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Davis, T. A.; Athey, S. L.; Vandevender, M. L.; Crihfield, C. L.; Kolanko, C. C. E.; Shao, S.; Ellington, M. C. G.; Dicks, J. K.; Carver, J. S.; Holland, L. A. – Journal of Chemical Education, 2015
This activity allows students to visualize the electrolysis of water in a microfluidic device in under 1 min. Instructional materials are provided to demonstrate how the activity meets West Virginia content standards and objectives. Electrolysis of water is a standard chemistry experiment, but the typical laboratory apparatus (e.g., Hoffman cell)…
Descriptors: Science Instruction, Secondary School Science, Science Laboratories, Chemistry
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Kim, Dong-Joong; Kang, Hyangim; Lee, Hyun-Joo – International Education Studies, 2015
The purpose of this study is to investigate characteristics of limit concepts through the simultaneous use of historical and experimental epistemologies. Based on a historical epistemology which is an investigation of historical developments in a mathematical concept raised in the history of mathematics, four different developments of limit…
Descriptors: Foreign Countries, Elementary School Students, High School Students, Grade 5
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de Smedt, Fien; Graham, Steve; Van Keer, Hilde – Journal of Educational Research, 2019
The authors investigated the impact of explicit instruction and peer-assisted writing on students' writing motivation and self-efficacy for writing. Eleven teachers and their 206 fifth- and sixth-grade students participated in a 2 (explicit instruction vs. writing opportunities without explicit instruction) × 2 (peer-assisted writing vs. writing…
Descriptors: Writing Attitudes, Direct Instruction, Self Efficacy, Grade 5
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Pals, Frits F. B.; Tolboom, Jos L. J.; Suhre, Cor J. M.; van Geert, Paul L. C. – International Journal of Science Education, 2018
How can science teachers support students in developing an appropriate declarative knowledge base for solving problems? This article focuses on the question whether the development of students' memory of scientific propositions is better served by writing propositions down on paper or by making drawings of propositions either by silent or…
Descriptors: Memorization, Learning Strategies, Science Education, Problem Solving
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Siler, Stephanie Ann; Klahr, David – Journal of Educational Psychology, 2016
One obstacle to understanding abstract concepts such as the "control of variables" strategy (CVS) is the tendency for learners to focus on surface rather than deep features in instructional materials. However, in tasks such as learning CVS, these same surface features may also support understanding, provided learners realize the…
Descriptors: Middle School Students, Learning, Science Experiments, Research Design
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Vieira, Camilo; Goldstein, Molly Hathaway; Purzer, Senay; Magana, Alejandra J. – Journal of Learning Analytics, 2016
Engineering design is a complex process both for students to participate in and for instructors to assess. Informed designers use the key strategy of conducting experiments as they test ideas to inform next steps. Conversely, beginning designers experiment less, often with confounding variables. These behaviours are not easy to assess in…
Descriptors: Engineering, Design, Experiments, Student Behavior
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Bentley, Brendan; Yates, Gregory C. R. – Cogent Education, 2017
Within mathematics teaching, ways to help students resolve proportional reasoning problems remains a topical issue. This study sought to investigate how a simple innovative procedure could be introduced to enhance skill acquisition. In two classroom-based experiments, 12-year-old students were asked to solve proportional reasoning mathematics…
Descriptors: Mathematics Instruction, Mathematical Logic, Thinking Skills, Experiments
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Castro, Jed Aries F.; Morales, Marie Paz E. – Journal of Turkish Science Education, 2017
Student encountered challenges in performing guided inquiry learning (GIL) activities are a minority literature in science education, but may provide valuable inputs to developing science process skills vital to scientific literacy. This study determined the challenges and difficulties by science-oriented students in performing GIL activities in…
Descriptors: Biology, Inquiry, Active Learning, Science Education
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de Beer, Huub; Gravemeijer, Koeno; van Eijck, Michiel – ZDM: The International Journal on Mathematics Education, 2015
To prepare students for participation in our society, where interpreting, representing, and manipulating of dynamic phenomena are becoming key activities, we believe that one should start developing a mathematical understanding of change at an early age. We therefore started a design research project to teach the concept of instantaneous speed in…
Descriptors: Mathematics Skills, Skill Development, Grade 5, Elementary School Students
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Brown, Patrick L.; Concannon, James; Hansert, Bernhard; Frederick, Ron; Frerichs, Glen – Science Activities: Classroom Projects and Curriculum Ideas, 2015
Why does a balloon deflate when it is left in a cold car; or why does one have to pump up his or her bike tires in the spring after leaving them in the garage all winter? To answer these questions, students must understand the relationships among temperature, pressure, and volume of a gas. The purpose of the Predict, Share, Observe, and Explain…
Descriptors: Investigations, Student Research, Climate, Physics
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Dupuis, Jason; Ludwig-Palit, DeDee – Journal of Museum Education, 2016
In 2011, the Museum of Science and Industry in Chicago, Illinois embarked on the creation of a program that allows middle and high school students to explore community health issues using human patient simulation. MedLab was created to engage students in an authentic exploration of medical science, biology, and human anatomy, with a particular…
Descriptors: Informal Education, Museums, Science Education, Middle School Students
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Crujeiras-Pérez, B.; Jiménez-Aleixandre, M. P. – Chemistry Education Research and Practice, 2017
This paper examines the process of high school students' planning investigations in the chemistry laboratory across two consecutive academic years in terms of their actions and their progress. The context is a set of five inquiry-based laboratory tasks in which participants (9th and 10th graders, 14-15 and 15-16 years of age) are required to plan…
Descriptors: High School Students, Learner Engagement, Longitudinal Studies, Foreign Countries
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Chang, Hsin-Yi – Interactive Learning Environments, 2017
Two investigations were conducted in this study. In the first experiment, the effects of two types of interactivity with a computer simulation were compared: experimentation versus observation interactivity. Experimentation interactivity allows students to use simulations to conduct virtual experiments, whereas observation interactivity allows…
Descriptors: Computer Simulation, Interaction, Scaffolding (Teaching Technique), Experiments
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Sullivan, Sarah; Gnesdilow, Dana; Puntambekar, Sadhana; Kim, Jee-Seon – International Journal of Science Education, 2017
Physical and virtual experimentation are thought to have different affordances for supporting students' learning. Research investigating the use of physical and virtual experiments to support students' learning has identified a variety of, sometimes conflicting, outcomes. Unanswered questions remain about how physical and virtual experiments may…
Descriptors: Middle School Students, Mechanics (Physics), Science Instruction, Scientific Concepts
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Kelley, Amanda L.; Hanson, Paul R.; Kelley, Stephanie A. – American Biology Teacher, 2015
Ocean acidification, a product of CO[subscript 2] absorption by the world's oceans, is largely driven by the anthropogenic combustion of fossil fuels and has already lowered the pH of marine ecosystems. Organisms with calcium carbonate shells and skeletons are especially susceptible to increasing environmental acidity due to reduction in the…
Descriptors: Science Instruction, Climate, Oceanography, Animals
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