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MODE OF FAILURE ANALYSIS OF STUDENT RESPONSES TO PRE-REQUISITE KNOWLEDGE ASSESSMENTS IN FLUID MECHANICS

机译:流体力学中的学生对先决知识评估的学生回应失败分析模式

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In Mechanical Engineering, and in particular in Fluid Mechanics, advanced concepts build extensively on a student's understanding of both Mathematics and their core Mechanical Engineering courses (Statics, Dynamics, Solid Mechanics). Within these core courses are a number of central concepts and skills which form threads that connect one content area to another within a discipline. An incomplete understanding in any of one of these concepts at an early stage in a student's education can lead to a cascade of failures or difficulties that resonate throughout their education. The current research has identified and mapped a number of central content and skill trajectories that are present in engineering education, focusing on science and mathematics content and skills. Student competency in these content and skills has been assessed along these trajectories for selected classes. Common student errors within these assessments have been identified and classified to generate a profile of the error modes for each topic. Validation of the error modes has been conducted through inter-rater reliability studies and student interviews. Trends and insight in to student difficulties with pre-requisite knowledge and an early curricular profile of issues with pre-requisite knowledge in Mechanical Engineering will be presented. Knowledge about the modes of failure (error) and the overall success or failure of content and skill trajectories will permit focused attention on teaching practices and the development and assessment of activities and learning materials aimed at developing long-term improvement of the student knowledge base. Through this research we are beginning to gain an understanding of student performance at various stages of a content or skill trajectory and we are able to examine the structure of the curriculum and determine where learning and transfer breaks down.
机译:在机械工程中,特别是在流体力学中,先进的概念在学生对数学和核心机械工程课程(静态,动态,固体力学)的了解中,建立了广泛的构建。在这些核心课程中,是一些中央概念和技能,它形成了将一个内容区域连接到另一个内容区域的线程。在学生教育的早期阶段中的任何一个在这些概念中的任何一个中都有一个不完整的理解,可能导致在整个教育中共鸣的级联或困难。目前的研究已经确定并映射了许多在工程教育中存在的中央内容和技能轨迹,重点是科学和数学内容和技能。这些内容和技能中的学生能力沿着这些轨迹进行了评估为选定的课程。这些评估中的常见学生错误已被识别并分类以为每个主题生成错误模式的配置文件。通过帧间可靠性研究和学生访谈进行了错误模式的验证。对学生困难的趋势和洞察与先前知识的困难以及在机械工程中的先决知识中提前课程概况。关于失败模式(错误)和内容和技能轨迹的总体成功或失败的知识将允许重点关注教学实践以及对活动和学习材料的发展和评估,旨在制定学生知识库的长期改善。通过这项研究,我们开始了解内容或技能轨迹的各个阶段的学生表现,我们能够检查课程的结构,并确定学习和转移的地方。

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