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Teaching math modeling through 3D-printing: Examining the influence of an integrative professional development

机译:通过3D印刷教学数学建模:检查综合专业发展的影响

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摘要

Mathematical modeling is a critical component of the current K-12 mathematics, science, and technology and engineering (T&E) educational standards in the United States. However, mathematical modeling is often overlooked or underemphasized in integrative STEM lessons. This could be attributed to teachers' limited content and pedagogical knowledge related to integrating mathematical modeling in integrative STEM lessons. Continual advances in technologies like 3D design and printing software and additive manufacturing processes now allow students to see abstract mathematical modeling concepts in contextualized and practical forms. Consequently, we examined changes in mathematics, science, and T&E teachers' mathematical modeling knowledge and views resulting from a 1-day integrative professional development (PD) experience. The PD specifically focused on applying mathematical modeling concepts to design and 3D print solutions to integrative STEM lessons. A sample of 50 participating teachers reported increases in certain mathematical modeling knowledge areas, and a large percentage indicated they were more likely to implement mathematical modeling in their classrooms. The results from this study indicated that integrative PD could enhance teachers' content knowledge, practices, and views about integrative STEM lessons including mathematical modeling and 3D printing. The findings from this study have implications for teachers, school districts, researchers, and professional development providers.
机译:数学建模是美国当前K-12数学,科学和技术和工程(T&E)教育标准的关键组成部分。然而,数学建模通常在综合茎课中被忽视或强制。这可能归因于教师有限的内容和与综合性词干课程中数学建模相关的教学知识。 3D设计和印刷软件等技术的持续进步现在允许学生以上下文和实用形式看到抽象的数学建模概念。因此,我们检查了数学,科学和T&e教师数学建模知识和观点的变化,这是由一天综合专业发展(PD)经验产生的。 PD专门专注于将数学建模概念应用于设计和3D打印解决方案,以综合茎课。 50名参与教师的样本报告了某些数学建模知识领域的增加,并且百分比表明它们更有可能在课堂上实施数学建模。本研究结果表明,综合PD可以增强教师的内容知识,实践和关于综合性词干课程的看法,包括数学建模和3D打印。本研究的调查结果对教师,学区,研究人员和专业发展提供商有影响。

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