• Conclusion The molar root movement controller could prevent the side effects and avoid the second molar buccally positioned movement in the process of molar propeller moving the two molars distally.

    结论磨牙移动杆具有良好防止磨牙推进器两个磨牙过程中的不利副移动作用避免第二磨牙颊向错位。

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  • The formula of the molar heat capacity of Onnes gas in arbitrary quasi-static process is derived.

    导出了昂尼斯气体任意准静过程中的摩尔公式

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  • Investigated molar ratio, reaction temperature and reaction time on the reaction, the optimal process conditions.

    考察了物料摩尔配比反应温度反应时间反应的影响,得到最佳工艺条件

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  • The curing reaction process of bamboo liquefaction phenolic resin with different molar ratio was studied by non-isothermal differential scanning calorimetry(DSC).

    采用非等温差示热量扫描DSC曲线方法探讨了竹材液化酚醛树脂不同物质的量之固化反应过程

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  • In order to improve stability of catalyst, some process methods, such as increasing CO_2 and CH_4 molar ratio, gas space velocity, and reaction temperature, were adopted.

    提高原料气中CO_2CH_4摩尔气体空速反应温度可以提高催化剂稳定性,减缓催化剂失括速度。

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  • This paper discusses some problems about molar heat capacity of ideal gas in arbitrary quasi-static process.

    理想气体任意准静态过程摩尔热容量中的一些问题进行探讨

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  • Results show that final molar ratio of DFK resin and spread affected boiling peel percentage significantly, filler has no effect on it. More ideal parameters of cold-press process...

    结果表明DF K树脂摩尔胶量对煮沸剥离的影响最显著填料添加量影响甚微,并确定了较为理想冷压胶合工艺参数

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  • Some problems that have put forward in Molar Heal Capacity of Ideal Gas in Arbitrary Quasi-static Process are discussed again.

    对“理想气体任意准静态过程摩尔热容量”一文提出一些问题进行商讨。

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  • Factors affecting the reactions such as temperature, time, molar ratio have been studied and the optimum process was acquired. The mechanisms of each reaction were also discussed.

    对影响反应因素反应温度、反应时间投料配比等进行了研究,确定了最佳工艺条件,并反应机理进行了初步探讨。

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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。

    youdao

  • 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。

    youdao

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