Research on the Practical Path of Blended Teaching Mode of College Mathematics in the Perspective of Emerging Engineering Education

Chang Lu
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Abstract

The Emerging Engineering Education concept further highlights and strengthens the supporting role of mathematical theory and methods for engineering majors, requiring students to enhance their mathematical abilities in terms of foundation, depth, and application, in order to achieve deep cross-border integration with engineering majors. This requires re-examining, rethinking, and constructing a new framework for engineering mathematics teaching, and emerging teaching models such as blended learning provide new ideas and approaches for engineering mathematics teaching to meet this requirement. Focusing on the goal of cultivating new engineering talents, this article mainly studies the construction of a three-dimensional university mathematics teaching resource library, the construction of a dual-subject multi-process blended teaching model, and the formation of a three-stage closed-loop evaluation feedback mechanism. It also analyzes and studies the advantages and problems of this model in practice. Practice has shown that the blended teaching model of engineering mathematics can effectively address some deficiencies in mathematics curriculum teaching and is an effective path to achieve cross-disciplinary integration. However, there are also problems such as imperfect evaluation systems.
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新兴工程教育视角下大学数学混合式教学模式的实践路径研究
新兴工程教育理念进一步突出和强化了数学理论与方法对工科专业的支撑作用,要求学生从基础、深度、应用等方面提升数学能力,实现与工科专业的深度跨界融合。这就需要重新审视、反思和构建新的工科数学教学框架,混合式教学等新兴教学模式为工科数学教学提供了新的思路和方法,以满足这一要求。本文围绕培养新型工科人才的目标,主要研究了立体化大学数学教学资源库的建设、双主体多过程混合式教学模式的构建、三级闭环评价反馈机制的形成等问题。同时,还分析研究了该模式在实践中的优势和问题。实践表明,工科数学混合式教学模式能有效解决数学课程教学中的一些不足,是实现跨学科融合的有效路径。但也存在评价体系不完善等问题。
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