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Rittle-Johnson, Bethany; Star, Jon R.; Durkin, Kelley – British Journal of Educational Psychology, 2012
Background: A key learning outcome in problem-solving domains is the development of procedural flexibility, where learners know multiple procedures and use them appropriately to solve a range of problems (e.g., Verschaffel, Luwel, Torbeyns, & Van Dooren, 2009). However, students often fail to become flexible problem solvers in mathematics. To…
Descriptors: Problem Solving, Grade 8, Teaching Methods, Outcomes of Education
Jitendra, Asha K.; Star, Jon R.; Rodriguez, Michael; Lindell, Mary; Someki, Fumio – Learning and Instruction, 2011
This study investigated the effectiveness of an instructional program (schema-based instruction, SBI) designed to teach 7th graders how to comprehend and solve proportion problems involving ratios/rates, scale drawings, and percents. The SBI program emphasized the underlying mathematical structure of problems via schematic diagrams, focused on a…
Descriptors: Middle School Students, Problem Solving, Grade 7, Thinking Skills
Rittle-Johnson, Bethany; Star, Jon R.; Durkin, Kelley – Journal of Educational Psychology, 2009
Comparing multiple examples typically supports learning and transfer in laboratory studies and is considered a key feature of high-quality mathematics instruction. This experimental study investigated the importance of prior knowledge in learning from comparison. Seventh- and 8th-grade students (N = 236) learned to solve equations by comparing…
Descriptors: Mathematics Instruction, Mathematics Education, Methods, Prior Learning
Rittle-Johnson, Bethany; Star, Jon R. – Journal of Educational Psychology, 2007
Encouraging students to share and compare solution methods is a key component of reform efforts in mathematics, and comparison is emerging as a fundamental learning mechanism. To experimentally evaluate the effects of comparison for mathematics learning, the authors randomly assigned 70 seventh-grade students to learn about algebra equation…
Descriptors: Mathematics Instruction, Concept Formation, Mathematical Concepts, Educational Change