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1)  CPA matrix method
CPA矩阵法
1.
Determination of two-component content in compound tablets of chlorpromazine with CPA matrix method;
CPA矩阵法测定复方氯丙嗪中二组分含量
2.
It is based on the different catalytic behavior or iron(Ⅲ) and manganese(Ⅱ) to decoloration reaction between Potassium periodate and rhodamine-B in different reaction conditions and chemometric method of CPA matrix method is employed.
基于铁(Ⅲ)和锰(Ⅱ)对高碘酸钾氧化罗丹明B褪色的催化作用及在不同反应条件下两者催化作用的差异,以反应条件为化学计量学中的量测通道,应用CPA矩阵法对铁(Ⅲ)和锰(Ⅱ)同时测定进行了研究,建立了流动注射催化光度法同时测定铁和锰的新方法。
2)  CPA-matrix
CPA矩阵
1.
Determination of Compound Rifampicin Microemulsion Injection by CPA-matrix UV-spectrophotometry
CPA矩阵紫外分光光度法测定复方利福平微乳注射剂中三组分的含量
3)  CPA-Matrix Spectrophotometry
CPA矩阵分光光度法
1.
Simultaneous Determination of Two Components in Compound Sulfamethoxazole Tablets by CPA-Matrix Spectrophotometry;
CPA矩阵分光光度法同时测定复方磺胺甲噁唑片两组分含量
4)  CPA method
CPA法
1.
The principle of CPA method for multiple components determination is introduced and applied to simultaneously determining Zn 2+ ,Cd 2+ and Pb 2+ in mixed solution with dithizone spectrophotometric mehtod.
介绍 CPA法测定多种组分的原理 ,并应用该原理 ,对用双硫腙分光光度法同时测定混合样品中 Zn2 +、Cd2 +和Pb2 +的质量浓度进行了研究 ,取得了较为有意义的结
5)  T-matrix method
T矩阵法
1.
Computation of the acoustic scattering field from submerged rigid objects with arbitrary shapes by T-matrix method;
基于T矩阵法的水下任意刚硬体声散射场计算
2.
Using the T-matrix method,the relative intensity distributions of the scattered light were analyzed for four spheroids with different a/b in a fixed orientation,as well as in a random orientation.
针对火灾烟颗粒的链状结构特征,采用回转椭球模型,通过“T矩阵法”,分析其非球形性对光散射模式的影响。
3.
A computational model of T-matrix method to calculate the acoustic scattering from the subm-erged rigid objects with arbitrary shapes is established.
针对水下任意形状刚硬体,建立了其声散射T矩阵法计算模型。
6)  P-matrix
P矩阵法
补充资料:4-CPA
分子式:C8H7ClO3
分子量:186.59
CAS号:122-88-3

性质:白色结晶。熔点157-159℃。溶于乙醇、丙酮和苯,微溶于水。有清香味。

制备方法:由苯酚与氯乙酸缩合后,经氯化而得。1.缩合将熔化的苯酚与15%氢氧化钠溶液混合,又将氯乙酸水溶液加碳酸钠中和,两者投入反应锅混合,加热回流4h。反应毕,加盐酸调至pH为2-3,搅拌冷却,结晶,过滤,冰水洗涤,干燥,得苯氧乙酸。2.氯化将苯氧乙酸和冰醋酸混合搅拌溶解,加入碘片,在26-34℃通氯。通氯结束后放置过夜,次日在冷水中析出结晶,过滤,用水洗至中性,干燥得成品。

用途:植物生长激素、用作生长调节剂、落果防止剂、除草剂,可用于蕃茄、蔬菜、桃树等,也用作医药中间体。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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