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Design and Development of Integer Games to Reduce Barriers to Algebra (Collaborative Research: Aqazade)
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Elementary school students' prolonged experiences with positive numbers and operations often lead to their overgeneralizations of rules (e.g., adding always makes larger numbers, subtracting always makes smaller…
Design and Development of Integer Games to Reduce Barriers to Algebra (Collaborative Research: Enzinger)
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Elementary school students' prolonged experiences with positive numbers and operations often lead to their overgeneralizations of rules (e.g., adding always makes larger numbers, subtracting always makes smaller…
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Given the national priority for America's leadership in science, there is a need to strengthen the quality of teaching and learning in science classrooms. This conference brings together researchers,…
Piloting High Quality Instructional Materials in Secondary Science to Foster Instructional Improvements
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Tomorrow's domestic STEM workforce demands that students bring the ability to explain real-world phenomena and solve problems collaboratively. In many school districts, a significant gap persists between this…
CAREER: A Pragmatic, Iterative Approach to Advancing Evidence-based Practices for Preparing and Developing K–12 Science Teachers
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This project addresses a crucial need in K-12 science teacher education to respond to local school district needs for high-quality science teaching and the role of teacher education programs to develop programs…
CAREER: Supporting Metacognition to Strengthen Early Childhood Science Teaching and Learning in Rural Idaho
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Preschool and kindergarten-aged children are still developing the skills needed to reflect on and manage their own thinking, a process often referred to as metacognition. Without strategic support from their…
Designing School District Infrastructures that Support Elementary Science Learning Through Leveraging Students’ Communicative Practices
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Throughout the United States, elementary classrooms include students with a range of communicative practices and strengths, including strengths in speaking one or more languages, and strengths in generating and…
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This project addresses the critical need for improved mathematics education of elementary teachers and their students by preparing and supporting Elementary Mathematics Specialists (EMSs) who are highly…
Professional Learning Resources for Customizing Curricula to Support Elementary Students in Using Full Communicative Repertoires for Scientific Sensemaking (Collaborative Research: González-Howard)
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Scientific sensemaking is core to learning and doing science. Oral and written language, visual and numerical representations, physical models, and other forms of communication are vital to scientific…
Professional Learning Resources for Customizing Curricula to Support Elementary Students in Using Full Communicative Repertoires for Scientific Sensemaking (Collaborative Research: McNeill)
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Scientific sensemaking is core to learning and doing science. Oral and written language, visual and numerical representations, physical models, and other forms of communication are vital to scientific…
Advancing Computational Thinking and Microelectronics Education Through Generative AI Within an Engineering Design Framework
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This project will investigate how recent advances in artificial intelligence can support computational thinking development within an innovative biology curriculum in which students design and program a robotic…
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The growing importance of data, data science and artificial intelligence (AI) in education, work, and personal and civic life has increased the need for all U.S. students to develop data literacy, statistical…
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Rapid changes in computing, especially with advances in artificial intelligence, are reshaping the future needs of society and the demands on the STEM workforce. More than ever, computer science (CS) education…
CAREER: Designing an Elementary After-School Mathematics Program to Expand Conceptions of Mathematics for Teachers and Students
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This project will investigate how to design an after-school mathematics space within a school setting that can challenge and expand both students' and teachers' conceptions of what doing mathematics means and…
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As STEM education researchers work to improve STEM teaching and learning in schools and districts across the nation, rural communities are often overlooked. There is a definite critical need for STEM education…
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Disengagement from mathematics during middle and high school is a widespread concern that contributes to lower academic achievement and diminished long-term participation in STEM fields. Research shows that…
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Coding is a key part of computer science, and promoting opportunities that engage learners in coding is vital to the U.S. workforce development. This project builds upon prior research that created a free coding…
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While simulations are powerful tools for scientific inquiry, most students need scaffolding to engage productively in simulation-based inquiry. This project will develop and study an automated feedback system…
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Significant resources have been invested in workforce development to ensure the world is prepared for the growth of the quantum industry, yet relatively little work has focused on K-12 education. This project…
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This project explores how immersive field science experiences and carefully designed digital resources can help secondary teachers make science more engaging and relatable for students. The research team will…
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Data science is fast becoming a dominant part of scientific, economic, and social scientific reasoning, as well as a necessary perspective for making life decisions that rely on data. But there is little work in…
Centering Families in Mathematics Teacher Preparation: A Conference for Families, PreK-5 Teachers, Mathematics Teacher Educators, and Teacher Candidates
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While family engagement in mathematics is highly predictive of children's mathematical outcomes, teachers' family engagement responsibilities are rarely addressed in teacher preparation programs. This conference…
Designing a Professional Learning Model to Develop Teachers Professional Vision for Integrating Computational Thinking in K-12 Science Courses (Collaborative Research: Witherspoon)
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The goal of this project is to build teacher capacity for integrating computational thinking (CT) into grades 6–8 science classrooms. The project will support teacher professional vision and adaptive expertise…
Designing a Professional Learning Model to Develop Teachers Professional Vision for Integrating Computational Thinking in K-12 Science Courses (Collaborative Research: Greenwald)
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The goal of this project is to build teacher capacity for integrating computational thinking (CT) into grades 6–8 science classrooms. The project will support teacher professional vision and adaptive expertise…
Engaging K-8 Teachers in Integrating Computer Science, AI, and Cybersecurity into Standard-based Teaching (Collaborative Research: Albert)
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As artificial intelligence (AI) becomes increasingly embedded in the technologies used by both students and teachers, it is essential for them to understand how to be safe while using AI. Furthermore, AI and…