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Chen, Ouhao; Woolcott, Geoff; Kalyuga, Slava – Educational and Developmental Psychologist, 2021
In cognitive load theory, the superiority of the Example-Problem sequence over the Problem-Example sequence has become a classic paradigm. The comparative effectiveness of these sequences, however, is subject to the influence of the factors of element interactivity and prior knowledge, and studies have examined these influences focused mostly on…
Descriptors: Problem Solving, Cognitive Processes, Difficulty Level, Concept Formation
Jayanthi, Madhavi; Gersten, Russell; Schumacher, Robin F.; Dimino, Joseph; Smolkowski, Keith; Spallone, Samantha – Exceptional Children, 2021
Using a randomized controlled trial, we examined the effect of a fractions intervention for students experiencing mathematical difficulties in Grade 5. Students who were eligible for the study (n = 205) were randomly assigned to intervention and comparison conditions, blocked by teacher. The intervention used systematic, explicit instruction and…
Descriptors: Grade 5, Elementary School Students, Fractions, Mathematical Concepts
Bundock, Kaitlin; Callan, Gregory L.; Longhurst, David; Rolf, Kristen R.; Benney, Chandler M.; McClain, Maryellen Brunson – Insights into Learning Disabilities, 2021
Research on mathematics interventions for college students with learning disabilities (LD) is sparse, yet mathematics is critical for post-secondary success. Prior research indicates that many effective strategies for teaching mathematics to secondary students with LD (e.g., manipulatives and cognitive strategies) can also improve the mathematics…
Descriptors: Mathematics Instruction, College Students, Students with Disabilities, Learning Disabilities
Richter, Juliane; Lachner, Andreas; Jacob, Leonie; Bilgenroth, Friederike; Scheiter, Katharina – Journal of Computer Assisted Learning, 2022
Background: Engaging students in computer-assisted guided inquiry learning has great potential to scaffold their scientific understanding: Students are expected to improve their scientific problem-solving skills, and at the same time gain a deep conceptual understanding of the subject-matter. Additional generative activities such as creating video…
Descriptors: Self Concept, Problem Solving, Video Technology, Computer Assisted Instruction
Park, Soyoung; Bryant, Diane Pedrotty; Dougherty, Barbara – Intervention in School and Clinic, 2021
This article presents a checklist of 10 evidence-based practices for educators to apply in mathematics instruction for students with learning disabilities. The checklist is "actionable," meaning the items on the checklist can be put into action immediately. It provides practical strategies teachers can adopt to fit their lessons…
Descriptors: Mathematics Instruction, Teaching Methods, Students with Disabilities, Evidence Based Practice
Soleas, Eleftherios; Bolden, Ben – Canadian Journal of Education, 2020
Past innovation research has focused on business contexts and prodigy, leaving the insights of today's successful innovators in a range of fields overlooked in their utility to inform the education of our next generation of innovators. This mixed method study combined surveys (n = 500) and interviews (n = 30) of Canadian innovators to identify…
Descriptors: Foreign Countries, Educational Innovation, Capacity Building, Motivation
Bundock, Kaitlin; Hawken, Leanne S.; Kiuhara, Sharlene A.; O'Keeffe, Breda V.; O'Neill, Robert E.; Cummings, Margarita B. – Learning Disability Quarterly, 2021
Implementing an integrated sequence of concrete-representational-abstract depictions of mathematics concepts (CRA-I) can improve the mathematics achievement of students with disabilities, and explicit instructional strategies involving problem-solving heuristics and student verbalizations can help facilitate students' conceptual understanding of…
Descriptors: High School Students, Students with Disabilities, Problem Solving, Mathematics Instruction
Weaver, Joanna P. – ProQuest LLC, 2019
This study tested the hypothesis that exploratory learning, with and without analogous problems, would improve students' ability to make connections between conceptually-related topics. In this randomized experiment, undergraduates in introductory physics (N = 171) studied a new topic under three different instructional conditions. Order and type…
Descriptors: Undergraduate Students, Science Instruction, College Science, Physics
Yakubova, Gulnoza; Hughes, Elizabeth M.; Baer, Briella L. – Preventing School Failure, 2020
With the increasing attention and surge of empirical research in providing academic instruction for students with autism spectrum disorder (ASD) comes the need to provide teachers with research-supported strategies. Using one evidence-based strategy for teaching mathematics to students with high incidence disabilities, and another for teaching…
Descriptors: Autism, Pervasive Developmental Disorders, Video Technology, Mathematics Instruction
Rittle-Johnson, Bethany; Fyfe, Emily R.; Loehr, Abbey M. – British Journal of Educational Psychology, 2016
Background: Students, parents, teachers, and theorists often advocate for direct instruction on both concepts and procedures, but some theorists suggest that including instruction on procedures in combination with concepts may limit learning opportunities and student understanding. Aims: This study evaluated the effect of instruction on a math…
Descriptors: Direct Instruction, Teaching Methods, Mathematics Instruction, Mathematical Concepts
Horiguchi, Tomoya; Tomoto, Takahito; Hirashima, Tsukasa – Research and Practice in Technology Enhanced Learning, 2015
In science education, conventional problem practice hardly helps students reach "conceptual understanding" with which they can solve various problems by making appropriate models of target systems. Students often superficially read the solution of a problem and apply it wrongly to others without understanding the model. It is difficult…
Descriptors: Concept Formation, Problem Solving, Models, Guidelines
Kapur, Manu – Cognitive Science, 2014
When learning a new math concept, should learners be first taught the concept and its associated procedures and then solve problems, or solve problems first even if it leads to failure and then be taught the concept and the procedures? Two randomized-controlled studies found that both methods lead to high levels of procedural knowledge. However,…
Descriptors: Failure, Mathematical Concepts, Problem Solving, Mathematics Instruction
Kapur, Manu – Learning: Research and Practice, 2015
I advance a theoretically and empirically-grounded case for designing for and learning from failure, and instantiate it in a learning design called Productive Failure (PF). I describe the key mechanisms and the design principles of PF. The PF learning design comprises a generation and exploration phase followed by a consolidation and knowledge…
Descriptors: Failure, Learning, Instructional Design, Concept Formation
Kingsdorf, Sheri; Krawec, Jennifer – Cogent Education, 2016
Though research on effective instruction in math word problem solving is prominent at the middle and secondary levels, much less work has been done in elementary grades. In this article, we review the research on varied problem-solving instructional interventions at the third-grade level for students across ability levels. Third grade was chosen…
Descriptors: Elementary School Mathematics, Elementary School Students, Primary Education, Grade 3
Hodgen, Jeremy; Foster, Colin; Marks, Rachel; Brown, Margaret – Education Endowment Foundation, 2018
This document presents a review of evidence commissioned by the Education Endowment Foundation to inform the guidance document "Improving Mathematics in Key Stages Two and Three" (Education Endowment Foundation, 2017). The review draws on a substantial parallel study by the same research team, funded by the Nuffield Foundation, which…
Descriptors: Mathematics Instruction, Foreign Countries, Mathematics Skills, Feedback (Response)