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Student Performance in First Year, Mathematics, and Physics Courses: Implications for Success in the Study of Electrical and Computer Engineering

机译:一年级,数学和物理课程的学生表现:对电气和计算机工程研究成功的启示

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摘要

Mathematics and physics courses are recognized as a crucial foundation for the study of engineering, and often are prerequisite courses for the basic engineering curriculum. But how does performance in these prerequisite courses affect student performance in engineering courses? This study evaluated the relationship between grades in prerequisite math and physics courses and grades in subsequent electrical engineering courses. Where significant relationships were found, additional analysis was conducted to determine minimum grade goals for the prerequisite courses. Relationships were found between five course pairs: calculus II and differential equations; calculus II and physics I (mechanics); physics II (electricity and optics) and circuits analysis II; physics II (electricity and optics) and signals and systems; and circuits analysis II and signals and systems. The results indicate that a grade of C+ or higher in calculus II, and a grade of B- or higher in physics II and circuits analysis II will lead to higher grades in subsequent mathematics, circuits, and signals and systems courses. This information will be used to aid faculty in making decisions about imposing minimum grade requirements.
机译:数学和物理课程被认为是工程学研究的重要基础,并且通常是基础工程课程的前提课程。但是,这些必修课程的成绩如何影响学生在工程课程中的成绩?这项研究评估了先修数学和物理课程的成绩与随后的电气工程课程的成绩之间的关系。在发现重要关系的地方,进行了其他分析,以确定前提课程的最低成绩目标。在五个课程对之间发现了关系:微积分II和微分方程;微积分II和物理I(力学);物理II(电和光学)和电路分析II;物理II(电和光学)以及信号和系统;和电路分析II以及信号和系统。结果表明,在微积分II中达到C +或更高的等级,在物理II和电路分析II中达到B-或更高的等级,将在随后的数学,电路以及信号和系统课程中取得更高的成绩。此信息将用于帮助教师做出有关强加最低年级要求的决定。

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