Students and Teachers Learning from Nature: Studying Biologically-Inspired Design in High School Engineering Education
Students and Teachers Learning from Nature: Studying Biologically-Inspired Design in High School Engineering Education
批准号:
1907906
负责人:
Marc Weissburg
金额:
$292.78万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-08-01 至 2024-07-31
中文摘要
科学家和工程师经常从自然界中学习,以开发有益于社会的新产品,这一过程称为生物灵感设计。例如,航空航天工程师研究了瓢虫翅膀上复杂的折叠模式,以获得设计更紧凑卫星的想法。在这个项目中,高中工程教师将花五个星期的时间在一个研究实验室,致力于生物启发的设计,因为他们与尖端的工程师和科学家合作,研究动物的特征和行为及其在工程设计中的应用。在这次实验室体验之后,高中教师将获得三个为期六到十周的课程单元,为十到十二年级的学生量身定制,在与青年有关的问题的背景下教授生物灵感的设计。教师还将参加正在进行的专业发展会议,展示教学这些单位的战略。研究小组将研究实验室和专业发展经验是否以及如何影响教师对工程的理解和对自然的看法,以及其他结果。此外,研究小组将研究课程单元是否与学生的积极学习成果有关。课程和专业发展模块将通过在线资源和教师讲习班公开分享,研究结果将通过期刊广泛传播。由于以前的研究表明,生物灵感的设计是吸引和留住女性从事工程职业的一种很有前途的方法,因此该项目很可能会产生这样的产品,即在高中女生想象未来职业轨迹的关键时期,培养她们对工程的兴趣。此外,这些产品很可能通过教会学生如何向大自然寻求紧迫问题的答案,以及通过产生有关激励教育方法的知识,鼓励更广泛的高中生追求工程职业,来推动国家创新。该项目通过开发和测试三套课程来解决工程职业中女孩人数持续不足的问题,预计这些课程将在高中女生中产生积极的结果。这些课程包括生物启发的工程,人文工程,注重可持续性和思维能力,以及真实的设计环境。十名高中教师将参加广泛的专业发展经验,为有效教授课程做好准备。这些经验包括与应用生物启发设计的科学家进行为期五周的实验室体验;为期一周的研讨会,展示教学单元的策略;每周实施会议;和基于网络的专业发展模块。为了研究专业发展对教师的影响,研究人员将收集课程设计日志,教师制定调查和工程教学自我效能感调查,他们还将进行课堂观察和访谈。这些来源的定性分析将表明专业发展是否以及如何影响教师的工程设计过程的理解,工程教学的自我效能感,以及对自然和设计的世界的看法。为了研究课程对1,100多名高中生的影响,研究人员将使用经过验证的措施进行事前设计,以确定课程是否与更好地理解和使用工程设计过程有关;产生精心设计的工程设计问题的能力;工程自我效能;对自然和设计世界的态度;可持续性意识;和坚持工程学的决心随后,一个具有匹配对照组的准实验设计将使研究人员能够确定治疗组在前后测量方面是否优于对照组。焦点小组的定性分析和采访的一个子集的高中女生将表明课程是否以及如何支持他们的归属感在工程。该项目旨在促进高中学生,特别是女孩在工程教育方面的知识和实践,最终扩大对工程途径的参与。发现研究preK-12计划(DRK-12)旨在显著提高preK-12学生和教师对科学,技术,工程和数学(STEM)的学习和教学,通过研究和开发创新资源、模式和工具。DRK-12项目中的项目建立在STEM教育的基础研究以及为拟议项目提供理论和经验依据的先前研究和开发工作的基础上。该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Scientists and engineers often learn from nature to develop new products that benefit society, a process called biologically-inspired design. Aerospace engineers, for example, have studied the intricate folding patterns in ladybugs' wings to gain ideas for designing more compact satellites. In this project, high school engineering teachers will spend five weeks in a research lab devoted to biologically-inspired design, as they partner with cutting-edge engineers and scientists to study animal features and behavior and their applications to engineering designs. After this lab experience, the high school teachers will receive three six- to ten-week curricular units, tailored for tenth- through twelfth-grade students, which teach biologically-inspired design in the context of problems that are relevant to youth. The teachers will also participate in ongoing professional development sessions that demonstrate strategies for teaching these units. The research team will study whether and how the lab and professional development experiences influence the teachers' understandings of engineering and perspectives toward nature, among other outcomes. Additionally, the research team will study whether the curricular units are associated with positive learning outcomes for students. The curricula and professional development modules will be shared publicly through online resources and teacher workshops, and research findings will be widely disseminated through journals. Because previous research has suggested that biologically-inspired design is a promising approach for attracting and retaining women in engineering careers, this project is likely to result in products that foster high school girls' interest in engineering during a critical period when they are imagining their future career trajectories. Moreover, these products are likely to fuel national innovation by teaching students how to look to nature to find answers to pressing problems, and by generating knowledge about motivational educational approaches that encourage a wider range of high school students to pursue engineering careers. This project addresses the persistent underrepresentation of girls in engineering careers by developing and testing three sets of curricula that are expected to lead to positive outcomes among high school females. These curricula incorporate biologically-inspired engineering, humanistic engineering, a focus on sustainability and ideation, and authentic design contexts. Ten high school teachers will participate in