们还测量到了铁电纳米微畴反转引起力学响应与其介电响应结果一致的。

    youdao

  • The results show that the dielectric loss is mainly attributed to the dipole relaxation of the larger polarized molecules which is in the form of the hydrogen-bonded association. The more…

    结果表明,以氢键联结缔合分子偶极驰豫介电损耗主要原因

    youdao

  • The results show that the dielectric loss is mainly attributed to the dipole relaxation of the larger polarized molecules which is in the form of the hydrogen-bonded association. The more…

    结果表明,以氢键联结缔合分子偶极驰豫介电损耗主要原因

    youdao

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定