课题基金 / 基金详情

Increasing and Inspiring Highly Effective Secondary STEM Teachers for High-Need, Culturally Diverse School Districts

Increasing and Inspiring Highly Effective Secondary STEM Teachers for High-Need, Culturally Diverse School Districts
为高需求、文化多元化的学区增加和激励高效的中学 STEM 教师
批准号:
2243169
负责人:
Martha Parrott
金额:
$117.34万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-04-01 至 2028-03-31

项目摘要

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中文摘要
翻译
该项目旨在通过增加俄克拉荷马州东北部农村和城市地区高需求、文化多样性学校中高效的中学STEM教师数量来满足国家需求。国家目前面临教师短缺的问题,包括有资格教授数学、生物、化学和物理的教师。该项目旨在吸引、准备和激励未来的教师选择毕业后任教的不同领域,并将为成绩优异的学生提供20项奖学金,大大减轻成为STEM教师的经济负担。这些未来的教师将通过各种体验式学习机会,加强辅导,夏季研讨会获得增强的编程,毕业后,学者将继续获得高质量的入门支持。该项目的一个创新特点是将教学融入基于地方的教育-让学生沉浸在当地遗产中,作为学习的基础,为STEM教师在高需求学区的职业生涯做好准备。通过利用基于地点的教育和其他有效和吸引人的STEM教学,该项目有望提高学者的学习成果,更好地为他们所教的学生准备大学,并提高这些学生对STEM领域的兴趣和参与度。在五年的时间里,20名本科生将获得奖学金,以获得他们的STEM领域的学士学位,以及俄克拉荷马州中学教学认证。为此,该项目将依靠东北州立大学与两个K-12合作伙伴密切合作:Tahlequah公立学校和联合公立学校。这些伙伴关系为高需求学区的潜在STEM教师的创新准备提供了理想的环境,同时应对教师短缺危机。提高未来教师学习的高质量、基于研究的实践包括体验式学习,这种学习提供了超出所需实习的机会;来自高需求学区的高效实践教师的指导;侧重于最佳实践的讲习班,旨在为未来教师担任教育工作者做好准备;以及由教师和其他STEM专家主持的科学和数学演示讲习班。该项目有可能提高毕业STEM教师的保留率,同时也为未来的劳动力准备了有效的教师。拟议项目的智力价值体现在整合教学以支持教师效能和基于地方的教育及其课程,作为一种创新方式,为STEM教师在高需求学区的职业生涯做好准备。该项目的结果将用于制定基于证据的建议,以加强其他高等教育机构对STEM教育工作者的培训,并调查招聘措施在招聘学者方面的影响以及方案在留住学者,特别是少数民族学者方面的影响。这个轨道1:奖学金和津贴项目是通过罗伯特诺伊斯教师奖学金计划(诺伊斯)的支持。诺伊斯计划支持有才华的STEM本科专业和专业人士成为有效的K-12 STEM教师和经验丰富的模范K-12教师,成为高需求学区的STEM硕士教师。该奖项反映了NSF的法定使命,并通过使用基金会的智力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
This project aims to serve a national need by increasing the number of highly effective secondary STEM teachers in high-need, culturally diverse schools in rural and urban areas of northeastern Oklahoma. The State currently faces teacher shortages, including teachers qualified for instruction in mathematics, biology, chemistry, and physics. This project aims to attract, prepare, and inspire prospective teachers to select diverse areas in which to teach upon graduation and will provide 20 scholarships to high-achieving students, significantly reducing the financial burden of becoming a STEM teacher. These prospective teachers will receive enhanced programming through diverse experiential learning opportunities, enhanced mentoring, summer workshops, and after graduation, scholars will continue to receive high-quality induction support. An innovative feature of the project is its integration of instruction in place-based education - the immersion of students in local heritage as a foundation for learning, to prepare STEM teachers for careers in high-need school districts. By utilizing place-based education and other effective and engaging STEM instruction, this project promises to improve learning outcomes for the Scholars, better prepare the students they teach for college, and increase those students’ interest and engagement in the STEM fields.Over the course of five years, 20 undergraduate students will be awarded scholarships to earn a bachelor’s degree in their STEM fields as well as Oklahoma secondary teaching certification. Towards this end this project will rely on Northeastern State University collaborating closely with two K-12 partners: Tahlequah Public Schools and Union Public Schools. These partnerships provide ideal settings for the innovative preparation of prospective STEM teachers for high-needs school districts while combating the teacher shortage crisis. High quality, research-informed practices to enhance prospective teachers’ learning include experiential learning, which provides opportunities that extend beyond required internships; mentoring by highly effective practicing teachers from high-needs school districts; workshops focusing on best practices with a goal of preparing prospective teachers for their role as educators; and science and mathematics demonstration workshops facilitated by faculty and other STEM experts. This project has the potential to increase retention of graduating STEM teachers while also preparing effective teachers for tomorrow’s workforce. The intellectual merit of the proposed project is embedded in the integration of instruction to support teacher efficacy and in place-based education and its coursework as an innovative way to prepare STEM teachers for careers in high-need school districts. Results of this project will be used to develop evidence-based recommendations for enhancing the training of STEM educators at other higher education institutions and to investigate the impact of recruitment measures in recruiting scholars and the impact of programming in retaining scholars, especially those from minority populations. This Track 1: Scholarships and Stipends project is supported through the Robert Noyce Teacher Scholarship Program (Noyce). The Noyce program supports talented STEM undergraduate majors and professionals to become effective K-12 STEM teachers and experienced, exemplary K-12 teachers to become STEM master teachers in high-need school districts. It also supports research on the persistence, retention, and effectiveness of K-12 STEM teachers in high-need school districts.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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