科学、技术、工程和数学系本科生对量子职业的了解和兴趣:建设多元化量子人才队伍的障碍与机遇

IF 2.6 2区 教育学 Q1 EDUCATION & EDUCATIONAL RESEARCH
Jessica L. Rosenberg, Nancy Holincheck, Michele Colandene
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引用次数: 0

摘要

为支持第二次量子革命而建设人才队伍的努力正在不断加强,其中包括设立教育项目,为学生从事该领域的工作做好准备。我们调查了 186 名本科生,他们的专业涉及科学、技术、工程和数学(STEM)学科,并通过小组访谈了解他们的观点。该项目旨在了解这些 STEM 学生对量子和量子职业机会的了解程度,以及他们对从事量子相关职业的兴趣程度。我们发现,大多数学生对量子知之甚少。然而,除了生命科学专业的学生外,其他学生都对量子职业感兴趣。在所有 STEM 专业中,女生对量子职业表示兴趣的可能性低于男生,但当我们只考察物理和计算机科学专业时,这种差异就消失了。在少数了解量子概念的学生中,大多数是从网络媒体,尤其是网络视频中了解到这一主题的。一些学生表示,他们是在高中课程中了解到量子的,而高中课程中的量子教学是课程常规主题之外的延伸。在我们的研究中,STEM 本科生指出了他们希望了解更多量子知识的多种途径,包括短视频、研讨会、课程、证书和学位课程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Science, technology, engineering, and mathematics undergraduates’ knowledge and interest in quantum careers: Barriers and opportunities to building a diverse quantum workforce

Science, technology, engineering, and mathematics undergraduates’ knowledge and interest in quantum careers: Barriers and opportunities to building a diverse quantum workforce
Efforts to build the workforce in support of the second quantum revolution are growing, including the creation of education programs that will prepare students for jobs in this area. We surveyed 186 undergraduate students with majors across the science, technology, engineering, and math (STEM) disciplines and followed up with group interviews to understand their perspectives. The project was designed to understand what these STEM students know about quantum and quantum career opportunities and their level of interest in pursuing a career related to quantum. We found that most of the students know very little about quantum. Nevertheless, except for students in the life sciences, there was an interest in quantum careers. Across STEM majors, women were less likely to express interest in quantum careers than men, but this difference disappeared when we examined only physical and computer science majors. Of the few students who had knowledge of quantum concepts, most learned about this topic from online media, especially online videos. Some students reported learning about quantum in high school classes, where it was taught as an extension beyond the usual topics of the course. The undergraduate STEM students in our study identified multiple ways they would like to learn more about quantum, including short videos, seminars, courses, certificates, and degree programs.
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来源期刊
Physical Review Physics Education Research
Physical Review Physics Education Research Social Sciences-Education
CiteScore
5.70
自引率
41.90%
发文量
84
审稿时长
32 weeks
期刊介绍: PRPER covers all educational levels, from elementary through graduate education. All topics in experimental and theoretical physics education research are accepted, including, but not limited to: Educational policy Instructional strategies, and materials development Research methodology Epistemology, attitudes, and beliefs Learning environment Scientific reasoning and problem solving Diversity and inclusion Learning theory Student participation Faculty and teacher professional development
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