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An analytical tool to determine undergraduate students' use of volume and pressure when describing expansion work and technical work

机译:一种分析工具,用于在描述扩展工作和技术工作时确定大学生对体积和压力的使用

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In undergraduate chemical thermodynamics teachers often include equations and view manipulations of variables as understanding. Undergraduate students are often not able to describe the meaning of these equations. In chemistry, enthalpy and its change are introduced to describe some features of chemical reactions. In the process of measuring heat at constant pressure, work is often disregarded. Therefore, we investigated how undergraduate students describe expansion work and technical work in relation to enthalpy and its change. Three empirical studies (ntot = 64, ntot = 22, ntot = 10) with undergraduate chemistry students taking their first or fifth chemistry course at two Swedish universities were conducted. Questions on enthalpy and its change, internal energy and its change, heat and work were administered in questionnaires, exam questions, hand-ins and interviews. An analytical matrix was developed and qualitative categories with respect to pressure and volume were formed. The results indicate that work in general and even more so expansion work and technical work are difficult processes to describe and relate to the definition and formula of enthalpy change. Work is mainly described without reference to pressure and volume. The properties of volume are more likely to be described correctly than the properties of pressure. The definition of enthalpy change at constant pressure is generalised to constant volume/varying pressure cases. This study gives further insight into the way in which students use pressure and volume as they describe expansion work and technical work as well as the contextual correctness of these descriptions. The matrix and categories can be used by researchers, teachers and students.
机译:在本科生化学热力学中,教师经常包括方程式,并将变量的操纵视为理解。本科生通常无法描述这些方程式的含义。在化学中,引入焓及其变化来描述化学反应的某些特征。在恒定压力下测量热量的过程中,经常会忽略工作。因此,我们调查了大学生如何描述与焓及其变化有关的扩展工作和技术工作。进行了三个实证研究(ntot = 64,ntot = 22,ntot = 10),其中有化学本科生在两所瑞典大学上了第一或第五门化学课程。有关焓及其变化,内部能量及其变化,热量和工作的问题通过问卷,考试题,上交和访谈进行管理。建立了分析矩阵,并形成了关于压力和体积的定性类别。结果表明,一般的工作,甚至更重要的是扩展工作和技术工作,都是难以描述且与焓变的定义和公式相关的过程。主要描述工作而不参考压力和体积。体积的特性比压力的特性更容易正确描述。恒压下焓变的定义被推广到恒压/恒压情况下。这项研究进一步了解了学生在描述扩展工作和技术工作时使用压力和数量的方式,以及这些描述的上下文正确性。矩阵和类别可供研究人员,教师和学生使用。

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