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Gkouskou, Eirini; Tunnicliffe, Sue Dale – Science Education International, 2017
?he nature of scientific research goes beyond the learning of concepts and basic manipulation to the key factors of engaging students in identifying relevant evidence and reflecting on its interpretation. It is argued that young children have the ability to acquire viable, realistic concepts of the living world when involved in relevant activities…
Descriptors: Observational Learning, Scientific Research, Museums, Pretests Posttests
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Vale, Marcus R. – Advances in Physiology Education, 2016
Surveillance cameras are prevalent in various public and private areas, and they can also be coupled to optical microscopes and telescopes with excellent results. They are relatively simple cameras without sophisticated technological features and are much less expensive and more accessible to many people. These features enable them to be used in…
Descriptors: Foreign Countries, Photography, Laboratory Equipment, Biological Sciences
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Zuiker, Steven J.; Wright, Kyle – Interactive Learning Environments, 2015
This design-based research study considers the learner-generated design and refinement of a school garden. We report one enactment of the Connected Gardening project in order to illuminate and understand how a fourth-grade class organizes and refines its garden plot using observations of the physical environment and evaluations of data from a…
Descriptors: Gardening, Environmental Education, Science Education, Elementary School Students
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Sesen, Burcin Acar – Chemistry Education Research and Practice, 2013
The purpose of this study was to investigate pre-service science teachers' understanding of surface tension, cohesion and adhesion forces by using computer-mediated predict-observe-explain tasks. 22 third-year pre-service science teachers participated in this study. Three computer-mediated predict-observe-explain tasks were developed and applied…
Descriptors: Computer Assisted Testing, Preservice Teachers, Knowledge Level, Scientific Concepts
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Chang, Hsin-Yi; Linn, Marcia C. – Journal of Research in Science Teaching, 2013
Powerful online visualizations can make unobservable scientific phenomena visible and improve student understanding. Instead, they often confuse or mislead students. To clarify the impact of molecular visualizations for middle school students we explored three design variations implemented in a Web-based Inquiry Science Environment (WISE) unit on…
Descriptors: Scaffolding (Teaching Technique), Science Education, Visualization, Middle School Students
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Vaughn, Meredith Houle; Gatling, Anne – Science and Children, 2013
English language learners (ELLs) bring a wealth of knowledge to science classrooms, yet often that knowledge is untapped by traditional instruction and assessment. As classrooms become increasingly diverse, it is critical to recognize the depth of understandings ELLs bring to classrooms to explain the scientific world around them. English language…
Descriptors: English Language Learners, Inquiry, Language Acquisition, Plants (Botany)
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Zimmerman, Heather Toomey – Journal of Research in Science Teaching, 2012
This article presents an analysis of the longitudinal consequences of out-of-school science learning with a conceptual framework that connects the intentions of youth to their participation in science. The focus is on one girl's science activities in her home and hobby pursuits from fourth to seventh grade to create an empirical account of how…
Descriptors: Science Education, Elementary School Students, Middle School Students, Grade 4
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Trundle, Kathy Cabe; Sackes, Mesut – Science and Children, 2008
The "National Science Education Standards (NSES)" state that students in grades K-4 are expected to understand that astronomical objects in the sky, including the Sun, Moon, and stars--have properties, locations, and patterns of movement that can be observed and described. They further suggest using an inquiry-based approach to teach…
Descriptors: Space Sciences, Astronomy, Science Activities, Elementary School Students
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Kelly, Bruce – Science Teacher, 2006
Analyzing real motion with frame-by-frame precision can be conducted using modestly priced digital-video camcorders. Although well below the 1,000 frames-per-second threshold of high-speed cameras, commercially available camcorders grab 30 frames per second. A replay dissected at this lower frequency is fun to watch, challenges students'…
Descriptors: Student Attitudes, Student Participation, Science Activities, Motion