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Kirkland, Patrick K.; McNeil, Nicole M. – Cognitive Science, 2021
Mathematics word problems provide students with an opportunity to apply what they are learning in their mathematics classes to the world around them. However, students often neglect their knowledge of the world and provide nonsensical responses (e.g., they may answer that a school needs 12.5 buses for a field trip). This study examined if the…
Descriptors: Middle School Students, Mathematics Tests, Test Construction, Word Problems (Mathematics)
Simsek, Emine; Xenidou-Dervou, Iro; Hunter, Jodie; Dowens, Margaret Gillon; Pang, JeongSuk; Lee, Yujin; McNeil, Nicole M.; Kirkland, Patrick K.; Jones, Ian – Journal of Educational Psychology, 2022
Many primary school students have difficulties understanding mathematical equivalence with considerably poorer performance in some countries than in others. However, students' formal understanding of equivalence has significant and long-lasting effects, as it predicts arithmetic and algebra achievement throughout school years. Currently, little is…
Descriptors: Mathematics Instruction, Elementary School Students, Mathematical Concepts, Concept Formation
Hornburg, Caroline Byrd; Devlin, Brianna L.; McNeil, Nicole M. – Journal of Educational Psychology, 2022
Does the timing of children's formal understanding of mathematical equivalence matter for algebra readiness? A change-resistance account (McNeil & Alibali, 2005) predicts that it is beneficial for children to construct a formal understanding of mathematical equivalence in the early grades before overly narrow operational patterns become…
Descriptors: Algebra, Readiness, Predictor Variables, Elementary School Students
Hornburg, Caroline Byrd; Wang, Lijuan; McNeil, Nicole M. – Child Development, 2018
A prevailing theory of mathematical problem solving predicts that children will be less accurate solving a + b = c + __ problems versus a + b = __ + c. However, this has never been tested directly. Because of low base rates, information combined from multiple studies can help improve estimation accuracy and precision. This study compared…
Descriptors: Meta Analysis, Accuracy, Problem Solving, Comparative Analysis
McNeil, Nicole M.; Hornburg, Caroline Byrd; Brletic-Shipley, Heather; Matthews, Julia M. – Journal of Educational Psychology, 2019
Elementary school children (ages 7-11) struggle to understand mathematical equivalence, a foundational prealgebraic concept. Some manipulations to the learning environment, including well-structured nontraditional arithmetic practice alone, have been shown to improve children's understanding; however, improvements have been modest. The goal of…
Descriptors: Children, Intervention, Arithmetic, Elementary School Students
Fyfe, Emily R.; Matthews, Percival G.; Amsel, Eric; McEldoon, Katherine L.; McNeil, Nicole M. – Journal of Educational Psychology, 2018
A central understanding in mathematics is knowledge of "math equivalence," the relation indicating that 2 quantities are equal and interchangeable. Decades of research have documented elementary-school (ages 7 to 11) children's (mis)understanding of math equivalence, and recent work has developed a construct map and comprehensive…
Descriptors: Mathematics Instruction, Algebra, Mathematical Concepts, Misconceptions
Fyfe, Emily R.; McNeil, Nicole M.; Rittle-Johnson, Bethany – Child Development, 2015
The labels used to describe patterns and relations can influence children's relational reasoning. In this study, 62 preschoolers (M[subscript age] = 4.4 years) solved and described eight pattern abstraction problems (i.e., recreated the relation in a model pattern using novel materials). Some children were exposed to concrete labels (e.g.,…
Descriptors: Preschool Children, Problem Solving, Logical Thinking, Classification
McNeil, Nicole M.; Rittle-Johnson, Bethany; Hattikudur, Shanta; Petersen, Lori A. – Journal of Cognition and Development, 2010
This study examined if solving arithmetic problems hinders undergraduates' accuracy on algebra problems. The hypothesis was that solving arithmetic problems would hinder accuracy because it activates an operational view of equations, even in educated adults who have years of experience with algebra. In three experiments, undergraduates (N = 184)…
Descriptors: Equations (Mathematics), Arithmetic, Algebra, Problem Solving
McNeil, Nicole M.; Weinberg, Aaron; Hattikudur, Shanta; Stephens, Ana C.; Asquith, Pamela; Knuth, Eric J.; Alibali, Martha W. – Journal of Educational Psychology, 2010
This study examined how literal symbols affect students' understanding of algebraic expressions. Middle school students (N = 322) were randomly assigned to 1 of 3 conditions in which they were asked to interpret an expression (e.g., 4c + 3b) in a story problem. Each literal symbol represented the price of an item. In the c-and-b condition, the…
Descriptors: Middle School Students, Textbooks, Mnemonics, Algebra
Knuth, Eric J.; Alibali, Martha W.; Hattikudur, Shanta; McNeil, Nicole M.; Stephens, Ana C. – Mathematics Teaching in the Middle School, 2008
The equal sign is perhaps the most prevalent symbol in school mathematics, and developing an understanding of it has typically been considered mathematically straightforward. In fact, after its initial introduction during students' early elementary school education, little, if any instructional time is explicitly spent on the concept in the later…
Descriptors: Equations (Mathematics), Algebra, Middle School Students, Mathematics Instruction
McNeil, Nicole M.; Alibali, Martha W. – Child Development, 2005
This study examined whether knowledge of arithmetic contributes to difficulties with equations. In Experiment 1, children (ages 7-11) completed tasks to assess their adherence to 3 operational patterns prevalent in arithmetic: (a) the strategy of performing all given operations on all given numbers, (b) the "operations=answer" problem structure,…
Descriptors: Equations (Mathematics), Arithmetic, Problem Solving
McNeil, Nicole M. – Child Development, 2008
Do typical arithmetic problems hinder learning of mathematical equivalence? Second and third graders (7-9 years old; N= 80) received lessons on mathematical equivalence either with or without typical arithmetic problems (e.g., 15 + 13 = 28 vs. 28 = 28, respectively). Children then solved math equivalence problems (e.g., 3 + 9 + 5 = 6 + __),…
Descriptors: Children, Grade 2, Grade 3, Grade 5
McNeil, Nicole M.; Alibali, Martha W. – Cognitive Science, 2004
This study investigated the roles of problem structure and strategy use in problem encoding. Fourth-grade students solved and explained a set of typical addition problems (e.g., 5 + 4 + 9 + 5 = ?) and mathematical equivalence problems (e.g., 4 + 3 + 6 = 4 + ? or 6 + 4 + 5 = ? + 5). Next, they completed an encoding task in which they reconstructed…
Descriptors: Cognitive Processes, Arithmetic, Grade 4, Problem Solving

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