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Zieffler, Andrew S.; Garfield, Joan B. – Statistics Education Research Journal, 2009
This study examined students' development of reasoning about quantitative bivariate data during a one-semester university-level introductory statistics course. There were three research questions of interest: (1) What is the nature, or pattern of change in students' development in reasoning throughout the course?; (2) Is the sequencing of…
Descriptors: Statistics, Mathematics Instruction, Mathematical Concepts, College Students
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Makar, Katie; Rubin, Andee – Statistics Education Research Journal, 2009
Informal inferential reasoning has shown some promise in developing students' deeper understanding of statistical processes. This paper presents a framework to think about three key principles of informal inference--generalizations "beyond the data," probabilistic language, and data as evidence. The authors use primary school classroom…
Descriptors: Statistical Inference, Elementary School Students, Elementary School Teachers, Elementary School Mathematics
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Lassak, Marshall – International Journal of Mathematical Education in Science and Technology, 2009
Using dynamic graphs, future secondary mathematics teachers were able to represent and communicate their understanding of a brief mathematical investigation in a way that a symbolic proof of the problem could not. Four different student work samples are discussed. (Contains 6 figures.)
Descriptors: Graphs, Mathematics Teachers, Mathematical Logic, Secondary School Teachers
Obara, Samuel – Australian Mathematics Teacher, 2009
Spatial reasoning is a skill that needs to be developed in students as it is important in geometry for determining total surface areas and volumes of 3-dimensional shapes (Liedtke, 1995). Simply teaching children the formulae, in this case for finding total surface areas, can limit them in understanding mathematics conceptually (Bonotto, 2003).…
Descriptors: Mathematical Concepts, Secondary School Teachers, Geometric Concepts, Geometry
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Garfield, Joan; Ben-Zvi, Dani – Teaching Statistics: An International Journal for Teachers, 2009
This article describes a model for an interactive, introductory secondary- or tertiary-level statistics course that is designed to develop students' statistical reasoning. This model is called a "Statistical Reasoning Learning Environment" and is built on the constructivist theory of learning.
Descriptors: Constructivism (Learning), Educational Environment, Statistics, Mathematical Concepts
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Ares, Nancy; Stroup, Walter M.; Schademan, Alfred R. – Cognition and Instruction, 2009
A new generation of networked classroom technology immerses students and teachers in the group-level construction of powerful mathematical and scientific concepts. We examine these networks from a sociocultural point of view as a new form of mediating artifact. We present a mixed-method, microgenetic analysis to characterize students'…
Descriptors: Technology Uses in Education, Context Effect, Information Networks, Classroom Environment
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Maschietto, Michela; Bartolini Bussi, Maria G. – Educational Studies in Mathematics, 2009
This paper reports a part of a study on the construction of mathematical meanings in terms of development of semiotic systems (gestures, speech in oral and written form, drawings) in a Vygotskian framework, where artefacts are used as tools of semiotic mediation. It describes a teaching experiment on perspective drawing at primary school (fourth…
Descriptors: Mathematical Models, Grade 5, Mathematics Instruction, Semiotics
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What Works Clearinghouse, 2009
The "Cognitive Tutor[R] Algebra I" curriculum, published by Carnegie Learning, is an approach that combines algebra textbooks with interactive software. The software is developed around an artificial intelligence model that identifies strengths and weaknesses in each individual student's mastery of mathematical concepts. It then…
Descriptors: Textbooks, Academic Achievement, Computer Software, Artificial Intelligence
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Baroody, Arthur J.; Feil, Yingying; Johnson, Amanda R. – Journal for Research in Mathematics Education, 2007
After evaluating a proposal by Jon Star (2005) that mathematics educators reconceptualize the construct of procedural knowledge, we offer an alternative reconceptualization based on an extension and amalgamation of his and other conceptualizations of procedural knowledge and conceptual knowledge. We then propose some implications for research…
Descriptors: Mathematics Instruction, Mathematical Concepts, Problem Solving, Criticism
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Boyadzhiev, Khristo N. – College Mathematics Journal, 2007
Logarithmic spirals are among the most fascinating curves in the plane, being the only curves that are equiangular, and the only ones that are self-similar. In this article, we show that in three dimensions, these two properties are independent. Although there are surfaces that have both properties, there are some that are equiangular, but not…
Descriptors: Geometry, Mathematical Concepts, Numbers, Oceanography
Fletcher, Trevor – Mathematics Teaching Incorporating Micromath, 2007
In this article, the author describes his experiments with Steiner's Porism using the drawing/animation program "Cinderella" and discusses insights into this theorem gleaned from the manipulation of his animation. (Contains 2 notes.)
Descriptors: Computer Software, Animation, Mathematical Concepts, Geometric Concepts
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Eisenberg, Theodore – Teaching Mathematics and Its Applications: An International Journal of the IMA, 2007
Several proofs demonstrating that there are infinitely many primes, different types of primes, tests of primality, pseudo primes, prime number generators and open questions about primes are discussed in Section 1. Some of these notions are elaborated upon in Section 2, with discussions of the Riemann zeta function and how algorithmic complexity…
Descriptors: Numbers, Numeracy, Mathematics, Mathematical Concepts
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Sanchez, Wendy B. – Mathematics Teacher, 2007
This article describes specific strategies for focusing lessons on helping students develop a conceptual understanding of mathematics.
Descriptors: Mathematics Instruction, Comprehension, Mathematical Concepts, Teaching Methods
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Agodini, Roberto; Harris, Barbara; Remillard, Janine; Thomas, Melissa – National Center for Education Evaluation and Regional Assistance, 2013
This appendix provides the details that underlie the analyses reported in the evaluation brief, "After Two Years, Three Elementary Math Curricula Outperform a Fourth." The details are organized in six sections: Study Curricula and Design (Section A), Data Collection (Section B), Construction of the Analysis File (Section C), Curriculum…
Descriptors: Mathematics Curriculum, Elementary School Mathematics, Mathematics Instruction, Grade 1
Vendlinski, Terry P.; Chung, Greg K. W. K.; Binning, Kevin R.; Buschang, Rebecca E. – National Center for Research on Evaluation, Standards, and Student Testing (CRESST), 2011
Understanding the meaning of rational numbers and how to perform mathematical operations with those numbers seems to be a perennial problem in the United States for both adults and children. Based on previous work, we hypothesized that giving students more time to practice using rational numbers in an environment that enticed them to apply their…
Descriptors: Feedback (Response), Intervention, Educational Research, Video Games
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