Trans-Disciplinary Pedagogy for Science and Journalism Majors Linking Water Resource Information to Communities

IF 0.7 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
L. Florea, A. Kuban
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引用次数: 0

Abstract

Water Quality Indiana is a learning platform that leverages collaborations, community partnerships, and active mentorship of transdisciplinary student cohorts. Since 2013, this platform has engaged teams of science, technology, engineering, and mathematics (STEM) and communication and media students to investigate water quality in east central Indiana (since expanded to other domestic and international locations) in an experiential problem-based learning environment. For community partners, Water Quality Indiana provides scientific data, analysis, and multimedia deliverables about water quality, and it has a successful record of finding solutions to real-world problems. From the point of view of faculty, project deliverables enhance several aspects of a faculty portfolio. For student participants, the goal is to increase metacognition, civic engagement, and confidence in processes associated with STEM and media studies, and, therefore, the transdisciplinary skills required in an increasingly competitive workforce. Assessing learning artifacts (e.g., assignment, quizzes, or other evaluative metrics) reveals a cognitive dissonance between metacognition and accuracy in declarative knowledge related to topics in water quality—student scores did not increase in posttest data despite an increased confidence in selected answers. In contrast, pretest and posttest results, synthesis reports, and focus group data suggest that confidence in procedural knowledge in both water quality and media production significantly increased by the end of the course. Students cited time constraints imposed by academic calendars and project deadlines as a limitation of the learning environment. Course data reveal differences based on academic background and gender: 1) media studies majors became more confident in their multimedia skills, while STEM majors became less confident; 2) note-taking style and detail is more organized and meticulous for female and STEM students compared to male and media studies counterparts.
将水资源信息与社区联系起来的科学与新闻专业跨学科教学法
印第安纳州水质是一个学习平台,利用合作,社区伙伴关系和跨学科学生群体的积极指导。自2013年以来,该平台吸引了科学、技术、工程和数学(STEM)团队以及通信和媒体专业的学生,在基于体验的问题学习环境中调查印第安纳州中东部的水质(现已扩展到其他国内和国际地区)。对于社区合作伙伴,印第安纳州水质中心提供有关水质的科学数据、分析和多媒体交付物,并且在为现实问题寻找解决方案方面取得了成功。从教师的角度来看,项目可交付成果增强了教师组合的几个方面。对于学生参与者来说,目标是提高对与STEM和媒体研究相关过程的元认知、公民参与和信心,从而提高竞争日益激烈的劳动力中所需的跨学科技能。评估学习工件(例如,作业,测验或其他评估指标)揭示了与水质主题相关的陈述性知识的元认知和准确性之间的认知失调-尽管学生对选择的答案增加了信心,但测试后数据并未增加学生的分数。相比之下,测试前和测试后的结果、综合报告和焦点小组数据表明,在课程结束时,对水质和媒体制作过程知识的信心显著增加。学生们将学术日历和项目截止日期所施加的时间限制作为学习环境的限制。课程数据显示了基于学术背景和性别的差异:1)媒体研究专业的学生对自己的多媒体技能更有信心,而STEM专业的学生则不那么自信;2)与男性和媒体研究学生相比,女性和STEM学生的笔记风格和细节更有条理和细致。
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来源期刊
International Journal of Embedded Systems
International Journal of Embedded Systems COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
CiteScore
2.50
自引率
41.70%
发文量
56
期刊介绍: With the advent of VLSI system level integration and system-on-chip, the centre of gravity of the computer industry is now moving from personal computing into embedded computing. Embedded systems are increasingly becoming a key technological component of all kinds of complex technical systems, ranging from vehicles, telephones, audio-video-equipment, aircraft, toys, security systems, medical diagnostics, to weapons, pacemakers, climate control systems, manufacturing systems, intelligent power systems etc. IJES addresses the state of the art of all aspects of embedded computing systems with emphasis on algorithms, systems, models, compilers, architectures, tools, design methodologies, test and applications.
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