SE-First:软件工程教育的新途径

Colin Maly, S. Person, Leen-Kiat Soh
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引用次数: 2

摘要

在这篇创新实践全文中,我们注意到软件开发的方式在过去50年中发生了重大变化。今天的软件开发人员不能只擅长写代码;他们还必须具备非技术技能,以便在不同的团队中成功地工作,并对构建和维护复杂系统所需的工具和过程具有鉴赏力。在这本书中,我们描述了一个新颖的一年级软件工程优先(SE-First)课程,在学生学习基本计算概念的同时,向学生介绍了软件开发的更广阔的图景。为了评估我们新颖的第一年课程的有效性,我们将完成第一年软件工程课程的学生与完成传统计算机科学课程的学生进行比较。我们评估学生对计算机概念的知识,以及他们的自我效能。初步结果显示,修毕第一年软件工程课程的学生,在计算概念测试上的表现一样好,甚至更好;他们对自己的计算能力和将计算技能应用于自己的领域更有信心;他们在第一年的计算课程(即与完成传统的第一年计算机课程的学生相比,更少的学生放弃这门课程,更少的学生获得D或F的课程成绩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SE-First: A New Approach to Software Engineering Education
In this Innovative Practice Full Paper, we note that the way software is developed has changed significantly in the past 50 years. Software developers today cannot just be good at writing code; they must also possess non-technical skills in order to work successfully within diverse teams and have an appreciation for the tools and processes needed to build and maintain complex systems. In this work, we describe a novel first-year Software Engineering-First (SE-First) curriculum that introduces students to the broader picture of software development while students learn fundamental computing concepts. To assess the effectiveness of our novel first-year curriculum, we compare students who completed the first-year software engineering curriculum with students who completed our traditional computer science curriculum. We assess student knowledge of computing concepts, and their self-efficacy. Initial results show that students who complete the first-year software engineering courses perform as well or better on the computing concepts test, they are more confident in their computing abilities and in the application of computing skills to their field, and they have a higher success rate in their first-year computing courses (i.e., fewer students drop the course and fewer students receive a D or F course grade) compared with students who complete the traditional first-year computing program.
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