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Hardware-software synergy for profiling an interdisciplinary computer science engineers

机译:用于跨学科计算机科学工程师概况的软硬件协同

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Courses of computer science undergraduate studies are usually classified in two main groups: core and elective courses. The former are mandatory and students must pass them all so they can achieve Bachelor degree. The number of the latter is usually several times greater than the number that a student should select. This challenges the student which elective courses to select. Some elective courses have prerequisites, so the student has to pass other (elective) course(s), while for many others the student can be enrolled in without any prerequisites. The main dilemma for the student is whether to enroll in either more tightly coupled elective courses, or more loosely coupled elective courses. Choosing the former, the student will be directed in more specific areas of computer science. However, there are students that would like to learn broad areas of computer science. This paper focuses on the emerged group of students that select interdisciplinary courses. The experience presented in this paper shows that these students enroll into three completely divergent courses: Microprocessors and Microcontrollers, Software Architecture and Design and Human-Computer Interaction. The paper presents the examples of interdisciplinary projects completed by these students. These complex projects are proposed in the Human Computer Interaction course for the students that have already successfully taken the Microprocessors and Microcontrollers and/or Software Architecture and Design courses. Some students have accepted the challenges to work on the interdisciplinary projects, which resulted in defining and finishing various diploma theses that integrate knowledge areas of two or even all of the three courses.
机译:计算机科学本科课程通常分为两大类:核心课程和选修课程。前者是强制性的,学生必须全部通过它们才能获得学士学位。后者的数量通常比学生应选择的数量大几倍。这对选择哪门选修课的学生构成了挑战。有些选修课程有先决条件,因此学生必须通过其他(选修)课程,而对于另一些选修课,则无需任何先决条件就可以入学。对于学生而言,主要的难题是是否要选择更紧密结合的选修课程,还是更宽松结合的选修课程。选择前者,将把学生引导到计算机科学的更多特定领域。但是,有些学生想学习计算机科学的广泛领域。本文重点介绍了选择跨学科课程的新兴学生群体。本文介绍的经验表明,这些学生报名参加了三门完全不同的课程:微处理器和微控制器,软件体系结构和设计以及人机交互。本文介绍了这些学生完成的跨学科项目的示例。这些复杂的项目是在人机交互课程中为已成功修习微处理器和微控制器和/或软件体系结构与设计课程的学生提出的。一些学生接受了跨学科项目工作的挑战,这导致定义和完成各种文凭论文,这些文凭论文整合了两个或什至所有三个课程的知识领域。

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