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Naturalistic Observations of Metacognition in Engineering: Using observational methods to study metacognitive engagement in engineering

机译:工程中元认知的自然主义观察:使用观测方法研究工程中的元认知啮合

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Background The use of metacognition is critical to learning, especially in fields such as engineering that involve problem-solving and difficult conceptual material. Due to limitations with current methodological approaches, new methods are needed to investigate engineering students' metacognitive engagement in learning situations that are self-directed, such as study groups. Purpose Our purpose was to develop an approach to investigate the metacognitive engagement of undergraduate engineering students in self-directed learning environments. The Naturalistic Observations of Metacognition in Engineering (NOME) Observational Protocol and Coding Strategy is a qualitative data collection method that allows researchers to observe the behaviors of students who are studying in groups to determine the student's engagement in different metacognitive practices. The NOME is intended to be used by researchers interested in studying online metacognitive behaviors without the direct interference of a methodological approach. Design/Method We observed three study groups where students were working on an engineering problem-solving homework assignment. Using a taxonomic definition of metacognition, we coded episodes of observation transcripts to identify behaviors that represented key definitions in the taxonomy. Results We combined subcodes and descriptions of behaviors with key definitions to develop a coding strategy useful for future observational studies. Evidence of intercoder agreement and agreement in unitizing indicates that the coding strategy can reliably be used by multiple trained coders to identify metacognitive engagement. Conclusions The reliability evidence shows that the NOME may be a useful tool for researchers in engineering education interested in studying the metacognitive habits of engineering students in self-directed study.
机译:背景技术使用元记高对于学习至关重要,特别是在诸如工程的领域,涉及解决问题和困难的概念材料。由于目前的方法方法的局限性,需要新的方法来调查工程学生在自我指导的学习情况下的元认知参与,例如研究组。目的我们的目的是制定一种调查本科工程学生在自我指导学习环境中的元认知参与的方法。工程(NOME)观察协议和编码策略中元认知的自然主义观察是一种定性数据收集方法,允许研究人员遵守学习的学生的行为,以确定学生在不同的元认知实践中的参与。诺姆斯旨在由有兴趣的研究人员使用,该研究人员在没有方法论方法的直接干扰的情况下学习在线元认知行为。设计/方法我们观察到三个研究小组,学生正在努力解决工程问题解决家庭作业。使用分类定义元记录的定义,我们编写了观察成绩单的剧集,以识别在分类学中代表关键定义的行为。结果我们组合了子电视台和对关键定义的行为描述,以开发用于未来观察研究的编码策略。互考明协议的证据和单位协议表明,编码策略可以可靠地由多次培训的编码器使用,以识别元认知参与。结论可靠性证据表明,NOME可能是有兴趣研究自我导向学习中工程学生的元认知习惯的工程教育研究人员的有用工具。

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