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Showing 61 to 75 of 345 results Save | Export
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Wang, Ting; Li, Min; Thummaphan, Phonraphee; Ruiz-Primo, Maria Araceli – International Journal of Testing, 2017
Contextualized items have been widely used in science testing. Despite common use of item contexts, how the influence of a chosen context on the reliability and validity of the score inferences remains unclear. We focused on sequential cues of contextual information, referring to the order of events or descriptions presented in item contexts. We…
Descriptors: Science Tests, Cues, Difficulty Level, Test Items
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Malgieri, Massimiliano; Onorato, Pasquale; De Ambrosis, Anna – Physical Review Physics Education Research, 2017
In this paper we present the results of a research-based teaching-learning sequence on introductory quantum physics based on Feynman's sum over paths approach in the Italian high school. Our study focuses on students' understanding of two founding ideas of quantum physics, wave particle duality and the uncertainty principle. In view of recent…
Descriptors: Teaching Methods, Science Instruction, Quantum Mechanics, Physics
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Rovšek, Barbara; Guštin, Andrej – Physics Education, 2018
An astronomy "experiment" composed of three parts is described in the article. Being given necessary data a simple model of inner planets of the solar system is made in the first part with planets' circular orbits using appropriate scale. In the second part revolution of the figurines used as model representations of the planets along…
Descriptors: Motion, Scientific Concepts, Scientific Principles, Science Activities
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Lee, Silvia Wen-Yu – International Journal of Science and Mathematics Education, 2018
The purpose of this study was, first, to understand the item hierarchy regarding students' understanding of scientific models and modeling (USM). Secondly, this study investigated Taiwanese students' USM progression from 7th to 12th grade, and after participating in a model-based curriculum. The questionnaire items were developed based on 6…
Descriptors: Scientific Principles, Models, Experimental Groups, Student Surveys
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Bruxvoort, Crystal; Jadrich, James – Science Teacher, 2016
Science students should undertake engineering design projects and carry out scientific investigations, as recommended by the "Next Generation Science Standards" (NGSS Lead States 2013). However, studies show that students misconstrue the goals of science and engineering and are uncertain about their respective practices (Gilbert and Wade…
Descriptors: STEM Education, Science Instruction, Equipment, Engineering
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Heikkinen, Lasse; Savinainen, Antti; Saarelainen, Markku – Physics Teacher, 2016
The ray tracing method is widely used in teaching geometrical optics at the upper secondary and university levels. However, using simple and straightforward examples may lead to a situation in which students use the model of ray tracing too narrowly. Previous studies show that students seem to use the ray tracing method too concretely instead of…
Descriptors: Optics, Geometric Concepts, Secondary School Science, College Science
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Doucette, Danny; Clark, Russell; Singh, Chandralekha – Physical Review Physics Education Research, 2020
At universities where introductory physics labs are taught by graduate student teaching assistants (TAs), there is a need for specialized professional development for those TAs. This paper presents a specific instantiation of a model for lab TA professional development that uses a combination of cognitive apprenticeship and expectancy-value…
Descriptors: Faculty Development, Teaching Assistants, Physics, Science Instruction
Gropper, George L. – Educational Technology, 2017
What would it take for instructional design to qualify as a bona fide applied discipline? First and foremost, a fundamental requirement is a testable and tested theoretical base. Untested rationales until verified remain in limbo. Secondly, the discipline's applied prescriptions must be demonstrably traceable to the theoretical base once it is…
Descriptors: Instructional Design, Intellectual Disciplines, Educational Technology, Technology Integration
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Lotter, Christine; Taylor, Laurie – Science Teacher, 2016
In the 2 day lesson presented in this article, students explain how ionic substances interact in solutions by developing and revising their own explanatory models. The lesson engaged students in three-dimensional learning through creating and revising their own models to explain the interaction of ionic substances and polar molecules in a closed…
Descriptors: Molecular Structure, Science Activities, Science Instruction, Scientific Methodology
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Rice, Joshua E.; Rugg, Bradley; Davis, Sharon – Journal of Extension, 2016
Youth involved in 4-H projects have been engaged in science-related endeavors for years. Since 2006, 4-H has invested considerable resources in the advancement of science learning. The new Minnesota 4-H Science of Agriculture Challenge program challenges 4-H youth to work together to identify agriculture-related issues in their communities and to…
Descriptors: Youth Programs, Agriculture, Community Problems, Community Programs
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Stavrou, Dimitris; Michailidi, Emily; Sgouros, Giannis – Chemistry Education Research and Practice, 2018
Introducing Nanoscience and Nanotechnology (NST) topics into school science curricula is considered useful for an in-depth understanding of the content, processes and nature of science and technology, and also for negotiating the social aspects of science. This study examines (a) the development of an inquiry-based Teaching-Learning Sequence (TLS)…
Descriptors: Sequential Learning, Chemistry, Models, Communities of Practice
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Adúriz-Bravo, Agustín – Science & Education, 2013
In this paper I inspect a "semantic" view of scientific models taken from contemporary philosophy of science-I draw upon the so-called "semanticist family", which frontally challenges the received, syntactic conception of scientific theories. I argue that a semantic view may be of use both for science education in the…
Descriptors: Science Education, Models, Scientific Principles, Philosophy
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Hardman, Mark – School Science Review, 2017
Doing science involves the development and evaluation of models. These models are not objective truths but can be understood as explanations, which scientists use to explore and reason about an aspect of the world. Learning science involves students expressing and engaging with models in the classroom. However, this learning should not be seen as…
Descriptors: Models, Science Education, Learning Strategies, Learning Processes
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Robischon, Marcel A. – American Biology Teacher, 2014
Gas diffusion, as a basis for complex biological processes such as respiration, is a core principle for understanding fundamental physiology. Students, however, often find these concepts challenging, in particular when expressed formally as in Fick's law of gas diffusion. This introduction to Fick's law uses the representations of…
Descriptors: Science Instruction, Biology, Physiology, Scientific Concepts
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Sadler-Smith, Eugene – Creativity Research Journal, 2015
Based on a detailed reading of Graham Wallas' "Art of Thought" (1926) it is argued that his four-stage model of the creative process (Preparation, Incubation, Illumination, Verification), in spite of holding sway as a conceptual anchor for many creativity researchers, does not reflect accurately Wallas' full account of the creative…
Descriptors: Creativity, Models, Scientific Principles, Discovery Processes
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