综合工程农业STEM计划

Mohamed Gharib, Tala Katbeh, G. B. Cieslinski, Bradley Creel
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引用次数: 0

摘要

大学前基于项目的学习计划是提高学生对STEM(科学、技术、工程和数学)学科和职业兴趣的重要手段。基于工程的项目对学生的兴趣有显著的影响。因此,发展中国家正在战略性地投资,以吸引学生从事STEM领域的职业,特别是工程和医学。这使得他们在STEM领域的教育渠道稳步扩大;虽然这一重点仍然存在,但迫切需要农业、环境科学、生命科学和可持续性方面的专业知识,以支持正在努力为其人口确保独立粮食来源的农业。必须设计新的干预措施,以激发人们对STEM领域更广泛的兴趣,同时提高学生在这些领域深造的学术准备。为了提高人们在STEM领域的能力,已经创建和设计了各种计划,以激发和扩大学生对STEM的好奇心。本文介绍了一个名为“卡塔尔发明”的综合科学工程项目,旨在支持和加强学生对科学概念的学习,同时提高学生对粮食和水安全方面的全球挑战的理解。这与近年来发展中国家希望增加国内农业资源生产的愿望密切相关。卡塔尔发明将吸引学生学习并将基本工程技能应用于相关的现实世界问题:即在水培系统的设计中。卡塔尔发明挑战学生发展批判性思维和解决问题的能力,通过使用工程设计过程解决现代问题。通过动手挑战,建模和沟通培训,学生们有动力解决与食品安全相关的问题,在那里他们创建水培项目。卡塔尔发明的学习目标包括:团队合作,使用适当的工具箱技能,理解什么是工程,头脑风暴的过程,创造成功的创新设计,构建原型,以及发展演讲技巧。在整个项目中,参与者都具备了动手知识和批判性思维技能,帮助他们实现目标。利用工程设计过程,学生们以小组为单位集思广益,创造发明。课程涵盖的主题包括工程笔记本和文档的重要性、工程图形学原理、农业科学基础、水培法基础、头脑风暴实践、决策矩阵的生成、概念的证明和想法的表达。在课程结束时,学生们提出了解决严重问题的新颖方案,其中制作了独特的水培项目并提交给专家小组。该项目试图在发展中国家的STEM教育管道与农业部门人才的新需求之间建立桥梁。所有相关的细节,包括准备、教学材料、原型材料和案例研究都在本文中提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Integrated Engineering Agriculture STEM Program
Pre-college project-based learning programs are essential means to increase the students’ interest toward STEM (science, technology, engineering, and mathematics) disciplines and careers. Engineering-based projects have shown significant impact on the students’ interests. Therefore, developing countries are investing strategically in their emphasis to attract students to careers in STEM fields, specifically engineering and medicine. That resulted in a steady expansion of their educational pipeline in STEM; and while that emphasis remains, there is a new and urgent need for expertise in agriculture, environmental science, life sciences and sustainability to support the agriculture industry, which is working to secure independent sources of food for their population. New interventions must be devised to stimulate broader interest in STEM fields while also increasing students’ academic readiness for advanced studies in those areas. To target the requirement of increasing people’s competencies in STEM fields, various programs have been created and designed to inspire and broaden students’ inquisitiveness toward STEM. This paper presents an integrated science-engineering program, called Qatar Invents, designed to support and enhance students’ learning of science concepts while also increasing students’ understanding of global challenges in food and water security. This goes with close connection to the desire to increase in the domestic production of agricultural resources in developing countries in recent years. Qatar Invents would engage students into learning and applying fundamental engineering skills onto relatable real-world issues: namely, in the design of hydroponics systems. Qatar Invents challenges students to develop critical thinking and problem solving skills in solving modern problems through the use of the engineering design process. With hands-on challenges, modeling, and communication training, students are motivated to tackle problems related to food security where they create hydroponics projects. Qatar Invents’ learning objectives included: teamwork, using proper toolbox skills, understanding what is engineering, the process of brainstorming, creating successful innovative designs, building prototypes, and developing presentation skills. Throughout this program, the participants were equipped with hands-on knowledge and critical thinking skills that helped them achieve their objectives. Utilizing the engineering design process, the students worked in small teams to brainstorm ideas and create inventions. The topics covered during the program included the importance of an engineering notebook and documentation, principals of engineering graphics, basics of agricultural science, foundations of hydroponics, the brainstorming practice, generating a decision matrix, proof of concept, and pitching ideas. At the end of the program, the students came up with novel solutions to serious problems wherein unique hydroponics projects were produced and presented to a panel of experts. This program attempts to build bridges between developing countries’ STEM education pipeline and the new demand of talent in the agriculture sector. All pertinent details including the preparation, instructional materials, prototyping materials, and case studies are presented in this paper.
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