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Serap Çaliskan – Journal of Baltic Science Education, 2017
The aim of this research is to determine the predictive level of physics self-efficacy with regard to physics anxiety and the correlations between the physics anxiety and self-efficacy of pre-service teachers, also to examine whether physics anxiety and self-efficacy beliefs differ depending on pre-service teachers' achievement in physics and…
Descriptors: Physics, Anxiety, Self Efficacy, Science Achievement
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Victor I. Piercey – Numeracy, 2017
In this paper, I share a hybrid quantitative reasoning/algebra two-course sequence that challenges the common assumption that quantitative literacy and reasoning are less rigorous mathematics alternatives to algebra and illustrates that a quantitative reasoning framework can be used to teach traditional algebra. The presentation is made in two…
Descriptors: Numeracy, Mathematics Skills, Thinking Skills, Algebra
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Meikle, Erin M. – Teaching Children Mathematics, 2016
Many teachers are using the Five Practices model to guide them in orchestrating whole-class mathematics discussions that focus on understanding: (1) anticipate an array of possible student-generated solution strategies to a mathematical task before implementing the lesson; (2) monitor students' work as they grapple with the task; (3) select a…
Descriptors: Mathematics Instruction, Teaching Methods, Methods Courses, Elementary School Mathematics
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Easterday, Matthew W.; Rees Lewis, Daniel G.; Gerber, Elizabeth M. – Australasian Journal of Educational Technology, 2016
Design research (DR) promises to simultaneously solve practical problems of education and develop theory to guide future interventions. However, educational DR remains paradigmatically underdeveloped, making it difficult to train new researchers, to agree upon what makes a theoretical contribution, and to promise clear outputs to funders--all of…
Descriptors: Design, Research, Research Methodology, Models
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Podolskiy, O. A.; Pogozhina, V. A. – Russian Education & Society, 2016
Today, experts agree that the level of cognitive development of modern young people affects the long-term life goals and outcomes that they set for themselves. During the course of numerous studies experts have identified such key competencies as problem solving, information literacy, and critical thinking. However, there are still many unanswered…
Descriptors: Minimum Competencies, Cognitive Development, Problem Solving, Information Literacy
DeVane, Ben; Steward, Cody; Tran, Kelly M. – Educational Technology, 2016
This article reports on a project that used a game-creation tool to introduce middle-school students ages 10 to 13 to problem-solving strategies similar to those in computer science through the lens of studio-based design arts. Drawing on historic paradigms in design pedagogy and contemporary educational approaches in the digital arts to teach…
Descriptors: Middle School Students, Design, Problem Solving, Computer Science
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Imhof, Margarete; Starker, Ulrike; Spaude, Elena – Psychology Learning and Teaching, 2016
Building on Dörner's (1996) theory of complex problem-solving, a learning scenario for teacher students was created and tested. Classroom management is interpreted as a complex problem, which requires the integration of competing interests and tackling multiple, simultaneous tasks under time pressure and with limited information. In addition,…
Descriptors: Role Playing, Teacher Competencies, Problem Solving, Classroom Techniques
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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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Lewis, Robert – Australian Mathematics Teacher, 2016
When dividing one fraction by a second fraction, invert, that is, flip the second fraction, then multiply it by the first fraction. To multiply fractions, simply multiply across the denominators, and multiply across the numerators to get the resultant fraction. So by inverting the division of fractions it is turned into an easy multiplication of…
Descriptors: Fractions, Multiplication, Teaching Methods, Mathematics Instruction
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Sutarto; Nusantara, Toto; Subanji; Sisworo – Educational Research and Reviews, 2016
This aim of this study is to describe the process of local conjecturing in generalizing patterns based on Action, Process, Object, Schema (APOS) theory. The subjects were 16 grade 8 students from a junior high school. Data collection used Pattern Generalization Problem (PGP) and interviews. In the first stage, students completed PGP; in the second…
Descriptors: Junior High School Students, Problem Solving, Generalization, Cognitive Processes
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Czocher, Jennifer A. – Mathematical Thinking and Learning: An International Journal, 2016
This study contributes a methodological tool to reconstruct the cognitive processes and mathematical activities carried out by mathematical modelers. Represented as Modeling Transition Diagrams (MTDs), individual modeling routes were constructed for four engineering undergraduate students. Findings stress the importance and limitations of using…
Descriptors: Mathematical Logic, Thinking Skills, Mathematical Models, Mathematics Activities
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Aleven, Vincent; McLaren, Bruce M.; Sewall, Jonathan; van Velsen, Martin; Popescu, Octav; Demi, Sandra; Ringenberg, Michael; Koedinger, Kenneth R. – International Journal of Artificial Intelligence in Education, 2016
In 2009, we reported on a new Intelligent Tutoring Systems (ITS) technology, example-tracing tutors, that can be built without programming using the Cognitive Tutor Authoring Tools (CTAT). Creating example-tracing tutors was shown to be 4-8 times as cost-effective as estimates for ITS development from the literature. Since 2009, CTAT and its…
Descriptors: Intelligent Tutoring Systems, Artificial Intelligence, Programming, Educational Technology
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Hurdle, Zach; Warshauer, Max; White, Alex – Mathematics Teacher, 2016
The desire to persuade students to avoid strictly memorizing formulas is a recurring theme throughout discussions of curriculum and problem solving. In combinatorics, a branch of discrete mathematics, problems can be easy to write--identify a few categories, add a few restrictions, specify an outcome--yet extremely challenging to solve. A lesson…
Descriptors: Mathematics Instruction, Mathematics Activities, Mathematical Formulas, Computation
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Pace, Michelle H.; Ortiz, Enrique – Teaching Children Mathematics, 2016
When a second-grade class struggled to make sense of the algorithms for multidigit addition and subtraction, attitude and morale were down, and student discourse was at an all-time low. When daily mathematics class started, the teacher was hearing an overall class moan. The instructed needed to turn it around, to find a way to help excite and…
Descriptors: Mathematics Instruction, Grade 2, Elementary School Mathematics, Teaching Methods
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