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Lauren Shapiro – ProQuest LLC, 2024
In 2 experiments, I studied the effects of an Equivalence Based Instruction (EBI) math intervention on the emergence of untaught selection responses and abstraction to production responses. In Experiment I, using a multiple baseline design, I implemented the EBI intervention among a group of 17 first grade participants with varying levels of math…
Descriptors: Mathematics Instruction, Intervention, Grade 1, Addition
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Angelika Kullberg; Camilla Björklund; Ulla Runesson Kempe; Irma Brkovic; Maria Nord; Tuula Maunula – Educational Studies in Mathematics, 2024
Learning to calculate with natural numbers by structuring seems promising but how this can be taught in a sustainable manner remains an open question. An eight-month-long intervention based on the idea of using a structural approach to addition and subtraction, and particularly bridging through ten, was implemented in four Swedish first-grade…
Descriptors: Student Improvement, Addition, Subtraction, Mathematics Instruction
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Whitacre, Ian; Schoen, Robert C.; Champagne, Zachary; Goddard, Andrea – Teaching Children Mathematics, 2017
Data (Schoen et al. 2016) suggests that because many students' understanding of subtraction is limited by thinking about the operation only as take-away or by using a default procedure, such as the standard subtraction algorithm in the United States, second graders are much more likely to solve 100 minus 3 correctly than 201 minus 199. This…
Descriptors: Mathematics Instruction, Mathematical Concepts, Subtraction, Concept Formation
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Baroody, Arthur J. – PNA, 2016
Six widely used US Grade 1 curricula do not adequately address the following three developmental prerequisites identified by a proposed learning trajectory for the meaningful learning of the subtraction-as-addition strategy (e.g., for 13-8 think "what + 8 = 13?"): (a) reverse operations (adding 8 is undone by subtracting 8); (b) common…
Descriptors: Grade 1, Elementary School Mathematics, Arithmetic, Addition
Whitacre, Ian; Schoen, Robert C.; Champagne, Zachary; Goddard, Andrea – Grantee Submission, 2016
How much is 41 - 39? How about 100 - 3? Which of those computations was easier for you to do? It so happens that first graders are much more likely to solve 100 - 3 correctly than 41 - 39. Likewise, second graders are much more likely to solve 100 - 3 correctly than 201 - 199. Our data (Schoen et al. 2016) suggest that the latter problems are more…
Descriptors: Mathematics Instruction, Mathematical Concepts, Subtraction, Concept Formation
Baroody, Arthur J.; Purpura, David J.; Eiland, Michael D.; Reid, Erin E. – Society for Research on Educational Effectiveness, 2012
Subtraction combinations are particularly challenging for children to learn (Kraner, 1980; Smith, 1921; see Cowan, 2003, for a review). This study examines whether the group of children receiving the "experimental subtraction-as-addition" training outperform the "control" group, which received training on a different reasoning…
Descriptors: Instructional Effectiveness, Evidence, Subtraction, Effect Size
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Superfine, Alison Castro; Canty, Reality S.; Marshall, Anne Marie – Journal of Mathematical Behavior, 2009
The study described herein represents an initial, exploratory attempt to understand what it means to translate between external representation systems. Researchers have traditionally considered translation as an all-or-none activity. We hypothesize that translation is comprised of both knowledge and skill components, and accordingly construe…
Descriptors: Grade 1, Subtraction, Mathematics, Interviews
Karp, Karen; Caldwell, Janet; Zbiek, Rose Mary; Bay-Williams, Jennifer – National Council of Teachers of Mathematics, 2011
What is the relationship between addition and subtraction? How do individuals know whether an algorithm will always work? Can they explain why order matters in subtraction but not in addition, or why it is false to assert that the sum of any two whole numbers is greater than either number? It is organized around two big ideas and supported by…
Descriptors: Subtraction, Mathematics Instruction, Addition, Mathematical Concepts
Common Core State Standards Initiative, 2011
For over a decade, research studies of mathematics education in high-performing countries have pointed to the conclusion that the mathematics curriculum in the United States must become substantially more focused and coherent in order to improve mathematics achievement in this country. To deliver on the promise of common standards, the standards…
Descriptors: Mathematics Curriculum, Mathematics Education, State Standards, Mathematics Achievement