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Showing 1 to 15 of 23 results Save | Export
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Wiener, Gerfried J.; Schmeling, Sascha M.; Hopf, Martin – Physics Education, 2017
We present a new learning unit, which introduces 12 year-olds to the subatomic structure of matter. The learning unit was iteratively developed as a design-based research project using the technique of probing acceptance. We give a brief overview of the unit's final version, discuss its key ideas and main concepts, and conclude by highlighting the…
Descriptors: Physics, Science Instruction, Scientific Concepts, Teaching Methods
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Kuhn, Mason; McDermott, Mark – Science and Children, 2017
This article focuses on an argument-based inquiry (ABI) approach to a fourth grade unit on waves. A fourth-grade teacher included multiple opportunities for students to read, write, and use language to represent their understanding of physical science Next Generation Science Standards (NGSS) performance expectations (NGSS Lead States 2013). He…
Descriptors: Grade 4, Elementary School Science, Physical Sciences, Inquiry
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Anupam, Aditya; Gupta, Ridhima; Naeemi, Azad; JafariNaimi, Nassim – IEEE Transactions on Education, 2018
Quantum mechanics (QMs) is a foundational subject in many science and engineering fields. It is difficult to teach, however, as it requires a fundamental revision of the assumptions and laws of classical physics and probability. Furthermore, introductory QM courses and texts predominantly focus on the mathematical formulations of the subject and…
Descriptors: Quantum Mechanics, Experiential Learning, Introductory Courses, Educational Games
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da Costa, Caetano; Galembeck, Eduardo – Biochemistry and Molecular Biology Education, 2016
Evolution has been recognized as a key concept for biologists. To enhance comprehension and motivate biology undergraduates for the contents of central energetic metabolism, we addressed the Krebs cycle structure and functions in an evolutionary view. To this end, we created a study guide that contextualizes the emergence of the cyclic pathway, in…
Descriptors: Biochemistry, Teaching Methods, Physiology, Metabolism
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Manz, Eve – Cognition and Instruction, 2015
This article addresses how we can develop learning environments that establish a need for scientific practices and provide a context for developing content knowledge through practice. It argues that Pickering's (1995) notion of "The Mangle of Practice" informs these efforts by focusing our attention on how resistance, or push-back from…
Descriptors: Science Process Skills, Knowledge Level, Science Instruction, Elementary School Science
Fulgham, Susan M.; Shaughnessy, Michael F. – Educational Technology, 2014
Susan M. Fulgham and Michael F. Shaughnessy, Contributing Editors for this journal, present their interview with Marcia C. Linn, Professor of Development and Cognition, specializing in education in mathematics, science, and technology, in the Graduate School of Education at the University of California, Berkeley. Linn is currently investigating…
Descriptors: Interviews, Formative Evaluation, Summative Evaluation, Alternative Assessment
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Taylor, Melanie; Cohen, Kimberley; Esch, R. Keith; Smith, P. Sean – Science Scope, 2012
It is fascinating to listen to middle school students talk about food for plants and animals and how that food is used. Some students describe ideas that are essentially correct. Some comments suggest that students are familiar with the content, but their understanding is incomplete or includes inaccuracies. Finally, some students have little…
Descriptors: Middle School Students, Secondary School Science, Energy, Biology
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Pepper, Rachel E.; Chasteen, Stephanie V.; Pollock, Steven J.; Perkins, Katherine K. – Physical Review Special Topics - Physics Education Research, 2012
We discuss common difficulties in upper-division electricity and magnetism (E&M) in the areas of Gauss's law, vector calculus, and electric potential using both quantitative and qualitative evidence. We also show that many of these topical difficulties may be tied to student difficulties with mathematics. At the junior level, some students…
Descriptors: Evidence, Calculus, Pragmatics, Scientific Concepts
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Herman, Geoffrey L.; Loui, Michael C.; Kaczmarczyk, Lisa; Zilles, Craig – ACM Transactions on Computing Education, 2012
The ability to reason with formal logic is a foundational skill for computer scientists and computer engineers that scaffolds the abilities to design, debug, and optimize. By interviewing students about their understanding of propositional logic and their ability to translate from English specifications to Boolean expressions, we characterized…
Descriptors: Interviews, Logical Thinking, Computer Science, Scientists
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Byrne, Jenny – International Journal of Science Education, 2011
This paper describes the expressed models that children aged 7, 11, and 14 years have about micro-organisms and microbial activity. These were elicited using a variety of data collection techniques that complemented each other, resulting in a rich dataset, and provided information about the level of knowledge and progression of ideas across the…
Descriptors: Knowledge Level, Microbiology, Scientific Concepts, Age Differences
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Cardellini, Liberato – Journal of Chemical Education, 2010
Ronald J. Gillespie, the inventor of the Valence Shell Electron Pair Repulsion (VSEPR) model, relates how his career as researcher in Christopher Ingold's laboratories started. Gillespie developed a passion for chemistry and chemical education, searching for more appropriate and interesting ways to transmit the essential knowledge and enthusiasm…
Descriptors: Researchers, Chemistry, Science Laboratories, Science Instruction
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Cormier, Sebastien; Steinberg, Richard – Physics Teacher, 2010
A great deal has long been known about student difficulties connecting real-world experiences with what they are learning in their physics classes, making learning basic ideas of classical physics challenging. Understanding these difficulties has led to the development of many instructional approaches that have been shown to help students make…
Descriptors: Twins, Physics, Interviews, Teaching Methods
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Newman, Dina L.; Catavero, Christina M.; Wright, L. Kate – CBE - Life Sciences Education, 2012
Cellular processes that rely on knowledge of molecular behavior are difficult for students to comprehend. For example, thorough understanding of meiosis requires students to integrate several complex concepts related to chromosome structure and function. Using a grounded theory approach, we have unified classroom observations, assessment data, and…
Descriptors: Genetics, Grounded Theory, Data Analysis, Concept Teaching
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Sozbilir, Mustafa; Bennett, Judith M. – Journal of Chemical Education, 2007
Entropy is that fundamental concept of chemical thermodynamics, which explains the natural tendency of matter and energy in the Universe. The analysis presents the description of entropy, as understood by the Turkish chemistry undergraduates.
Descriptors: Scientific Concepts, Fundamental Concepts, Chemistry, Thermodynamics
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Copperman, Elana; Beeri, Catriel; Ben-Zvi, Nava – Innovations in Education and Teaching International, 2007
This paper introduces various visual models for the analysis and description of learning processes. The models analyse learning on two levels: the dynamic level (as a process over time) and the functional level. Two types of model for dynamic modelling are proposed: the session trace, which documents a specific learner in a particular learning…
Descriptors: Learning Processes, Visualization, Models, Visual Aids
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