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Can, Bilge Taskin; Gunhan, Berna Canturk; Erdal, Sevinc Ongel – EURASIA Journal of Mathematics, Science & Technology Education, 2012
In this study, an instrument, Using Mathematics in Science Self-efficacy Scale (UMSSS), was developed in order to determine preservice science teachers' self-efficacy toward the use of mathematics in their lessons. Data gathered from 250 preservice science teachers were used for Exploratory Factor Analysis (EFA) and Confirmatory Factor Analysis…
Descriptors: Factor Analysis, Self Efficacy, Science Teachers, Measurement
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Heine, Angela; Thaler, Verena; Tamm, Sascha; Hawelka, Stefan; Schneider, Michael; Torbeyns, Joke; De Smedt, Bert; Verschaffel, Lieven; Stern, Elsbeth; Jacobs, Arthur M. – Infant and Child Development, 2010
To date, a number of studies have demonstrated the existence of mismatches between children's "implicit" and "explicit" knowledge at certain points in development that become manifest by their gestures and gaze orientation in different problem solving contexts. Stimulated by this research, we used eye movement measurement to…
Descriptors: Age, Eye Movements, Achievement, Human Body
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Robinson, Katherine M.; Dube, Adam K. – Journal of Experimental Child Psychology, 2009
After the onset of formal schooling, little is known about the development of children's understanding of the arithmetic concepts of inversion and associativity. On problems of the form a+b-b (e.g., 3+26-26), if children understand the inversion concept (i.e., that addition and subtraction are inverse operations), then no calculations are needed…
Descriptors: Grade 2, Grade 3, Grade 4, Subtraction
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Chandler, Cynthia C.; Kamii, Constance – Journal for Research in Mathematics Education, 2009
The purpose of this study was to investigate children's construction of 10s out of the 1s they have already constructed. It was found that, for many younger children, a dime was something different from 10 pennies even though they could say with confidence that a dime was worth 10 cents. As the children grew older, their performance improved.…
Descriptors: Problem Solving, Arithmetic, Number Concepts, Children
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Kim, Min Kyeong; Noh, Sunsook – EURASIA Journal of Mathematics, Science & Technology Education, 2010
A focus on mathematical understanding and problem solving in math education has developed a need to implement alternate ways of testing to better assess the students' understanding and problem solving skills. The seventh national school curriculum (MOE, 1997) for mathematics in Korea was revised to the current curriculum (MOEHRD, 2007) to…
Descriptors: International Schools, Student Evaluation, Alternative Assessment, Problem Solving
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Meyer, M. L.; Salimpoor, V. N.; Wu, S. S.; Geary, D. C.; Menon, V. – Learning and Individual Differences, 2010
The contribution of the three core components of working memory (WM) to the development of mathematical skills in young children is poorly understood. The relation between specific WM components and Numerical Operations, which emphasize computation and fact retrieval, and Mathematical Reasoning, which emphasizes verbal problem solving abilities in…
Descriptors: Mathematics Achievement, Short Term Memory, Mathematics Skills, Grade 3
Andersson, Sonja; Bergstrom-Nyberg, Susanne; Dumbrajs, Martina; Dumbrajs, Sivbritt; Martelin, Victoria; Westerlund, Tove – Online Submission, 2010
The authors investigate how an integrative approach can be applied to teaching of different disciplines at school. Interdisciplinarity can be defined as a process of answering a question, solving a problem or addressing a topic that is too broad to be dealt with by a single discipline. In addition to an integrated understanding of the topic, the…
Descriptors: Interdisciplinary Approach, Integrated Curriculum, Problem Solving, Group Activities
Orosco, Michael J.; Swanson, H. Lee; O'Connor, Rollanda; Lussier, Cathy – Grantee Submission, 2011
English language learners (ELLs) struggle with solving word problems for a number of reasons beyond math procedures or calculation challenges. As a result, ELLs may not only need math support but also reading and linguistic support. The purpose of this study was to assess the effectiveness of a math comprehension strategy called Dynamic Strategic…
Descriptors: English Language Learners, Problem Solving, Mathematics Instruction, Intervention
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Kobelin, Melissa – Schools: Studies in Education, 2009
This article describes one teacher's efforts at creating a differentiated mathematics program in her multi-age first- and second-grade classroom. The author describes challenges encountered and successes met in this process, as well as the structures she uses to meet a variety of student abilities, including open-ended problem-solving tasks,…
Descriptors: Problem Solving, Curriculum Guides, Teachers, Mathematics Instruction
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
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Codding, Robin S.; Shiyko, Mariya; Russo, Maria; Birch, Sarah; Fanning, Erica; Jaspen, Deborah – Journal of School Psychology, 2007
A paucity of research has directly compared empirically supported interventions to examine their effectiveness among students with different mathematics fluency skills. The purpose of this study was to compare the effects of two empirically supported interventions and a control condition on the mathematics fluency of 98 second and third grade…
Descriptors: Intervention, Problem Solving, Grade 3, Mathematics
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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
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Wu, Zhonghe; An, Shuhua; King, Joyce; Ramirez, Melissa; Evans, Stacee – Teaching Children Mathematics, 2009
Finding ways to help primary-grade students overcome difficulties in solving mathematical word problems can be a daunting task for teachers in a regular classroom setting. Student challenges may include: (1) difficulty with vocabulary; (2) lack of confidence when solving problems; (3) confusion on the proper operation to use when solving a…
Descriptors: Educational Strategies, Group Discussion, Student Evaluation, Cooperative Learning
Sprague, Jeffrey; Pennefather, Jordan; Marquez, Jessie; Yeaton, Pamela; Marquez, Brion – Society for Research on Educational Effectiveness, 2011
This session will describe the social validity, usability and intent to use of an interactive, state-of-the-art, professional development program based on the Response to Intervention (RtI) approach and its core components (e.g., problem-solving strategy; three tiers of intervention service delivery with universal, selected and intensive…
Descriptors: Validity, Elementary School Teachers, Intention, Usability
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Danovitch, Judith H.; Keil, Frank C. – Cognitive Development, 2007
Moral development research has often focused on the development of moral reasoning without considering children's understanding of moral advisors. We investigated how children construe sources of moral advice by examining the characteristics that children deem necessary for reasoning about moral or scientific problems. In two experiments, children…
Descriptors: Grade 4, Moral Development, Moral Values, Kindergarten
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