Project Grant 2451843
- This collaborative research project, funded by the National Science Foundation (NSF) Division of Undergraduate Education under the STEM Education program (CFDA 47.076), delivers comparative instructional development and evaluation services designed to improve preservice STEM teacher preparation. The award of $575,142, initiated October 1, 2025, and concluding September 30, 2029, supports the development and assessment of two instructional modalities: Virtual Reality Artificial Intelligence (VR...
- The National Science Foundation (NSF) awarded a $1,999,680 Project Grant under its STEM Education (CFDA 47.076) program to the University of Southern California (USC) to develop an "Intelligent, Adaptive Program with Just-in-Time Feedback for Preservice Teachers." This program aims to improve preservice teachers' evidence-based teaching practices, mathematical content knowledge, pedagogical content knowledge, and teaching skills related to ratios and proportional relationships...
- This $599,971 National Science Foundation project grant under the STEM Education program (CFDA 47.076) supports the development of case-based scenarios to enhance pre-service elementary teachers' enactment of equitable mathematics and science instruction. In collaboration with in-service teachers from diverse backgrounds, the University of Utah will design cases capturing authentic classroom situations addressing students' cultural resources and experiences. These cases will be implemented in...
- This Project Grant award from the National Science Foundation's (NSF) Innovative Technology Experiences for Students and Teachers (ITEST) program (CFDA 47.076) will pilot a curriculum to prepare pre-service teachers in understanding the fundamentals of generative artificial intelligence (AI) and its potential teaching applications. The $199,996 award to Michigan State University will examine the impact of this curriculum on developing pre-service teachers' competencies, including their...
- This $125,643 National Science Foundation project grant supports research on integrated STEM self-efficacy among elementary preservice teachers. Funded under the Science, Technology, Engineering and Mathematics Education (formerly Education and Human Resources) program (CFDA 47.076), the award involves a collaborative effort between Southern Methodist University, University of Nebraska-Lincoln, Towson University, Indiana University Southeast, University of Massachusetts-Boston, Sacred Heart...
- This Project Grant award from the National Science Foundation (NSF) under the STEM Education program (CFDA 47.076) aims to investigate the impact of engaging teacher candidates and new teachers in video-based analysis of STEM classrooms. The goal is to build their skills in noticing inclusive approaches to STEM teaching, with the potential to improve the effectiveness and retention of STEM teachers in high-need schools. The $117,457 award supports a collaborative research project led by Kennesaw...
- This National Science Foundation project grant of $499,954 awarded in September 2022 will fund Education Development Center, Inc. to research tools supporting the school-wide integration of computational thinking at the elementary school level. The award is provided through the Science, Technology, Engineering and Mathematics Education program (CFDA 47.076), which aims to ensure the vitality of the Nation's STEM education. Under the grant, Education Development Center will create tools for...
- This $300,000 two-year project grant from the National Science Foundation's STEM Education program (CFDA 47.076) will fund research at Carnegie Mellon University to develop a "Professional Informatics" (Pro-I) system using classroom sensing technologies. The goal is to provide instructors personalized feedback on their teaching practices to help create more equitable learning experiences, especially to increase underrepresented student participation in STEM fields. The project will...
- This three-year, $999,806 project grant from the National Science Foundation's STEM Education program (CFDA 47.076) supports the development and dissemination of computational thinking (CT) resources and professional learning experiences for K-5 teachers. Awarded to Southern Oregon University on October 1, 2022 and set to be completed by September 30, 2025, the grant enables a research-practitioner partnership involving 20 teachers. The partnership will examine how CT concepts become more...
- This Project Grant award from the National Science Foundation (NSF) under its STEM Education (CFDA 47.076) program aims to address the critical shortage of qualified math and science teachers in rural and underserved K-12 school systems. With a total funding of $725,102, the University of West Alabama is leading a 5-year initiative to recruit, train, and support 29 new STEM teachers. Key components include: Providing financial aid, accelerated teacher certification pathways, and specialized STEM...
