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FitzPatrick, Daniel L.; Dominguez, Victoria S. – Mathematics Teacher, 2017
Teaching persistence and problem solving must begin with selecting a problem that can be solved mathematically, that allows for multiple methods of solving, and that generally captures the attention and curiosity of the student (Marcus and Fey 2003; NCTM 1991; Van de Walle 2003). This article shows how a STEM three-dimensional (3D) printing…
Descriptors: Problem Solving, Mathematics Instruction, STEM Education, Preservice Teacher Education
Root, Jenny; Saunders, Alicia; Spooner, Fred; Brosh, Chelsi – Career Development and Transition for Exceptional Individuals, 2017
The ability to solve mathematical problems related to purchasing and personal finance is important in promoting skill generalization and increasing independence for individuals with moderate intellectual disabilities (IDs). Using a multiple probe across participant design, this study investigated the effects of modified schema-based instruction…
Descriptors: Middle School Students, Moderate Intellectual Disability, Mathematics Instruction, Problem Solving
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Quigley, Cassie F.; Herro, Dani – Journal of Science Education and Technology, 2016
In response to a desire to strengthen the economy, educational settings are emphasizing science, technology, engineering, and mathematics (STEM) curriculum and programs. Yet, because of the narrow approach to STEM, educational leaders continue to call for a more balanced approach to teaching and learning, which includes the arts, design, and…
Descriptors: STEM Education, Art Education, Interdisciplinary Approach, Problem Solving
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Swinson, Ronnie; Clark, Aaron C.; Ernst, Jeremy V.; Sutton, Kevin – Technology and Engineering Teacher, 2016
Today's engineers, designers, and technologists are often thrust into the role of problem solver, from the initial design phase of a product or process all the way to final development. Many engineers in manufacturing environments are tasked with solving problems and continuously improving processes to enhance company profitability, efficiency,…
Descriptors: Technology Education, Engineering Education, Simulation, Problem Solving
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Cheng, Lu Pien – Journal of Science and Mathematics Education in Southeast Asia, 2013
In this paper the teachers' learning journey on designing a mathematics problem that involves a real-life context is reported. This is part of a larger project undertaken in a primary school in Singapore where the teachers were engaged in planning, observing and critiquing mathematics lessons to investigate teaching and learning. These unique…
Descriptors: Foreign Countries, Mathematics Instruction, Relevance (Education), Young Children
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Yildirim, Sevda; Ersozlu, Zehra Nur – EURASIA Journal of Mathematics, Science & Technology Education, 2013
This study was designed to investigate the relationship between the metacognitive awareness of university students and their solutions to the similar mathematical problem types. Participants were 97 freshmen from department of mathematics at a state university in Turkey. Two different scales were used for data collection: "Metacognitive…
Descriptors: Metacognition, Foreign Countries, Mathematics Instruction, College Freshmen
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Martinez-Luaces, Victor E. – International Journal of Mathematical Education in Science and Technology, 2013
This paper will offer an analysis from a theoretical point of view of mathematical modelling, applications and inverse problems of both causation and specification types. Inverse modelling problems give the opportunity to establish connections between theory and practice and to show this fact, a simple linear algebra example in two different…
Descriptors: Algebra, Undergraduate Study, Mathematical Applications, Mathematical Models
Ho, Foo Him; Toh, Pee Choon; Toh, Tin Lam – Mathematics Education Research Group of Australasia, 2013
Quek, Tay, Toh, Leong, and Dindyal (2011) proposed that a design-theory-practice troika should always be considered for a designed package to be acceptable to the research users who, in this case, are teachers and schools. This paper describes the fine-tuning to the MProSE problem-solving design made by the teachers in the school after first round…
Descriptors: Problem Solving, Mathematics Education, Mathematics Activities, Instructional Design
Toh, Tin Lam; Dindyal, Jaguthsing; Tay, Eng Guan – Mathematics Education Research Group of Australasia, 2013
In a design experiment, the feedback from the teacher-implementer is crucial to the success of the innovation simply because the teacher is finally the one that brings the innovation to life in front of the students. We describe in this paper the feedback made by the teacher-implementer after teaching one cycle of the problem solving module in a…
Descriptors: Instructional Design, Mathematics Instruction, Problem Solving, High School Students
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van Klinken, Eduarda – Australian Primary Mathematics Classroom, 2012
This article outlines how a Brisbane independent school, Clayfield College, improved the ability of its Year 3 students to solve addition and subtraction word problems by utilising a schematic approach. It was observed that while students could read the words in the text of a written problem, many had difficulty identifying the core information…
Descriptors: Private Schools, Problem Solving, Word Problems (Mathematics), Subtraction
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Khovanova, Tanya – College Mathematics Journal, 2012
When Martin Gardner first presented the Two-Children problem, he made a mistake in its solution. Later he corrected the error, but unfortunately the incorrect solution is more widely known than his correction. In fact, a Tuesday-Child variation of this problem went viral in 2010, and the same flaw keeps reappearing in proposed solutions of that…
Descriptors: Mathematics, Probability, Problem Solving, Error Correction
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Duijzer, Carolien; Van den Heuvel-Panhuizen, Marja; Veldhuis, Michiel; Doorman, Michiel – ZDM: The International Journal on Mathematics Education, 2019
Reasoning about graphical representations representing dynamic data (e.g., distance changing over time), including interpreting, creating, changing, combining, and comparing graphs, can be considered a domain-specific operationalization of the general twenty-first century skills of creative, critical thinking and solving problems. This paper…
Descriptors: Elementary School Students, Motion, Graphs, Thinking Skills
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Siegler, Robert S.; Lortie-Forgues, Hugues – Journal of Educational Psychology, 2015
Understanding an arithmetic operation implies, at minimum, knowing the direction of effects that the operation produces. However, many children and adults, even those who execute arithmetic procedures correctly, may lack this knowledge on some operations and types of numbers. To test this hypothesis, we presented preservice teachers (Study 1),…
Descriptors: Arithmetic, Mathematics Education, Knowledge Level, Hypothesis Testing
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Magiera, Marta T.; van den Kieboom, Leigh A.; Moyer, John C. – Educational Studies in Mathematics, 2013
Using algebraic habits of mind as a framework, and focusing on thinking about functions and how they work, we examined the relationship between 18 pre-service middle school teachers' ability to use the features of the algebraic thinking (AT) habit of mind "Building Rules to Represent Functions" and their ability to recognize and…
Descriptors: Algebra, Mathematical Logic, Mathematics Instruction, Middle School Teachers
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Woodward, John – Learning Disabilities: A Multidisciplinary Journal, 2013
This article reviews recent research in math problem solving for students with learning disabilities. Two recently published syntheses of research on mathematics by the Institute of Education Sciences (IES) are used as frameworks for interpreting this body of work. A significant amount of the work in special education over the last decade is…
Descriptors: Mathematics Instruction, Problem Solving, Learning Disabilities, Special Education
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