• This is the famous Van der Waals' equation.

    就是著名范德瓦耳斯方程。

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  • The molecules are held together by van der Waals forces.

    分子范德华力约束在一起的。

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  • The size of the carbon atom is based on its van der Waals radius.

    原子大小范德华半径基础。

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  • Gecko seta operate on the surface of the substances completely by van der Waals forces.

    壁虎脚足与物体表面完全范德华力。

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  • The molar heat capacity of ideal gas and van der Waals gas in arbitrary quasi-static process;

    微元过程宏观过程的角度,对理想气体任意准静态过程的吸、放热进行了研究。

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  • After studying the case, Van der Waals believed that it was the presumptions that caused the problem.

    范德瓦耳斯研究这种情况,认为个假定造成偏差的主要原因。

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  • Van der Waals interactions between atoms and molecules are important for many molecular and solid structures.

    原子分子范德·瓦尔相互作用分子结构固体结构起着非常重要的作用。

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  • Vad der Waals force of the aramid fibers, favor the penetration of dyes into the fibers and increase the dye pickup.

    通过采用化学助剂使芳纶分子之间间隙增大,降低芳纶分子间的范德华有利于染料进入纤维内部,提高染料的上染率。

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  • Hydrogen bond and Vander Waals were deduced to be the major driving forces according to the thermodynamic parameters.

    热力学数据确定其作用力主要氢键范德华力。

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  • It is pointed out that the van der Waals gas is also incompatible with the third law of thermodynamics as the classical ideal gas.

    指出范德瓦耳斯气体经典理想气体一样热力学第三定律不相容

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  • By further analyzing each energy item, it could be obtained that van der Waals' interaction energy was the main driving force for complex.

    进一步分析各个能量得,范德华相互作用能为包结主要驱动力

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  • When the mumber of the layer has exceeds 5, the Van der Waals interaction become so faint that the enwrapping process can not be continued.

    包膜厚度超过5后,则范德华力已经微弱已无法继续包膜,包膜过程随即结束。

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  • The relation between the optimal efficiency and power output of the engines for an ideal or van der Waals gas as a working fluid is derived.

    导出热机理想气体范德瓦耳斯气体为工质时最佳效率输出功率的关系。

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  • Pressed against a surface, the molecules of these ridges attract those of the surface via an electrostatic phenomenon called the van der Waals force.

    壁虎趾部触表面时,通过一种称做“范德瓦尔静电现象使壁虎脚隆起部位分子与接触表面的分子产生黏合吸力。

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  • Surfactants with ionizable heads are key to creating a repulsive force that counteracts the van der Waals attraction and thus stabilizes a soap film.

    具有离子化表面活性剂产生排斥力关键这种排斥力可以对抗范德瓦尔斯力,从而使的一个肥皂泡薄膜稳定的存在。

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  • Layered materials can be divided into two classes: the first maintains the layered framework by Van der Waals force; and the second by the coulombs.

    物质分为一类是层结构范德华维持第二类是层结构由库仑力维持。

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  • To create nonsticky adhesive materials, geckos showed the way to van der Waals force, the sum total of attracting or repelling forces between molecules.

    为了创造出非粘性黏合材料壁虎展示范德华方式,分子吸合排斥全部总和。

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  • The conventional inter-particle force model, including van der Waals force, Coulomb force and image force, could not explain these interaction behaviors.

    受力分析表明,包含范德华、静电库仑力的传统颗粒间作用力模型不能解释这种相互作用行为

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  • For conjugation, immunoglobulin is directly adsorbed on the particle surfaces, mediated mainly by Londonvan der Waals force and hydrophobic interaction.

    对于结合免疫球蛋白直接吸附颗粒表面上主要通过London-范德华疏水相互作用

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  • The variation of coordination bond lengths in the complex compounds of yttrium due to the balance between Van der Waals and coordination bond energies are given.

    本文介绍了络合物中由于范德华能与之间平衡产生配位键长的变化

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  • The binding of ligands to proteins occurs mostly through weak non-covalent interactions, namely hydrophobic interaction, van der Waals forces, and hydrogen bonding.

    蛋白配体间作用通常通过共价键力的相互作用而实现的,如疏水作用、范德华力和氢键

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  • Diode laser spectroscopy of van der Waals polyatoms produced in supersonic beams is a source of information on the ground-and excited-state intermolecular potentials.

    超声分子产生多原子范德瓦尔斯分子的光谱可以通过红外半导体激光光谱仪进行探测,从而处于基态和激发态的分子势能进行分析。

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  • The quasi-static adiabatic equations of the Van der Waals gas are derived by using two different method and the unresolved problems in relevant literatures are solved.

    应用两种不同方法导出范氏气体准静态绝热方程解决相关文献未能解决问题

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  • Finally, we study the instability of a thin liquid film resting on a uniformly stretched soft elastomeric substrate driven by van der Waals forces by a linear analysis.

    最后我们对处于有限单向预拉伸弹性衬底液体薄膜由于范德华驱动而产生的失进行了线性稳定性分析

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  • This paper researched the internal energy, Molar heat capacity and critical parameter of Clausius gas, analyzed the difference between Clausius gas and van der Waals gas.

    修斯气体内能、摩尔热容量临界参量作了研究分析了气体瓦尔斯气体的差异

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  • This paper researched the internal energy, Molar heat capacity and critical parameter of Clausius gas, analyzed the difference between Clausius gas and van der Waals gas.

    修斯气体内能、摩尔热容量临界参量作了研究分析了气体瓦尔斯气体的差异

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