实际溶液
- 网络real solution
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并根据高温热力学数据对采用不同pH调节剂时,高温实际溶液的pH值进行了计算和分析。
The practical solution pH values at high temperature were calculated and analyzed .
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然后研究实际溶液,非理想溶液,也就可以理解它的大部分行为。
And then look at real solutions , non-ideal solutions , and understand a lot of their behavior as well .
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可用于雨水和饮料等实际样品溶液的pH的测定。
It has been used to determine the pH of the real samples .
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最后通过前面研究的原型与模型之间的相似关系,利用模型的结果通过编制的小软件计算出实际聚合物溶液在井底的粘度。
Lastly , a small computing software were programed to receiving the actual viscosity of polymer solution at the bottom by the similarity between the prototype and model .
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计算并讨论了汞在溶液体系中的存在形态,获得了稳定的低浓度自由汞离子实际浓度以及溶液中自由汞离子浓度和总汞浓度之间的关系。
The existing form of Hg in the solution system is discussed and the free Hg2 + with stable and low concentration and the relationship between the free Hg2 + and the total Hg in the solution .
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通过实际生产,控制溶液浓度在87.5%~91.5%较适宜,此时具有理想的堆密度。
Through actual production it is found that it is desirable to control the concentration of the solution at 87.5 % ~ 91.5 % , and then the bulk density becomes ideal .