Project Grant 2200918

Award Date 8/1/22
Completion Date 7/31/26
Dollars Obligated $200K
Federal Grant Program
47.076
Assistance Type
Project Grant
Place of Performance
Salem, MA 01970, USA
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This National Science Foundation (NSF) STEM Education program (CFDA 47.076) grant award of $849,931 provides funding to the University of Virginia to support middle school teachers in customizing and enacting an integrated science, engineering, and computational modeling curriculum unit. The project aims to develop a better understanding of the supports teachers need to adapt science curricular materials to different classroom, school, and community contexts. Through a participatory design...
This National Science Foundation (NSF) STEM Education Program (CFDA 47.076) Project Grant award of $242,667 to the University of Colorado Boulder, Colorado School of Mines, and the Aurora Public Schools will establish and study a new Research Practice Partnership (RPP) focused on fostering the success of computing educators at the elementary level. The project aims to: Understand how participation in this RPP cohort influences elementary STEM teachers' capacity to teach computing concepts and...
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 Project Grant award from the National Science Foundation's (NSF) STEM Education program (CFDA 47.076) aims to empower middle school teachers to integrate computational thinking (CT) into their science classrooms. The $564,135 award to North Carolina State University will fund the co-design and testing of 28 new CT-integrated science activities, provide professional development on CT in science for 84 teachers, and iteratively co-design and test an AI-powered tool to support teachers in...
This National Science Foundation Project Grant award in the amount of $479,970.00 supports the "Collaborative Research: Modeling Inclusive Computational Thinking Instruction: Video Cases for Developing Teacher Knowledge" project. Led by Michigan State University in partnership with the non-profit Digital Promise, the project aims to: Develop a professional development approach using a library of vetted video cases to build elementary teachers' competencies in integrating...
This $293,356 federal Project Grant award from the National Science Foundation's STEM Education program (CFDA 47.076) supports a collaborative research project to help middle school teachers customize an integrated science, engineering, and computational thinking curriculum unit. The project aims to understand the supports teachers need to adapt computationally-rich, Next Generation Science Standards-aligned curricular materials for their specific classroom and community contexts. Through this...
This Project Grant of $308,277 was awarded by the National Science Foundation's STEM Education program (CFDA 47.076) to Digital Promise Global, a non-profit organization, to develop a professional development approach using a library of vetted video cases. The goal is to build elementary teachers' capacity for inclusive computational thinking (CT) integration within their core instruction in subjects like math, science, and language arts. The project will partner with urban and rural school...
This four-year, $1,779,377 project grant from the National Science Foundation's Computer and Information Science and Engineering program aims to scale inclusive computing pathways through a collaborative effort between Digital Promise Global and eight diverse school districts across the United States. The partnership will create a professional learning community for district administrators and instructors to develop skills and support systems for implementing cumulative, consistent, and...
The National Science Foundation (NSF) awarded a $159,964 Project Grant under the STEM Education (CFDA 47.076) program to Indiana University to prepare preservice elementary teachers to incorporate computational thinking into their science instructional practices. The project aims to develop and implement a computational thinking-infused curriculum in science methods courses, co-design and pilot science lessons in schools where preservice teachers are placed, and investigate the impact on...
The National Science Foundation (NSF) awarded a $653,723 project grant under its Discovery Research PreK-12 (DRK-12) program to the University of Illinois. The 4-year project will develop and test a professional development model that empowers high school science teachers to adapt curriculum materials to integrate students' knowledge and community resources. Working with education researchers, teachers, scientists, and community organizations, the project teams will go through cycles of...

