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Identifying Pertinent Elements of Critical Thinking and Mathematical Thinking Used in Civil Engineering Practice in Relation to Engineering Education

机译:识别与工程教育有关的土木工程实践中的批判性思维和数学思维的相关要素

摘要

Engaging critical thinking and mathematical thinking in solving engineering problems is a way of approaching the engineering criteria of Engineering Accreditation Council, Board of Engineers Malaysia. Thus, it is timely and crucial to inculcate the critical thinking and mathematical thinking into the current engineering education. Unfortunately, information about these two modes of thinking in real-world engineering practice is found lacking in the literature. Therefore, this paper focuses on explaining an analytic process in identifying pertinent elements of critical thinking and mathematical thinking used in real-world civil engineering practice. The analytic process, namely open coding is a part of coding process in modified grounded theory analysis. Data consist of semi-structured interviews with eight practicing civil engineers from two different consultancy firms. A total of fifty three pertinent elements emerged during the analytic process. The selection of these pertinent elements was based on the predominant pattern and frequency of the informants and open codes. The pertinent elements were eventually integrated to develop a substantive theory. The substantive theory provides useful information for the engineering education.
机译:用批判性思维和数学思维来解决工程问题是一种达到马来西亚工程师委员会工程认证委员会工程标准的方法。因此,将批判性思维和数学思维灌输到当前的工程教育中是及时而关键的。不幸的是,文献中缺乏有关实际工程实践中这两种思维方式的信息。因此,本文着重于解释一种分析过程,该过程用于识别在现实世界的土木工程实践中使用的批判性思维和数学思维的相关元素。分析过程,即开放编码,是改进的扎根理论分析中编码过程的一部分。数据包括对来自两家不同咨询公司的八名土木工程师的半结构化访谈。在分析过程中总共出现了53个相关元素。这些相关元素的选择基于信息提供者和公开密码的主要模式和频率。最终,相关元素被整合以发展一个实质性理论。实体理论为工程教育提供了有益的信息。

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