polymer solutions信息详情

polymer solutions发音

意思翻译

聚合物溶液

高分子溶液

相似词语短语

polymer solution───聚合物溶液;高分子溶液

amorphous polymer───非晶态聚合物

branched polymer───支链型高分子,[高分子]支化聚合物;分支聚合物

flocculating polymer───絮凝聚合物

synthetic polymer───[高分子]合成聚合物;合成高分子

polymer clay───软陶

polymer science───[高分子]高分子科学;高分子材料

coordination polymer───配位高聚物,配位聚合物;[高分子]配位聚合物

bimsm polymer───双金属间化合物

双语使用场景

flow laws of the polymer solutions of different viscoelastic properties in porous reservoir media are obtained.───具有不同黏弹性质的聚合物溶液在油藏多孔介质中的流动规律。

The most common quenchants are water aqueous, polymer solutions and mineral oil.───最常见的淬火介质有水溶液、聚合物溶液和矿物油。

In the field of polymer chemistry an understanding of polymer solutions is important.───聚合物溶液在高分子化学领域的理解是非常重要的。

The photoluminescence spectra of all polymer solutions showed a strong emission in the blue region of the visible spectra.───所有的光致发光光谱显示出强大的聚合物溶液中的蓝色区域发射的可见光谱。

The treatment included two stages of associative polymer solutions and 20 wt% HCl with additives.───处理过程包括两个阶段:复配的聚合物溶液和含添加剂的20%(质量百分比)盐酸。

Measurement, Correlation and Prediction on the Surface Tension of Polymer Solutions───高分子溶液表面张力的测定、关联与预测

Comparison of the Activity Coefficient Models for the Calculation of Diffusion Coefficients of Polymer Solutions───用于聚合物溶液扩散系数计算的活度系数模型比较

Experimental study on enhancing displacement efficiencies using polymer solutions───利用聚合物溶液提高驱油效率的实验研究

Separation of Deoxyribonucleic Acid by Capillary Electrophoresis in Polymer Solutions───毛细管电泳中聚合物溶液筛分脱氧核糖核酸

英语使用场景

In this paper, the basic concept of coal structure has been in- trouduced, and then the theory of polymer solutions about coal-sorbate system has been remarked briefly.

Applications: non-interacting Bose and Fermi gases; mean field theories for real gases, binary mixtures, magnetic systems, polymer solutions; phase and reaction equilibria, critical phenomena.

The most common quenchants are water aqueous, polymer solutions and mineral oil.

Overall this book is a well produced scholarly account of the physics of polymer solutions.

In 1925, Svedberg first achieved this by subjecting polymer solutions to large force fields, generated at high speeds of rotation.