学生太空任务-促进下一代太空专业人员成功的途径

Edgar A. Bering III, Shuhab D. Khan, L. Jacobs, D. Hampton, N. Mölders, D. Thorsen, R. Gamblin, Michaela Greer, Presley Greer, Bryan Gunawan, E. Hernandez, Emily Humble, J. Lehnen, Andy Nguyencuu, M. Piña, I. Porat, J. Prince, A. G. Pessoa, Carlos Salas, James Simmons, Chloe Tovar, Alexandra Ulinski
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引用次数: 0

摘要

本科生仪器项目(USIP)是NASA的一个项目,旨在让本科生参与严谨的科学研究,以创新和培养下一代空间研究专业人员。它现在由休斯顿大学利用当地资源运营。这个以学生为主导的项目,基于5E教学模型,由学生执行,从最初的研究目标构思到科学有效载荷的设计、测试和部署。5E教学模式将学生置于知识构建的中心,而教师则促进与内容的互动并指导探究过程。自2013年以来,该项目不仅是提供STEM教育的有效工具,而且有效地提高了课堂参与度和对空间的兴趣。空间研究本质上是跨学科的,是地球科学、工程和技术的交叉领域。该项目旨在整合工程、技术、物理、材料科学和地球与大气科学,为学生提供一个获得跨学科体验研究的重要机会。除了课堂参与外,学生们还建造了自己的有效载荷和地面仪器。这个项目提高了学生对团队合作、解决问题、技术、沟通、创新和领导等基本技能的掌握。对于教师来说,该项目是专业发展的延伸练习,学习如何在这种规模上实施项目级探究性教育。对于学生来说,这种形成性的经历继续鼓励他们发展比本科学位通常提供的更广泛的技术技能。此外,学生在这个项目中投入的大量时间和精力促进了强烈的个人和职业责任感,并强调了协调一致的团队合作的必要性。在这个过程中,学生们不仅彼此之间建立了宝贵的联系,而且还与更广泛的空间科学界建立了联系。他们经常与USIP结构之外的专业人士合作,并在整个项目期间定期参加会议和学生比赛。本文将介绍一个基于web的脚手架,用于在COVID期间模拟传统的面对面5E体验。学生项目包括大气微量气体化学、雪和沙雪崩动力学的激光雷达研究、极光电子降水、羟基层的重力波调制、寻找平流层微塑料、监测极光无线电发射等。本课程为学分制课程,学制2 - 3年。版权所有©2021由国际宇航联合会(IAF)。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Student Space Missions—Facilitating Pathways to Success for Next Generation Professionals in Space
The Undergraduate Student Instrumentation Project (USIP) was a NASA program created to engage undergraduate students in rigorous scientific research for the purposes of innovation and developing the next generation of professionals in space research. It is now run by the University of Houston using local resources. This student-led project, based on the 5E instructional model, is executed by the students from initial ideation of research objectives to the design, testing, and deployment of scientific payloads. The 5E Instructional model places the student at the center of knowledge building, while instructors facilitate interaction with content and guide the inquiry process. Since 2013, this project has been not only an effective vehicle for delivering STEM education but is also effective in increasing classroom engagement and interest in space. Space research is inherently interdisciplinary and crosscuts Geoscience, Engineering, and Technology. The project is designed to integrate engineering, technology, physics, material science, and earth and atmospheric sciences as an important opportunity for the students to gain access to cross-disciplinary experiential research. In addition to classroom engagement, the students build their own payloads and ground instruments. This project increases students’ command of essential skills such as teamwork, collaboration, problem solving, technology, communication, innovation, and leadership. For the faculty, the project was an extended exercise in professional development, learning how to implement project level inquiry-based education on this scale. For the students, this formative experience continues to encourage the development of a much broader range of technical skills than is typically offered within an undergraduate degree. Furthermore, the extensive time and energy that students commit to this project promotes a strong sense of personal and professional responsibility and emphasizes the necessity of coherent teamwork. Not only do students make valuable connections with each other during this process, but also to the broader space science community. They often work with professionals from outside of the USIP structure, and regularly attend and present at conferences and student competitions throughout the project. This paper will present a web-based scaffolding used to simulate the traditional face to face 5E experience during COVID. Student projects have included subjects ranging from atmospheric trace gas chemistry, LiDAR study of snow and sand avalanche dynamics, auroral electron precipitation, gravity wave modulation of the hydroxyl layer, search for stratospheric microplastics, and monitoring auroral radio emissions, among others. This program is a for-credit course of two to three years duration. Copyright © 2021 by the International Astronautical Federation (IAF). All rights reserved.
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