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Liben, Lynn S.; Kastens, Kim A.; Christensen, Adam E. – Cognition and Instruction, 2011
To study the role of spatial concepts in science learning, 125 college students with high, medium, or low scores on a horizontality (water-level) spatial task were given information about geological strike and dip using existing educational materials. Participants mapped an outcrop's strike and dip, a rod's orientation, pointed to a distant…
Descriptors: Student Evaluation, Error Patterns, Spatial Ability, Teaching Methods
Vasilyeva, Marina; Casey, Beth M.; Dearing, Eric; Ganley, Colleen M. – Cognition and Instruction, 2009
In this research, we examined overall performance and gender differences in measurement skills in elementary-school students from low-income families. In Study 1, accuracy and error patterns were analyzed in a large sample of fourth-graders; in Study 2 error patterns and strategy usage were examined with a smaller sample of fourth-graders. Study 1…
Descriptors: Elementary School Students, Grade 4, Spatial Ability, Cognitive Processes

Ben-Zeev, Talia; Star, Jon R. – Cognition and Instruction, 2001
This study investigated whether undergraduate students encode spurious correlations in memory and exhibit them during the learning process leading to ineffectual problem solving. Findings suggested that even experienced students relied on surface-structure feature-algorithm correlations for solving new problems. Findings pose implications for…
Descriptors: Algorithms, Correlation, Encoding (Psychology), Error Patterns

Sebrechts, Marc M.; And Others – Cognition and Instruction, 1996
Examined relations between algebraic word-problem attributes and students' strategies, errors, and problem difficulty. Found that constructed responses capture strategy formulation and high-level planning--as do traditional measures of quantitative reasoning--but are more sensitive to individual problem characteristics and procedural errors that…
Descriptors: Algebra, Cognitive Processes, Difficulty Level, Error Patterns
Rittle-Johnson, Bethany; Koedinger, Kenneth R. – Cognition and Instruction, 2005
We present a methodology for designing better learning environments. In Phase 1, 6th-grade students' (n = 223) prior knowledge was assessed using a difficulty factors assessment (DFA). The assessment revealed that scaffolds designed to elicit contextual, conceptual, or procedural knowledge each improved students' ability to add and subtract…
Descriptors: Prior Learning, Intervention, Mathematics Instruction, Problem Solving