10 Guiding principles for learning in the laboratory

IF 2.6 2区 教育学 Q1 EDUCATION & EDUCATIONAL RESEARCH
Michael K. Seery, Hendra Y. Agustian, Frederik V. Christiansen, Bente Gammelgaard and Rie H. Malm
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引用次数: 0

Abstract

Laboratory work in chemistry has been extensively researched in the last decade but the gap between research and practice is still broad. This Perspective shares 10 guiding principles relating to university laboratory education, drawing on research over the last decade. Written with an audience of practitioners in mind, the Perspective aligns with Hounsell and Hounsell's congruence framework, so that the 10 principles consider all aspects of the laboratory curriculum: design, teaching approaches, and assessment approaches as suggested by Biggs, but additional contextual factors relating to teaching context: backgrounds of students and their support, and overall laboratory organisation and management. After discussing the rationale for each guiding principle, examples of approaches are given from recent literature along with prompts to help enact the guiding principle in practice.

近十年来,化学实验室工作得到了广泛的研究,但研究与实践之间的差距仍然很大。本展望分享了与大学实验室教育相关的10条指导原则,借鉴了过去十年的研究成果。考虑到实践者的受众,该观点与Hounsell和Hounsell的一致性框架保持一致,因此10条原则考虑了实验室课程的所有方面:比格斯建议的设计,教学方法和评估方法,但与教学背景相关的其他背景因素:学生背景及其支持,以及整体实验室组织和管理。在讨论了每个指导原则的基本原理之后,从最近的文献中给出了方法的示例,并提示有助于在实践中制定指导原则。
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来源期刊
CiteScore
4.80
自引率
26.70%
发文量
64
审稿时长
6-12 weeks
期刊介绍: The journal for teachers, researchers and other practitioners in chemistry education.
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