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Beyond pipeline and pathways: Ecosystem metrics

机译:超越管道和途径:生态系统指标

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Background: Pipeline and pathways models influence persistence metrics used to study how students navigate engineering education.Purpose: This study presents pipeline, pathways, and ecosystem models and their associated metrics, compares and contrasts these models using an intersectional approach to explore persistence, and advocates for use of an ecosystem model.Design/Method: This study presents a quantitative perspective of engineering student outcomes disaggregated by discipline, race/ethnicity, and sex. It includes 111,925 engineering students from 11 U.S. universities, including first-time-in-college and transfer students who ever majored in the most common engineering disciplines: chemical, civil, electrical, industrial, and mechanical engineering. Contemporary data visualization methods are used to display quantitative data and clarify their complexity.Results: This work captures the intersectionality of race/ethnicity, sex, and discipline with metrics that are new or little used, such as stickiness (retention by a discipline), migrator graduation rate, and migration yield (attraction of a discipline). Using these metrics, we uncover information about the success of students who migrate between and among the top five engineering disciplines.Conclusions: Stickiness, migrator graduation rates, and migration yield metrics coupled with contemporary data visualization methods provide insights into the student experience not afforded by the conventional pipeline and pathways models. Considering engineering education as an ecosystem tells stories of complexity and nuance, opening possibilities for new research.
机译:背景:管道和路径模型会影响用于研究学生如何进行工程教育的持久性指标目的:本研究提出了管道,路径和生态系统模型及其关联指标,使用交叉方法比较和对比这些模型以探索持久性,并倡导设计/方法:本研究从工程学科,种族/民族和性别的角度对工程类学生的成绩进行了定量分析。它包括来自11所美国大学的111,925名工程专业学生,其中包括有史以来最先攻读和转学的学生,他们都修读了最常见的工程专业:化学,土木,电气,工业和机械工程。当代的数据可视化方法用于显示定量数据并阐明其复杂性。结果:这项工作捕获了种族/民族,性​​别和纪律与新近或很少使用的指标(例如粘性(由某学科保留),移民毕业率和移民产量(吸引一门学科)。使用这些指标,我们发现了在前五名工程学科之间进行迁移的学生的成功信息。结论:粘性,迁移者毕业率和迁移收益率指标与当代数据可视化方法相结合,可以深入了解未获得的学生体验常规管道和路径模型。将工程学教育视为一个生态系统,可以讲述复杂性和细微差别的故事,为新研究打开了可能性。

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