Improving Introductory Physics for Life-Science Students through a Biomedically Relevant Multimedia Curriculum
Improving Introductory Physics for Life-Science Students through a Biomedically Relevant Multimedia Curriculum
批准号:
1933984
负责人:
Ralf Widenhorn
金额:
$16.53万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-10-01 至 2023-09-30
中文摘要
在NSF改善本科生STEM教育计划:教育和人力资源(IUSE:EHR)的支持下,该项目旨在通过改善对生命科学和健康前学生的物理教学来服务于国家利益。这些物理课程一般由物理系教授。因此,除非讲师和课程材料明确与学生所选专业的主题相联系,否则这些课程似乎与这些学生的相关性较小。这个项目是波特兰州立大学和罗克赫斯特大学合作开发一整年的模块化、多媒体、与生物医学相关的教材,用于物理课程。它解决了改进健康前和生命科学物理课程的重要需要,目的是帮助健康前学生认识到物理学的学习是必要的,并且与未来的生物医学职业有关。多媒体课程的设计将通过与生物医学专业人员的合作完成。这些视频和补充材料采用了基于真实世界应用的主动学习模式,以加强跨学科的努力,并为增加本科生物理学习提供了巨大的潜力。这个项目的意义在于解决了对未来生物医学专业人员精通基本物理原理的需求。这些原则涉及到分析人体功能的各个方面,以及疾病的检测、诊断和治疗。如果成功,该项目将有助于更好地准备新一代的医疗保健专业人员。该项目旨在通过满足两个主要需求来转变生命科学的物理学入门教育。首先,它将为学生提供一门课程,强调物理学作为一门基础科学的重要性,这是医学不可或缺的一部分。其次,它将为教师提供连贯的物理课程,可以在多种教育环境中实施。对于不熟悉与生物医学相关的跨学科内容的教员来说,这些材料尤其有价值。在这个项目中开发的课程材料将包括采访生物医学专家的视频,这与生命科学物理学入门课程中所涵盖的关键思想有关。它还将包括一份书面手稿,明确将视频与物理原理相结合,并提供概念性和量化的课前/课后问题以及形成性和总结性评估。为了更好地利用课程材料,该项目将研究课程材料在多种教育环境中的可转移性。它还将审查在一所大型公立大学(波特兰州立大学)和一所小型文科大学(罗克赫斯特大学)的入门物理教室中采用积极学习教学法的课程的实施情况。该项目旨在评估学生的学习内容和对学习物理的态度。形成性和终结性评估将通过记录点击流数据、事后内容评估、态度评估和焦点小组离职访谈进行。这些材料将免费提供给本科生物理教学和教育研究社区,供不同的数字学习平台使用,使学生能够在线完成作业,或以印刷形式供课堂或实验室使用。NSF IUSE:EHR计划支持研究和开发项目,以提高所有学生的STEM教育的有效性。通过参与的学生学习路径,该计划支持有前景的实践和工具的创建、探索和实施。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势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
With support from the NSF Improving Undergraduate STEM Education Program: Education and Human Resources (IUSE: EHR), this project aims to serve the national interest by improving physics instruction for life science and pre-health students. These physics courses are generally taught by physics departments. As a result, the courses often seem less relevant to these students unless the instructor and curricular materials explicitly connect to themes in the students' chosen majors. This project is a collaborative effort by Portland State University and Rockhurst University to develop a full year of modular, multimedia, biomedically-relevant educational material for use in physics courses. It addresses the important need to improve pre-health and life science physics curricula, with the aim of helping pre-health students appreciate the study of physics as both necessary and relevant to future biomedical careers. Design of the multimedia curricula will be accomplished through collaboration with biomedical professionals. The videos and supplementary materials adopt an active learning model based on real world applications to enhance interdisciplinary efforts and provide significant potential for increasing the learning that occurs in undergraduate physics. The significance of this project lies in addressing the need for future biomedical professionals to be well-versed in fundamental physics principles. These principles are involved in every aspect of analyzing functions of the human body, as well as the detection, diagnosis, and treatment of illnesses. If successful, the project will contribute to a better prepared generation of healthcare professionals.This project aims to transform Introductory Physics for Life Sciences education by filling two main needs. First, it will provide students with a curriculum that stresses the importance of physics as a basic science that is integral to medicine. Second, it will provide faculty with a coherent physics curriculum that can be implemented in multiple educational environments. These materials will be especially valuable to faculty members unfamiliar with biomedically-related interdisciplinary content. Curriculum materials developed in this project will include videos of interviews with biomedical experts, as related to the key ideas covered in an Introductory Physics for Life Sciences course. It will also include a written manuscript that will explicitly integrate videos with physics principles, and provide conceptual and quantitative pre/post class problems as well as formative and summative assessments. To enhance use of the curriculum materials, the project will study their transferability to multiple educational environments. It will also examine the implementation of the curriculum with active learning pedagogies in introductory physics classrooms at both a large public university (Portland State University) and a small, liberal arts university (Rockhurst University). The project is designed to assess student content learning and attitudes toward learning physics. Formative and summative assessment will be conducted through logging clickstream data, pre-post content assessment, attitudinal assessment, and focus group exit interviews. The materials will be available to undergraduate physics teaching and education research communities without cost, for use on different digital learning platforms that enable students to complete assignments online, or in printed form for classroom or lab use. The NSF IUSE: EHR Program supports research and development projects to improve the effectiveness of STEM education for all students. Through the Engaged Student Learning track, the program supports the creation, exploration, and implementation of promising practices and tools.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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会议论文
Integrating Imaging Physics into Undergraduate STEM Education
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批准号:2315742
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项目类别:Standard Grant
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资助金额:$12.0万
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财政年份:2023
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负责人:Ralf Widenhorn
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依托单位:
Collaborative Research: Community Sourcing Introductory Physics for the Life Sciences
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批准号:1624192
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项目类别:Standard Grant
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资助金额:$5.5万
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财政年份:2016
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负责人:Ralf Widenhorn
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依托单位:
Collaborative Research: Multimedia modules for physics instruction in a flipped classroom course for pre-health and life science majors.
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批准号:1431447
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项目类别:Standard Grant
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资助金额:$23.57万
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财政年份:2014
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负责人:Ralf Widenhorn
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依托单位:
Physics in Medicine: Active Learning Tools for Undergraduate Physics Courses Developed in a Joint Collaboration of STEM Scientists and Medical Experts
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批准号:1141078
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项目类别:Standard Grant
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资助金额:$20.0万
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财政年份:2012
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负责人:Ralf Widenhorn
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依托单位:
海外基金