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Determination of acid ionization constants for weak acids by osmometry and the instrumental analysis self-evaluation feedback approach to student preparation of solutions.

机译:通过渗透压法测定弱酸的酸电离常数,并通过仪器分析自评估反馈方法来准备溶液。

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摘要

One focus of this work was to develop of an alternative method to conductivity for determining the acid ionization constants. Computer-controlled osmometry is one of the emerging analytical tools in industrial research and clinical laboratories. It is slowly finding its way into chemistry laboratories. The instrument's microprocessor control ensures shortened data collection time, repeatability, accuracy, and automatic calibration. The equilibrium constants of acetic acid, chloroacetic acid, bromoacetic acid, cyanoacetic acid, and iodoacetic acid have been measured using osmometry and their values compared with the existing literature values obtained, usually, from conductometric measurements. Ionization constant determined by osmometry for the moderately strong weak acids were in reasonably good agreement with literature values. The results showed that two factors, the ionic strength and the osmotic coefficient, exert opposite effects in solutions of such weak acids.; Another focus of the work was analytical chemistry students solution preparation skills. The prevailing teacher-structured experiments leave little room for students' ingenuity in quantitative volumetric analysis. The purpose of this part of the study was to improve students' skills in making solutions using instrument feedback in a constructivist-learning model. After making some solutions by weighing and dissolving solutes or by serial dilution, students used the spectrophotometer and the osmometer to compare their solutions with standard solutions. Students perceived the instrument feedback as a nonthreatening approach to monitoring the development of their skill levels and liked to clarify their understanding through interacting with an instructor-observer. An assessment of the instrument feedback and the constructivist model indicated that students would assume responsibility for their own learning if given the opportunity.; This study involved 167 students enrolled in Quantitative Chemical Analysis from fall 1998 through spring 2001. Surveys eliciting students' reactions to the instrument feedback approach showed an overwhelmingly positive response. The results of this research demonstrated that self-evaluation with instrumental feedback was a useful tool in helping students apply the knowledge they have acquired in lectures to the practice of chemistry. A demographic survey to determine whether part-time or full-time jobs had a negative impact on their experiment grades showed a small but significant correlation between hours worked and grade earned. However, the study showed that grades students earned on this experiment were predictive of overall semester lab grades.
机译:这项工作的重点是开发一种替代电导率的方法来确定酸电离常数。计算机控制的渗透压测定法是工业研究和临床实验室中新兴的分析工具之一。它正在慢慢地进入化学实验室。仪器的微处理器控制可确保缩短数据收集时间,可重复性,准确性和自动校准。乙酸,氯乙酸,溴乙酸,氰基乙酸和碘乙酸的平衡常数已使用渗透压法进行了测量,并将其值与通常通过电导测量获得的现有文献值进行了比较。通过渗透压法测定的中等强度的弱酸的电离常数与文献值相当吻合。结果表明,在这种弱酸溶液中,离子强度和渗透系数这两个因素产生相反的作用。工作的另一个重点是分析化学学生解决方案的准备技能。现行的教师结构化实验在定量体积分析中几乎没有留给学生创造力的空间。本部分研究的目的是提高学生在建构主义学习模型中使用仪器反馈制定解决方案的技能。通过称量和溶解溶质或通过连续稀释来制备一些溶液后,学生使用分光光度计和渗透压计将其溶液与标准溶液进行比较。学生认为仪器反馈是监测技能水平发展的一种非威胁性方法,他们喜欢通过与讲师观察员互动来澄清他们的理解。对工具反馈和建构主义模型的评估表明,如果有机会,学生将对自己的学习承担责任。这项研究从1998年秋季到2001年春季,共有167名学生参加了定量化学分析。调查得出的学生对仪器反馈方法的反应表明,绝大多数反应是积极的。这项研究的结果表明,带有工具反馈的自我评估是一种有用的工具,可以帮助学生将他们在课堂上学到的知识应用到化学实践中。一项用于确定兼职或全职工作是否对他们的实验成绩产生负面影响的人口统计调查显示,工作时间与所获成绩之间存在很小但很重要的关联。但是,研究表明,学生在该实验中获得的成绩可以预测整个学期实验室的成绩。

著录项

  • 作者

    Kakolesha, Nyanguila.;

  • 作者单位

    Middle Tennessee State University.;

  • 授予单位 Middle Tennessee State University.;
  • 学科 Chemistry Analytical.; Education Sciences.
  • 学位 D.A.
  • 年度 2001
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;自然科学教育与普及;
  • 关键词

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