extensive professional development experiences that prepare them to effectively teach the curricula. These experiences include a five-week lab experience with scientists who are applying biologically-inspired design; a one-week workshop demonstrating strategies for teaching the units; weekly implementation meetings; and web-based professional development modules. To study the effect of the professional development on teachers, researchers will collect curriculum design logs, teacher enactment surveys, and engineering teaching self-efficacy surveys; they will also conduct classroom observations and interviews. Qualitative analyses of these sources will indicate whether and how the professional development affected teachers' understanding of the engineering design process, engineering teaching self-efficacy, and perspective toward the natural and designed world. To study the effect of the curricula on over 1,100 high school students, researchers will use a pre-post design with validated measures to determine whether the curricula are associated with greater understanding and use of the engineering design process; ability to generate well-formulated engineering design problems; engineering self-efficacy; attitudes toward the natural and designed world; sustainability awareness; and intent to persist in engineering. Subsequently, a quasi-experimental design with a matched comparison group will enable the researchers to determine whether the treatment group outperformed the comparison group on pre-post measures. Qualitative analysis of focus groups and interviews with a sub-set of high school girls will indicate whether and how the curricula supported their sense of belonging in engineering. This project is designed to advance knowledge and practice in engineering education for high school students, especially among girls, ultimately resulting in broadening participation in engineering pathways.The Discovery Research preK-12 program (DRK-12) seeks to significantly enhance the learning and teaching of science, technology, engineering and mathematics (STEM) by preK-12 students and teachers, through research and development of innovative resources, models and tools. Projects in the DRK-12 program build on fundamental research in STEM education and prior research and development efforts that provide theoretical and empirical justification for proposed projects.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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Creating Biologically Inspired Design Units for High School Engineering Courses
为高中工程课程创建受生物学启发的设计单元
DOI:
10.1109/fie49875.2021.9637238
发表时间:
2021
期刊:
Institute of Electrical and Electronics Engineers Frontiers in Engineering Educario
影响因子:
--
作者:
[Moore, Roxanne A., Ehsan, Hoda, Kim, Euisun, Helms, Michael, Alemdar, Meltem, Rosen, Jeffrey, Cappelli, Christopher J., Weissburg, Marc]
通讯作者:
Weissburg, Marc
Using Structures, Functions, and Mechanisms to Access Biological Analogies: Experiences from High School Engineering Teachers' Professional Development
利用结构、功能和机制进行生物类比:高中工程教师专业发展的经验
DOI:
10.1109/fie49875.2021.9637291
发表时间:
2021
期刊:
Institute of Electrical and Electronics Engineers
影响因子:
--
作者:
[Moore, Roxanne A., Ehsan, Hoda, Kim, Euisun, Helms, Michael, Alemdar, Meltem, Rosen, Jeffrey, Cappelli, Christopher J., Weissburg, Marc]
通讯作者:
Weissburg, Marc
GETTING BEYOND THE HAIRY HOUSE: USING STRUCTURE-FUNCTIONMECHANISM TO ADVANCE BIOLOGICALLY INSPIRED DESIGN PEDAGOGY
超越毛茸茸的房子:利用结构功能机制推进受生物学启发的设计教学法
DOI:
--
发表时间:
2021
期刊:
International Design Engineering Technical Conferences and Computers and Information in Engineering Conference
影响因子:
--
作者:
[Helms, M]
通讯作者:
Helms, M
Biologically Inspired Design For Engineering Education: Online Teacher Professional Learning (Evaluation)
工程教育的生物启发设计:在线教师专业学习(评估)
DOI:
10.18260/1-2--36749
发表时间:
2021
期刊:
American Society of Engineering education
影响因子:
--
作者:
[Alemdar, Meltem, Ehsan, Hoda, Cappelli, Christopher, Kim, Euisun, Moore, Roxanne, Helms, Michael, Rosen, Jeffrey, Weissburg, Marc]
通讯作者:
Weissburg, Marc
DOI:
10.3390/biomimetics7030093
发表时间:
2022-07-07
期刊:
Biomimetics (Basel, Switzerland)
影响因子:
--
作者:
[]
通讯作者:
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