Affiliation:
1. Avondale University, Cooranbong, NSW 2265, Australia
Abstract
This paper reports on how a group of students think when trying to solve a set of thermodynamic revision exercises in the context of collaborative small group conversation at the undergraduate level. The revision exercises involved exploring the relationship between enthalpy and temperature, entropy and temperature, and entropy of a gas under compression. Four students enrolled in a science or science teaching degree comprised the group. Two workshops, conducted about one month apart, were convened and student and instructor diaries were used to explore the thinking profiles illuminated in the diaries. The thinking profiles fitted into the categories: routine-level, object-level, process-level and meta-level. A surprisingly large amount of meta-level thinking was exhibited by the students. It was found advantageous to add adjectival qualifiers to object-level and process-level profiles to more fully interpret what the students had to say. The qualifiers were: incoherent, intuitive, algorithmic, and integrative. The workshops proved beneficial not only to the students but also to the instructor. The use of equations like mixes the result of a definite integral symbolic format (left-hand side) with the indefinite integral symbolic format (right-hand side), and leads to students finding it difficult to distinguish between H, dH, and ΔH for enthalpy and S, dS, and ΔS for entropy. Students communicated their feelings freely and there was a general consensus within the group that the workshops were really beneficial.
Publisher
Royal Society of Chemistry (RSC)
Subject
Education,Chemistry (miscellaneous)
Reference44 articles.
1. Aspinwell L. and Miller D., (1997), Students’ positive reliance on writing as a process to learn first semester calculus, J. Inst. Psychol. , 24 , 253–261
2. Bain K., Moon A., Mack M. R. and Towns M.H., (2014), A review of research on the teaching and learning of thermodynamics at the university level, Chem. Educ. Res. Pract. , 15 , 320–335
3. Bain K., Rodriguez J. G. and Towns M. H., (2019), Chemistry and mathematics: Research and frameworks to explore student reasoning, J. Chem. Educ. , 96 , 2086–2096
4. Becker N. and Towns M., (2012), Students’ understanding of mathematical expressions in physical chemistry contexts: An analysis using Sherin's symbolic forms, Chem. Educ. Res. Pract. , 13 , 209–220
5. Becker N., Rasmussen C., Sweeney G., Wawro M., Towns M. and Cole R., (2013), Reasoning using particulate nature of matter: An example of a sociochemical norm in a university-level physical chemistry class, Chem. Educ. Res. Pract. , 14 , 81–94
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献