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Scherer, Ronny; Beckmann, Jens F. – Large-scale Assessments in Education, 2014
Background: On the basis of a 'problem solving as an educational outcome' point of view, we analyse the contribution of math and science competence to analytical problem-solving competence and link the acquisition of problem solving competence to the coherence between math and science education. We propose the concept of math-science coherence and…
Descriptors: Problem Solving, Mathematics Achievement, Science Achievement, Competence
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Liu, Min; Rosenblum, Jason A.; Horton, Lucas; Kang, Jina – Computers in the Schools, 2014
Given the growing popularity of digital games as a form of entertainment, educators are interested in exploring using digital games as a tool to facilitate learning. In this study, we examine game-based learning by describing a learning environment that combines game elements, play, and authenticity in the real world for the purpose of engaging…
Descriptors: Educational Games, Computer Games, Educational Environment, Educational Needs
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Starling, A. Leyf Peirce; Lo, Ya-Yu; Rivera, Christopher J. – Journal of the American Academy of Special Education Professionals, 2015
This study evaluated the differential effects of three different science teaching methods, namely engineering teaching kit (ETK), explicit instruction (EI), and a combination of the two methods (ETK+EI), in two sixth-grade science classrooms. Twelve students with learning disabilities (LD) and/or attention deficit hyperactivity disorder (ADHD)…
Descriptors: Science Education, Middle School Students, Problem Solving, Tests
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Norstrom, Per – International Journal of Technology and Design Education, 2013
Engineers commonly use rules, theories and models that lack scientific justification. Examples include rules of thumb based on experience, but also models based on obsolete science or folk theories. Centrifugal forces, heat and cold as substances, and sucking vacuum all belong to the latter group. These models contradict scientific knowledge, but…
Descriptors: Science Education, Teaching Methods, Technology Education, Intellectual Disciplines
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Rizhov, Alexander – Physics Education, 2011
There is a remarkable difference between formal knowledge and true understanding of the subject. While the former helps students earn top grades, the latter is crucial to the solution of real-world problems. An excellent example is the computation of capacitance, with which some students have difficulty. Also, most textbooks limit problem analysis…
Descriptors: World Problems, Problem Solving, Physics, Science Education
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Horiguchi, Tomoya; Imai, Isao; Toumoto, Takahito; Hirashima, Tsukasa – Educational Technology & Society, 2014
Error-based simulation (EBS) has been developed to generate phenomena by using students' erroneous ideas and also offers promise for promoting students' awareness of errors. In this paper, we report the evaluation of EBS used in learning "normal reaction" in a junior high school. An EBS class, where students learned the concept…
Descriptors: Simulation, Error Correction, Learning Processes, Misconceptions
Lai, Oiki Sylvia – ProQuest LLC, 2013
The purpose of this research was to conceptualize an R & D based learning-to-innovate (LTI) model. The problem to be addressed was the lack of a theoretical L TI model, which would inform science pedagogy. The absorptive capacity (ACAP) lens was adopted to untangle the R & D LTI phenomenon into four learning processes: problem-solving via…
Descriptors: Science Education, Research and Development, Educational Innovation, Models
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Firn, Jennifer – Journal of University Teaching and Learning Practice, 2015
Biology is the most rapidly evolving scientific field of the 21st century. Biology graduates must be able to integrate concepts and collaborate outside their discipline to solve the most pressing questions of our time, e.g. world hunger, malnutrition, climate change, infectious disease and biosecurity. University educators are attempting to…
Descriptors: Foreign Countries, College Faculty, College Graduates, Undergraduate Students
Kilner, William Cary – ProQuest LLC, 2014
Freshmen with declared life-science majors typically matriculate with a determination to succeed. However, inadequately-prepared students are easily overwhelmed and at risk of abandoning their aspirations for a STEM career. The investigator designed and taught weekly recitations for approximately 850 students during a five-year span, and…
Descriptors: Science Education, Chemistry, College Freshmen, STEM Education
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Fang, Ning – Journal of Science Education and Technology, 2012
A concept pair is a pair of concepts that are fundamentally different but closely related. To develop a solid conceptual understanding in dynamics (a foundational engineering science course) and physics, students must understand the fundamental difference and relationship between two concepts that are included in each concept pair. However, all…
Descriptors: Undergraduate Students, Scientific Concepts, Physics, Identification
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de Berg, Kevin – Chemistry Education Research and Practice, 2012
This paper reports on students' understanding of sugar concentration in aqueous solutions presented in two different modes: a visual submicroscopic mode for particles and a verbal mode referring to macroscopic amounts of sugar. One hundred and forty-five tertiary college students studying some form of first-year chemistry participated in the…
Descriptors: Chemistry, College Science, Science Education, Undergraduate Students
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Savelsbergh, Elwin R.; de Jong, Ton; Ferguson-Hessler, Monica G. M. – Physical Review Special Topics - Physics Education Research, 2011
Novice problem solvers are rather sensitive to surface problem features, and they often resort to trial and error formula matching rather than identifying an appropriate solution approach. These observations have been interpreted to imply that novices structure their knowledge according to surface features rather than according to problem type…
Descriptors: Physics, Problem Solving, Magnets, Energy
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Kavai, Portia; de Villiers, Rian; Fraser, William; Sommerville, Jaqui; Strydom, Nina – African Journal of Research in Mathematics, Science and Technology Education, 2015
In Life Sciences education internationally, including South Africa, the study of animal and organ morphology has traditionally involved dissections since the early nineteenth century. The major purpose of this study was to investigate how the engagement of learners with animal organ dissections may influence the development of problem-solving…
Descriptors: Animals, Laboratory Procedures, Biological Sciences, Secondary School Science
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Snyder, Julia J.; Carter, B. Elijah; Wiles, Jason R. – CBE - Life Sciences Education, 2015
In entry-level university courses in science, technology, engineering, and mathematics fields, students participating in associated laboratory sessions generally do better than those who have no related lab classes. This is a problem when, for various reasons, not enough lab sections can be offered for students and/or when students opt out of…
Descriptors: STEM Education, Science Education, Cooperative Learning, Science Laboratories
Bozdogan, Aykut Emre; Uzoglu, Mustafa – Online Submission, 2015
The aim of this study is to explore the problems encountered while teaching force and motion unit in 8th grade science and technology course from teachers' perspectives and offer solutions to eliminate these problems. The study was conducted with 248 science and technology teachers working in 7 regions in Turkey in 2012-2013 academic year.…
Descriptors: Teacher Attitudes, Grade 8, Science Teachers, Science Education
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