Pólya 加强微分方程解题能力的方法:哥伦比亚案例研究

IF 2.6 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Marcos Chacón-Castro, J. Buele, Ana Dulcelina López-Rueda, Janio Jadán-Guerrero
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引用次数: 0

摘要

培养学生是教育不可或缺的一部分。加强批判性思维和推理能力对于培养当今世界所需的专业人才至关重要。因此,本文作者采用了 Pólya 的方法,即基于观察学生在面对数学问题时遇到的困难的举措。本研究属于定性和定量研究范式以及行动研究方法的一部分。在本研究中,探究过程是归纳式的,样本是非概率性的,数据解释策略是描述性的。作为案例研究,布卡拉曼加自治大学的微分方程课程招收了六名学生。设计了一个使用信息和通信技术(ICTs)的教学过程,分为五个序列,涉及一阶微分方程的应用。通过教学干预,学生解决问题的能力得到了提高。所有这一切都基于提出正确的问题、反复阅读、确定和定义变量、数学化、交流以及将问题分解为子问题。这项研究力求在拉丁美洲地区开创先例,为今后的研究奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pólya’s Methodology for Strengthening Problem-Solving Skills in Differential Equations: A Case Study in Colombia
The formation of students is integral to education. Strengthening critical thinking and reasoning are essential for the professionals that today’s world needs. For this reason, the authors of this article applied Pólya’s methodology, an initiative based on observing students’ difficulties when facing mathematical problems. The present study is part of the qualitative and quantitative research paradigm and the action research methodology. In this study, the inquiry process was inductive, the sample is non-probabilistic, and the data interpretation strategy is descriptive. As a case study, six students were enrolled onto a differential equations course at the Universidad Autónoma de Bucaramanga. A didactic process was designed using information and communication technologies (ICTs) in five sequences that address first-order differential equation applications. As a result of the pedagogical intervention, problem-solving skills were strengthened. All this was based on asking the right questions, repeated reading, identifying and defining variables, mathematization, communication, and decomposing the problem into subproblems. This research study seeks to set a precedent in the Latin American region that will be the basis for future studies.
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来源期刊
Computers
Computers COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-
CiteScore
5.40
自引率
3.60%
发文量
153
审稿时长
11 weeks
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