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English translation for "normal temperature and pressure"

标准温度和压力标准温度及气压正常温度和压力
常温常压
正常体温和血压
正常温度与压力
Example Sentences:
1.N . t . p . normal temperature and pressure
正常温度与压力
2.Alkaline pre - oxidation for refractory gold arsenosulfide concentrates under normal temperature and pressure
难浸砷金精矿的碱性常温常压预氧化
3.Cy alkaline pretreatment for refractory gold floatation concentrate of anidation tailings under normal temperature and pressure
难浸氰化尾渣浮选精矿的常温常压碱浸预处理
4.Abstract : the article introduces the progress in treatment of organic wastewater by photocatalytic degradation process and by catalytic oxidation process under the conditions of normal temperature and pressure or high temperature and pressure
文摘:介绍了有机废水的光催化降解处理、常温常压催化氧化处理和高温高压催化氧化处理的研究进展情况。
5.( 1 ) the got by experiment may contain thermal contributing by electrons and this part is not can be ignored . ( 2 ) got by thermal dynamic experimental data under normal temperature and pressure can be a standard for various theoretical models , but its precision should be analysis carefully before to use . ( 3 ) the method of using the migault ' s formular associate tuning up parameter to express which often be used is not very reasonable
本文第3章就gr neisen物态方程研究了三方面问题:第一方面,在分析了几种不同定义的gr neisen系数的区别与联系的基础上指出, ( 1 )在冲击压缩区,直接依据实验数据获得的往往包含不可忽略的电子热贡献; ( 2 )常态热力学可作为检验gr neisen系数理论模型的一个标准,但应注意该实验测量值的精度(包括由于实际材料中存在的“非三项式物态方程因素”的影响) ,而所总结的在周期表上所具有较明显的规律性,可作为对该值精确程度判断的参考; ( 3 )指出一种以调节参数的migault公式描述的常用方法的基础与实际情况并不相符。
6.In this paper , the preparing technological parameters , formation mechanism and structures of ( lithium ) vanadium oxides ( nanocrystalline vo2 , amorphous v2o5 , layered li1 + xv3o8 and inverse spinel linivo4 ) are systematically studied and discussed , and some properties of the products are measured as cathode materials for lithium ion batteries . the main results are as follows : ( 1 ) nanocrystalline vo2 has been successfully synthesized by a solution chemical reaction method in normal temperature and pressure . the procedure involves v2o5 reacts with koh to form k3vo3 in water and then k3vo3 is reduced with kbh4 around ph = 4 forming vo2 precipitation in aqueous
本文从实验与理论分析相结合的角度对(锂)钒氧化物(纳米vo _ 2 、非晶态v _ 2o _ 5 、层状li _ ( 1 + x ) v _ 3o _ 8及反尖晶石型linivo _ 4 )制备过程中工艺参数、结构和形成机理等方面进行了系统深入的研究,对(锂)钒氧化物电性能进行了初步测试,取得的主要结果如下: ( 1 )成功的在常温常压下通过溶液化学反应直接制得具有纳米结构的vo _ 2粉。
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