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Showing 1 to 15 of 22 results Save | Export
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Tan, Michael; Koh, Teck Seng – Science Education, 2023
In considering goals for science education, it is conventional to make arguments for the utility of scientific knowledge for a variety of purposes. Less prominent are rationales based on the beauty or truth of science. In this paper, we examine how an approach to science education might be different if we shift the goals of communication to an…
Descriptors: Science Education, Classroom Communication, Knowledge Level, Evidence
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Chaonan Liu; Dayna L. Dreger; Shiyao Liu; Ala Samarapungavan; Stephanie M. Gardner; Kari L. Clase; Nancy Pelaez – Journal of Biological Education, 2024
Recent emphasis on learning biology through scientific investigations has focused instruction on understanding and using scientific evidence. To unpack the complexities of evidentiary reasoning, here we present a novel laboratory investigation for teaching the Hardy Weinberg Equilibrium (HWE) in an introductory biology laboratory course that was…
Descriptors: Science Education, Science Instruction, Teaching Methods, Science Process Skills
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Mehl, Cathy Ellen; Jin, Hui; Llort, Kenneth F. – EURASIA Journal of Mathematics, Science and Technology Education, 2020
Argumentation is an important component of scientific education (Osborne, 2010). However, how students create and evaluate competing arguments in scientific investigations is a complex construct, which presents significant challenges for assessment. We engaged 349 middle and high school students in a virtual scientific investigation based on an…
Descriptors: Decision Making, Persuasive Discourse, Authentic Learning, Problem Based Learning
Pasley, Joan D.; Trygstad, Peggy J.; Banilower, Eric R. – Horizon Research, Inc., 2016
The Next Generation Science Standards (NGSS) are composed of three intertwined dimensions--disciplinary core ideas, science and engineering practices, and crosscutting concepts--that provide a foundation for what students should know and be able to do at various grade levels. The eight science practices outlined in the NGSS are critical components…
Descriptors: Program Implementation, Science Education, Elementary Secondary Education, Scientific Principles
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Schalk, Herman H.; van der Schee, Joop A.; Boersma, Kerst Th. – Research in Science Education, 2013
Ensuring the quality of investigations requires the understanding of procedures by which empirical evidence is obtained. This can be interpreted as becoming aware of and using criteria for evidence in one's mental structure. The question is whether this process can be observed in practice. In two schools for pre-university education where 11th…
Descriptors: Foreign Countries, Evidence, Biology, Science Education
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Roberts, Ros; Johnson, Philip – Curriculum Journal, 2015
Recent school science curriculum developments in many countries emphasise that scientists derive evidence for their claims through different approaches; that such practices are bound up with disciplinary knowledge; and that the quality of data should be appreciated. This position paper presents an understanding of the validity of data as a set of…
Descriptors: Educational Quality, Data, Concept Mapping, Scientific Concepts
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Clauser, Brian E.; Margolis, Melissa J.; Holtman, Matthew C.; Katsufrakis, Peter J.; Hawkins, Richard E. – Advances in Health Sciences Education, 2012
During the last decade, interest in assessing professionalism in medical education has increased exponentially and has led to the development of many new assessment tools. Efforts to validate the scores produced by tools designed to assess professionalism have lagged well behind the development of these tools. This paper provides a structured…
Descriptors: Evidence, Medical Education, Psychological Evaluation, Validity
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Knaggs, Christine M.; Schneider, Rebecca M. – Research in Science Education, 2012
It is considered important for students to participate in scientific practices to develop a deeper understanding of scientific ideas. Supporting students, however, in knowing and understanding the natural world in connection with generating and evaluating scientific evidence and explanations is not easy. In addition, writing in science can help…
Descriptors: Evidence, Investigations, Maps, Science Education
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Krajcik, Joseph; Merritt, Joi – Science Teacher, 2012
The Next Generation Science Standards (NGSS)--now in development--will be based on "A Framework for K-12 Science Education" released by the National Research Council last summer. The "Framework" identifies seven scientific and engineering practices that should be used in science classrooms. These practices reflect the multiple ways in which…
Descriptors: Computers, Evidence, Engineering, Classrooms
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Zhang, Yang; Koerner, Tess; Miller, Sharon; Grice-Patil, Zach; Svec, Adam; Akbari, David; Tusler, Liz; Carney, Edward – Developmental Science, 2011
Speech scientists have long proposed that formant exaggeration in infant-directed speech plays an important role in language acquisition. This event-related potential (ERP) study investigated neural coding of formant-exaggerated speech in 6-12-month-old infants. Two synthetic /i/ vowels were presented in alternating blocks to test the effects of…
Descriptors: Evidence, Brain Hemisphere Functions, Infants, Brain
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King, Nicola C.; Aves, Stephen J. – Bioscience Education, 2012
Following the publication of the higher education white paper increasing entry tariff and widening participation have become even more important issues for universities. This report examines the relationship between entry tariff and undergraduate achievement in Biosciences at the University of Exeter. We show that, whilst there is a significant…
Descriptors: Evidence, Higher Education, Investigations, Academic Achievement
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Krajcik, Joseph; Merritt, Joi – Science Scope, 2012
The Next Generation Science Standards (NGSS)--now in development--will be based on "A Framework for K-12 Science Education" released by the National Research Council last summer. The "Framework" identifies seven scientific and engineering practices that should be used in science classrooms. These practices reflect the multiple ways in which…
Descriptors: Evidence, Engineering, Classrooms, Elementary Secondary Education
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Reiser, Brian J.; Berland, Leema K.; Kenyon, Lisa – Science Scope, 2012
"A Framework for K-12 Science Education" identifies eight science and engineering practices for K-12 classrooms. These practices, along with core ideas and crosscutting concepts, define the nation's learning goals for science. The practices outlined in the framework are: (1) Asking questions and defining problems; (2) Developing and using models;…
Descriptors: Thinking Skills, Evidence, Persuasive Discourse, Elementary Secondary Education
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Valenza, Eloisa; Bulf, Hermann – Developmental Science, 2011
The present study aimed to investigate whether perceptual completion is available at birth, in the absence of any visual experience. An extremely underspecified kinetic visual display composed of four spatially separated fragments arranged to give rise to an illusory rectangle that occluded a vertical rod (illusory condition) or rotated so as not…
Descriptors: Evidence, Stimuli, Mechanics (Physics), Neonates
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Kidd, Celeste; White, Katherine S.; Aslin, Richard N. – Developmental Science, 2011
The ability to infer the referential intentions of speakers is a crucial part of learning a language. Previous research has uncovered various contextual and social cues that children may use to do this. Here we provide the first evidence that children also use speech disfluencies to infer speaker intention. Disfluencies (e.g. filled pauses "uh"…
Descriptors: Evidence, Drama, Cues, Intention
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