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Robert C. Schoen; Wendy S. Bray; Amanda M. Tazaz; Charity K. Buntin – Grantee Submission, 2022
Cognitively Guided Instruction (CGI) is a teacher PD program that has been found to have a potentially positive impact on student learning in mathematics through randomized controlled trials. Through a series of grant-funded projects led by FSU, approximately 2,000 Florida teachers have participated in CGI-based professional development in the…
Descriptors: Mathematics Instruction, Teaching Methods, Mathematics Teachers, Faculty Development
Bennett Attaway; John Voiklis – Grantee Submission, 2022
This study examines the effect of Including Neurodiversity in Computational Thinking (INFACT), a collection of material for teaching Computational Thinking (CT) in grades 3-8. CT has many definitions, but all borrow concepts from computer science to structure problem-solving processes more generally. The materials are designed for use in inclusion…
Descriptors: Computation, Thinking Skills, Grade 3, Grade 4
Lynn S. Fuchs; Amelia S. Malone; Kristopher J. Preacher; Eunsoo Cho; Douglas Fuchs; Paul Changas – Grantee Submission, 2022
This study's 1st purpose was to investigate effects of a 4th- and 5th-grade "next-generation" fraction intervention, which included 6 enhancements over a previously validated fraction intervention, designed to address Career- and College-Readiness standards. The next-generation intervention is referred to as "Super Solvers."…
Descriptors: Elementary School Students, Elementary School Mathematics, Fractions, Intervention
McGinnis, J. Randy; Ketelhut, Diane Jass; Mills, Kelly; Hestness, Emily; Jeong, Hannoori; Cabrera, Lautaro – Grantee Submission, 2019
In this study, we described a curricular module on computational thinking (CT) integrated within an undergraduate, senior level elementary science methods course, and developed insights on elementary preservice science teachers' (PSTs) thoughts, feelings, and actions about CT integration. Our research question was: "Following participation in…
Descriptors: Preservice Teachers, Science Teachers, Computation, Thinking Skills
Peter Organisciak; Michele Newman; David Eby; Selcuk Acar; Denis Dumas – Grantee Submission, 2023
Purpose: Most educational assessments tend to be constructed in a close-ended format, which is easier to score consistently and more affordable. However, recent work has leveraged computation text methods from the information sciences to make open-ended measurement more effective and reliable for older students. This study asks whether such text…
Descriptors: Learning Analytics, Child Language, Semantics, Age Differences
Bottge, Brian A.; Ma, Xin; Gassaway, Linda J.; Jones, Megan; Gravil, Meg – Grantee Submission, 2020
Learning to compute with fractions is a major challenge for many students and especially for students with disabilities (SWD). Phase 1 of this study employed a randomized pretest-posttest comparison design to test the effects of two versions of formative assessment combined with an instructional program called Fractions at Work. In one condition,…
Descriptors: Formative Evaluation, Fractions, Computation, Students with Disabilities
Braithwaite, David W.; Pyke, Aryn A.; Siegler, Robert S. – Grantee Submission, 2017
Many children fail to master fraction arithmetic even after years of instruction, a failure that hinders their learning of more advanced mathematics as well as their occupational success. To test hypotheses about why children have so many difficulties in this area, we created a computational model of fraction arithmetic learning and presented it…
Descriptors: Arithmetic, Computation, Models, Mathematics Instruction
Cheng, Yi-Ling; Mix, Kelly S. – Grantee Submission, 2014
We tested whether mental rotation training improved math performance in 6- to 8-year-olds. Children were pretested on a range of number and math skills. Then one group received a single session of mental rotation training using an object completion task that had previously improved spatial ability in children this age (Ehrlich, Levine, &…
Descriptors: Children, Cognitive Processes, Computation, Control Groups
Torbeyns, Joke; Schneider, Michael; Xin, Ziqiang; Siegler, Robert S. – Grantee Submission, 2015
Numerical understanding and arithmetic skills are easier to acquire for whole numbers than fractions. The "integrated theory of numerical development" posits that, in addition to these differences, whole numbers and fractions also have important commonalities. In both, students need to learn how to interpret number symbols in terms of…
Descriptors: Mathematical Concepts, Comprehension, Arithmetic, Numeracy
Thompson, Clarissa A.; Siegler, Robert S. – Grantee Submission, 2010
We investigated the relation between children's numerical-magnitude representations and their memory for numbers. Results of three experiments indicated that the more linear children's magnitude representations were, the more closely their memory of the numbers approximated the numbers presented. This relation was present for preschoolers and…
Descriptors: Teaching Methods, Memory, Numbers, Preschool Children

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