The utility model relates to an electromechanical integrated detector of digital processing for detecting a dissociation constant of weak electrolyte. 本实用新型涉及一种测定弱电解质解离常数数字化处理的机电一体化测定仪。
The education process record of "verifying acetic acid is the weak electrolyte" “验证醋酸是弱电解质”的教学过程实录
The process simulation features of single tower pressured side draw sewage stripping process have been researched. Phase balance thermodynamic model for volatile weak electrolyte water solution is expounded in detail. 针对单塔加压侧线抽出污水汽提工艺流程,研究了模拟流程特点,介绍了挥发性弱电解质水溶液体系的相平衡热力学模型。
Molar Conductance Mensuration of Infinitely Dilute Weak Electrolyte Solution 弱电解质溶液无限稀时的摩尔电导测定
Based on minimization of Gibbs free energy, Genetic Algorithm ( GA) is proposed in this paper for computing simultaneous chemical and phase equilibrium in volatile weak electrolyte solution. 基于Gibbs自由能最小化原理,提出用遗传算法计算易挥发弱电解质体系化学及相平衡问题。
Equilibrium Calculation of Aqueous Volatile Weak Electrolyte Systems 易挥发弱电解质水溶液的平衡计算
An experimental method for determining the limit molar conductivity of weak electrolyte solution was set up, and it could be applied to the experimental teaching of physical chemistry. 从而设计出一种测定弱电解质溶液无限稀释摩尔电导率的实验方法,应用于物理化学实验教学。
Calculation of simultaneous chemical and phase equilibrium in volatile weak electrolyte solution by using genetic algorithm 易挥发弱电解质体系化学及相平衡计算的遗传算法
Thermodynamics of the dissociation of weak electrolyte in mixed solvents(ⅰ) 混合溶剂中弱电解质解离热力学(Ⅰ)
It is commonly considered that molar conductance of infinitely dilute weak electrolyte solution Λ 0 can not be measured directly, but by calculation with the molar conductance of strong electrolyte solution and law of independent ionic movement. 通常认为,弱电解质溶液无限稀时的摩尔电导∧0不能直接测定,它只能通过相关强电解质溶液无限稀时的摩尔电导及离子独立移动定律计算得出。
Ionization Balance Constant of Weak Electrolyte Determined by Conductance Method 电导法测定弱电解质醋酸的电离平衡常数
Thermodynamics of Ionization of Weak Electrolyte ⅰ. The System of p-Nitrophenol NaCl Water 弱电解质解离热力学研究Ⅰ.对硝基苯酚-NaCl-水体系
The observed oxide scale at the interface between metallic substrate and anode, and, the weak bonding between the electrolyte and the cathode may be responsible for the high contact resistances. These observations also validate the presented equivalent circuit model. 试验观测到的金属支撑体/阳极界面氧化物薄膜以及电解质/阴极界面弱的结合力可能对高的接触电阻负责,此观测结果也验证了本文提出等价电路模型的有效性。