TEACHING SCIENCE WITH COMPUTATIONAL THINKING: PREPARING PRESERVICE ELEMENTARY EDUCATORS OF THE FUTURE STEM WORKFORCE -THIS PROJECT AIMS TO SERVE THE NATIONAL INTEREST OF IMPROVING SCIENCE TEACHING AT THE ELEMENTARY LEVEL BY INFUSING A CRITICAL COMPUTATIONAL THINKING PERSPECTIVE INTO THE SCIENCE METHODS COURSES AND FIELD PLACEMENT EXPERIENCES OF ELEMENTARY LEVEL PRESERVICE TEACHERS. COMPUTATIONAL THINKING IS A MEANS TO UNDERSTAND AND SOLVE COMPLEX PROBLEMS USING COMPUTER SCIENCE CONCEPTS. DESPITE ITS INCREASING IMPORTANCE, AS REFLECTED IN NATIONAL STANDARDS AND INITIATIVES, NO SINGLE PRESERVICE TEACHER PREPARED TO TEACH COMPUTATIONAL THINKING HAS GRADUATED FROM THE TEACHER EDUCATION PROGRAMS IN WEST VIRGINIA, AND THE SITUATION NATIONALLY IS SIMILARLY CHALLENGING. MOST OFTEN, A SOLE FOCUS ON COMPUTER SCIENCE PROVIDES NO EXPLICIT CONNECTION TO DISCIPLINARY CLASSROOM SETTINGS AND STUDENT CONTEXT, MISSING IMPORTANT OPPORTUNITIES FOR PRESERVICE TEACHERS TO RECOGNIZE WHAT COMPUTATIONAL THINKING MAY MEAN IN THEIR FUTURE CLASSROOMS. WITHOUT SYSTEMIC CHANGES IN TEACHER EDUCATION, PRESERVICE TEACHERS ARE LIKELY TO DEVELOP INSUFFICIENT LEVELS OF UNDERSTANDING OF AND INTEREST IN THE COMPUTATIONAL NATURE OF SCIENCE. CONSEQUENTLY, PRESERVICE TEACHEERS WILL BE LIMITED IN PROVIDING THEIR STUDENTS WITH IMPORTANT KNOWLEDGE AND SKILLS NECESSARY TO PARTICIPATE IN THE WORKFORCE OF THE FUTURE. TO ADDRESS THE ISSUE, THIS PROJECT AIMS TO DEVELOP AND IMPLEMENT A COMPUTATIONAL THINKING-INFUSED CURRICULUM IN SCIENCE METHODS COURSES. THE PROJECT INTENDS TO CO-DESIGN AND PILOT SCIENCE LESSONS IN SCHOOLS WHERE ELEMENTARY PRESERVICE TEACHERS ARE PLACED. THE RESEARCH AGENDA OF THE PROJECT IS DESIGNED TO INVESTIGATE THE IMPACT OF THE EFFORTS ON THE TEACHING OF PRESERVICE TEACHERS. BY THE END OF THE PROJECT, THE PARTICIPATING PRESERVICE TEACHERS ARE EXPECTED TO KNOW, PRACTICE, AND TEACH CRITICAL COMPUTATION THINKING-INFUSED SCIENCE LESSONS. PROJECT ACTIVITIES ARE ANTICIPATED TO RESULT IN A MODEL AND A SET OF RESOURCES THAT CAN BE TESTED AND USED IN TEACHER EDUCATION NATIONWIDE TO CULTIVATE PRESERVICE TEACHERS? COMPUTATIONAL THINKING-ENHANCED STEM LEARNING AND TEACHING. THE OVERARCHING GOAL OF THE PROJECT IS TO HELP PRESERVICE TEACHERS DEVELOP INTEREST, COMPETENCE, AND A POSITIVE PERCEPTION OF THE UTILITY VALUE FOR INCORPORATING CRITICAL COMPUTATIONAL THINKING INTO THEIR SCIENCE INSTRUCTIONAL PRACTICES. PROJECT RESEARCH QUESTIONS FOCUS ON MEASURING THESE CONSTRUCTS AND IDENTIFYING COMPUTATIONAL THINKING PRACTICES AND PROCESSES EXEMPLIFIED IN PRESERVICE TEACHERS? TEACHING EFFORTS OVER TIME. APPROXIMATELY 100 PRESERVICE TEACHERS, ENROLLED IN SCIENCE METHODS COURSES IN THE BACHELOR OF ARTS IN ELEMENTARY EDUCATION PROGRAM OF WEST VIRGINIA UNIVERSITY ARE INTENDED TO PARTICIPATE OVER TWO YEARS. PRESERVICE TEACHERS ARE INTENDED TO HAVE THE OPPORTUNITY TO PRACTICE, DESIGN, AND TEACH CONTEXTUALIZED SCIENCE LESSON UNITS THAT INTEGRATE BOTH COMPUTATIONAL THINKING PROCESSES AND PRACTICES WITH THE 5E INSTRUCTIONAL MODEL, A WIDELY ACCEPTED CONSTRUCTIVIST, INQUIRY-BASED INSTRUCTIONAL MODEL FOR TEACHING SCIENCE. PROJECT RESEARCH AIMS TO DETERMINE THE IMPACT OF COMPUTATIONAL THINKING-INFUSED ACTIVITIES ON PRESERVICE TEACHERS? MOTIVATIONS AND TEACHING. THEN THE PROJECT INTENDS TO EMPLOY A RESEARCH-PRACTITIONER PARTNERSHIP PERSPECTIVE DURING FULL-TIME PRESERVICE TEACHER PLACEMENT EXPERIENCES. SELECTED PRESERVICE TEACHERS ARE TO BE INVOLVED IN ITERATIVELY CO-DESIGNING, WITH MULTIPLE STAKEHOLDERS FROM THE LOCAL EDUCATION COMMUNITY, PILOTING, AND TESTING COMPUTATIONAL THINKING-INFUSED SCIENCE LESSON UNITS IN PLACEMENT CLASSROOMS. THROUGH THE DISSEMINATION OF PROJECT ACTIVITIES, RESEARCH OUTCOMES REGARDING HOW TO INTEGRATE A CRITICAL COMPUTATIONAL THINKING LENS WITH THE 5E MODEL, AND DEVELOPED MATERIALS, THIS PROJECT INTENDS NOT ONLY TO HELP DEVELOP PRESERVICE TEACHERS? UNDERSTANDING OF AND INTEREST IN THE COMPUTATIONAL NATURE OF SCIENCE TEACHING BUT ALSO LIKELY ENABLE TEACHER EDUCATORS AND IN-SERVICE TEACHERS NATIONWIDE TO RECOGNIZE ITS RELEVANCE TO PEDAGOGY, CONTENT, AND CONTEXT, CONTRIBUTING TO STUDENTS? PREPARATION TOWARD FUTURE STEM WORKFORCE. 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. PARTIAL FUNDING IS FROM THE ROBERT NOYCE TEACHER SCHOLARSHIP PROGRAM. 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.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $160.0k | 2/4/25 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
10429S | West Virginia University Research Corporation | Project Grant 2451843 | $96.3k | 4/22/25 |