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Every Student Succeeds Act…1
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Cohen, Jessica S. – Mathematics Teaching in the Middle School, 2013
Proportional reasoning is both complex and layered, making it challenging to define. Lamon (1999) identified characteristics of proportional thinkers, such as being able to understand covariance of quantities; distinguish between proportional and nonproportional relationships; use a variety of strategies flexibly, most of which are nonalgorithmic,…
Descriptors: Middle Schools, Mathematics Instruction, Mathematical Concepts, Teaching Methods
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Butcher, Kirsten R.; Aleven, Vincent – Journal of Educational Psychology, 2013
In many domains, problem solving involves the application of general domain principles to specific problem representations. In 3 classroom studies with an intelligent tutoring system, we examined the impact of (learner-generated) interactions and (tutor-provided) visual cues designed to facilitate rule-diagram mapping (where students connect…
Descriptors: Problem Solving, Intelligent Tutoring Systems, Visual Stimuli, Visual Aids
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Kiray, S. Ahmet; Gok, Bilge; Bozkir, A. Selman – Journal of Education in Science, Environment and Health, 2015
The purpose of this article is to identify the order of significance of the variables that affect science and mathematics achievement in middle school students. For this aim, the study deals with the relationship between science and math in terms of different angles using the perspectives of multiple causes-single effect and of multiple…
Descriptors: Science Achievement, Information Retrieval, Data Analysis, Middle School Students
Maries, Alexandru – ProQuest LLC, 2013
This thesis explores the role of multiple representations in introductory physics students' problem solving performance through several investigations. Representations can help students focus on the conceptual aspects of physics and play a major role in effective problem solving. Diagrammatic representations can play a particularly important role…
Descriptors: Science Instruction, Physics, Problem Solving, Scientific Concepts
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Forstadt, Leslie A.; Doore, Brian – Journal of Extension, 2012
This article describes two methods for use in program development and refinement. Problem mapping and forcefield analysis are explained with a real-world example about parenting education. Both methods are visual and consider multiple causes and effects of a problem. The methods are effective for clearly thinking through a problem, identifying…
Descriptors: Program Development, Needs Assessment, Models, Program Descriptions
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Panaoura, Areti – International Journal of Mathematical Education in Science and Technology, 2014
Self-efficacy beliefs in mathematics, as a dimension of the affective domain, are related with students' performance on solving tasks and mainly on overcoming cognitive obstacles. The present study investigated the interrelations of cognitive performance on geometry and young students' self-efficacy beliefs about using representations for solving…
Descriptors: Geometry, Self Efficacy, Mathematics Achievement, Problem Solving
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Zahner, Doris; Corter, James E. – Mathematical Thinking and Learning: An International Journal, 2010
We investigate the role of external inscriptions, particularly those of a spatial or visual nature, in the solution of probability word problems. We define a taxonomy of external visual representations used in probability problem solving that includes "pictures," "spatial reorganization of the given information," "outcome listings," "contingency…
Descriptors: Word Problems (Mathematics), Probability, Problem Solving, Visualization
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Fessakis, G.; Gouli, E.; Mavroudi, E. – Computers & Education, 2013
Computer programming is considered an important competence for the development of higher-order thinking in addition to algorithmic problem solving skills. Its horizontal integration throughout all educational levels is considered worthwhile and attracts the attention of researchers. Towards this direction, an exploratory case study is presented…
Descriptors: Computers, Learning Activities, Intervention, Teaching Methods
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Zemel, Alan; Koschmann, Timothy – International Journal of Computer-Supported Collaborative Learning, 2013
In this paper we examine how two groups of middle school students arrive at shared understandings of and solutions to mathematical problems. Our data consists of logs of student participation in the Virtual Math Teams (VMT) system as they work on math problems. The project supports interaction both through chat and through a virtual whiteboard. We…
Descriptors: Middle School Students, Interaction, Problem Solving, Mathematics Instruction
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Isseks, Marc – Educational Leadership, 2011
Although it is essential to incorporate new technologies into the classroom, says Isseks, one trend has negatively affected instruction--the misuse of PowerPoint presentations. The author describes how poorly designed PowerPoint presentations reduce complex thoughts to bullet points and reduce the act of learning to transferring text from slide to…
Descriptors: Visual Aids, Computer Software, Teaching Methods, Critical Thinking
Kolar-Begovic, Zdenka, Ed.; Kolar-Šuper, Ružica, Ed.; Ðurdevic Babic, Ivana, Ed. – Online Submission, 2015
This monograph offers an overview of the current research work carried out in Croatia and the surrounding countries, and specifically an interesting insight in teaching and learning issues in these countries. The authors discuss the need of the general population for becoming good problem-solvers in society of today, which is characterised by…
Descriptors: Foreign Countries, Mathematics Education, Problem Solving, Teaching Methods
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Torres, Tarcilo; Milicic, Beatriz; Soto, Carlos; Sanjose, Vicente – EURASIA Journal of Mathematics, Science & Technology Education, 2013
Physics teachers use experimental devices to show students how scientific concepts, principles, and laws are applied to understand the real world. This paper studies question generation of secondary and under-graduate university students when they are confronted with experimental devices in different but usual teaching situations: reading about…
Descriptors: Physics, Science Instruction, Inquiry, Questioning Techniques
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Hinze, Scott R.; Rapp, David N.; Williamson, Vickie M.; Shultz, Mary Jane; Deslongchamps, Ghislain; Williamson, Kenneth C. – Learning and Instruction, 2013
Students are frequently presented with novel visualizations introducing scientific concepts and processes normally unobservable to the naked eye. Despite being unfamiliar, students are expected to understand and employ the visualizations to solve problems. Domain experts exhibit more competency than novices when using complex visualizations, but…
Descriptors: Prior Learning, Individual Differences, Novices, Organic Chemistry
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Yerushalmy, Michal; Naftaliev, Elena – Technology, Knowledge and Learning, 2011
In an attempt to study the emerging questions about design of mathematical tasks that could support the solving of challenging problems, we designed two settings of interactive diagrams that share an example represented as an animation of multi-process motion but differ in their organizational functions. The interactive settings, each comprising…
Descriptors: Computer Assisted Instruction, Cognitive Processes, Mathematics Instruction, Problem Solving
Patton, Barba; De Los Santos, Estella – Online Submission, 2012
The purpose of this study was to assess student knowledge of numeric, visual and algebraic representations. A definite gap between arithmetic and algebra has been documented in the research. The researchers' goal was to identify a link between the two. Using four "Guess My Number" problems, seventh and tenth grade students were asked to write…
Descriptors: Grade 10, Algebra, Mathematics Instruction, Visual Aids
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