COLLABORATIVE RESEARCH: DESIGNING COMPUTATIONAL MODELING CURRICULA ACROSS SCIENCE SUBJECTS TO STUDY HOW REPEATED ENGAGEMENT IMPACTS STUDENT LEARNING THROUGHOUT HIGH SCHOOL -COMPUTATIONAL THINKING IS BECOMING AN ESSENTIAL PART OF WHAT STUDENTS NEED TO KNOW AS COMPUTER SCIENCE AND DATA SCIENCE ARE MORE EMBEDDED IN STEM CAREERS AND DAILY LIFE. COMPUTATIONAL THINKING IS THE PROCESS OF USING TOOLS FROM COMPUTER SCIENCE TO SOLVE AND ANALYZE PROBLEMS. THE FOCUS OF THIS PROJECT IS THE DESIGN OF LEARNING EXPERIENCES IN DIFFERENT HIGH SCHOOL SCIENCE COURSES TO HELP STUDENTS GAIN EXPERIENCE IN COMPUTATIONAL THINKING. THE PROJECT USES A PARTNERSHIP BETWEEN TWO UNIVERSITIES AND SCHOOL DISTRICT TO DEVELOP AND REFINE THE UNITS AS A COLLABORATION BETWEEN RESEARCHERS, TEACHERS, AND SCHOOL LEADERS. THE GOAL IS TO HELP ALL STUDENTS HAVE OPPORTUNITIES TO LEARN ABOUT COMPUTATIONAL THINKING IN MULTIPLE SCIENCE COURSES. THE RESEARCH AND PRACTICE PARTNERSHIP BETWEEN THE UNIVERSITIES AND THE SCHOOL DISTRICT WILL ADDRESS TWO PROBLEMS OF PRACTICE AT THE HIGH SCHOOL LEVEL. FIRST, STUDENTS WILL ENGAGE IN COMPUTATIONAL MODELING IN SCIENCE CLASSES TO PROVIDE ALL STUDENTS OPPORTUNITIES TO LEARN COMPUTATIONAL THINKING. SECOND, TEACHERS WILL HAVE THE OPPORTUNITY TO LEARN MORE ABOUT THE NEXT GENERATION SCIENCE STANDARDS (NGSS) AND DEVELOP CURRICULUM TO SUPPORT THE STANDARDS. THE PROJECT WILL CREATE UNITS FOR FOUR SCIENCE SUBJECTS AND INVESTIGATE THE DESIGN AND IMPLEMENTATION OF THOSE UNITS. USING DESIGN-BASED IMPLEMENTATION RESEARCH, THE PROJECT HAS THREE RESEARCH QUESTIONS THAT FOCUS ON THE DESIGN OF THE UNITS AND WHAT STUDENTS AND TEACHERS LEARN IN THE PROCESS.. (1) HOW AND UNDER WHAT CONDITIONS DOES ENGAGING IN COMPUTATIONAL MODELING PRACTICES (CMPS) THROUGH THE DESIGNED UNITS IN ONE COURSE LEAD TO SHIFTS IN: LEARNING OF DISCIPLINARY CORE IDEAS AND CROSS-CUTTING CONCEPTS, COMPUTATIONAL MODELING PRACTICES (CMPS) , AND ATTITUDES TOWARDS SCIENCE AND COMPUTATION? (2) HOW AND UNDER WHAT CONDITIONS DOES REPEATED EXPOSURE TO CMPS ACROSS SCIENCE COURSES IMPACT STUDENT LEARNING? (3) HOW DO TEACHERS SEE THE ROLE OF PROFESSIONAL DEVELOPMENT IN PREPARING THEM TO USE THE CURRICULA? (4) HOW AND WHY DO THEY ADAPT THE CURRICULA TO FIT THEIR CLASSROOMS? (4) WHAT KINDS OF DESIGN SUPPORTS DO STUDENTS AND TEACHERS NEED TO USE THESE UNITS? (5) HOW CAN WE DESIGN A COLLECTION OF COMPUTATIONAL MODELING UNITS THAT INTEGRATE 3-DIMENSIONAL NGSS LEARNING WITH COMPUTATIONAL THINKING PRACTICES FOR MULTIPLE SUBJECTS? THE DATA COLLECTION WILL INCLUDE CLASSROOM OBSERVATIONS AND VIDEOS, SURVEYS OF TEACHERS AND STUDENTS, MEASURES OF STUDENTS? LEARNING, THE PROJECT WILL ALSO GATHER LOG DATA FROM THE STARLOGO NOVA PLATFORM THAT IS BEING USED AS A TOOL FOR COMPUTATIONAL MODELING AND SIMULATION IN THE UNITS. THE DISCOVERY RESEARCH PREK-12 PROGRAM (DRK-12) SEEKS TO SIGNIFICANTLY ENHANCE THE LEARNING AND TEACHING OF SCIENCE, TECHNOLOGY, ENGINEERING AND MATHEMATICS (STEM) BY PREK-12 STUDENTS AND TEACHERS, THROUGH RESEARCH AND DEVELOPMENT OF INNOVATIVE RESOURCES, MODELS AND TOOLS. PROJECTS IN THE DRK-12 PROGRAM BUILD ON FUNDAMENTAL RESEARCH IN STEM EDUCATION AND PRIOR RESEARCH AND DEVELOPMENT EFFORTS THAT PROVIDE THEORETICAL AND EMPIRICAL JUSTIFICATION FOR PROPOSED PROJECTS.? 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.

Posted 7/29/22, 12:00 AM