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Chen, Lan; Sun, Hongwei; Lai, Chengming – Journal of Chemical Education, 2015
There are two main difficulties in studying molecular symmetry of dihedral point groups. One is locating the C[subscript 2] axes perpendicular to the C[subscript n] axis, while the other is finding the s[subscript]d planes which pass through the C[subscript n] axis and bisect the angles formed by adjacent C[subscript 2] axes. In this paper, a…
Descriptors: Science Instruction, Chemistry, Molecular Structure, Visual Aids
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Erlina, Nia; Susantini, Endang; Wasis; Wicaksono, Iwan; Pandiangan, Paken – Journal of Baltic Science Education, 2018
Evidence-Based Reasoning (EBR) is a framework of inquiry-based teaching for developing scientific reasoning. This research aims to analyze the effectiveness of EBR in inquiry-based Physics teaching to improve students' scientific reasoning. Applying Slovin formula for sample determination, the research involved 139 upper-secondary school students…
Descriptors: Inquiry, Science Instruction, Logical Thinking, Teaching Methods
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Milner-Bolotin, Marina; Marotto, Carlos C. F. – LUMAT: International Journal on Math, Science and Technology Education, 2018
This paper presents a meta-analysis of the literature on parental engagement with children's formal and informal science, technology, engineering and mathematics (STEM) education. Five recurrent themes have emerged from the literature review: The challenges of supporting parents with children's STEM education; STEM education as a bridge between…
Descriptors: Parent Participation, Children, STEM Education, Informal Education
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Hotaling, Scott; Slabach, Brittany L.; Weisrock, David W. – Journal of Biological Education, 2018
The recent increase in accessibility and scale of genetic data available through next-generation sequencing (NGS) technology has transformed biological inquiry. As a direct result, the application and analysis of NGS data has quickly become an important skill for future scientists. However, the steep learning curve for applying NGS technology to…
Descriptors: Biology, Genetics, Data Analysis, Technology Integration
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Najmr, Stan; Chae, Joanna; Greenberg, Mara L.; Bowman, Cory; Harkavy, Ira; Maeyer, Jenine R. – Journal of Chemical Education, 2018
Improving communication between people in science, technology, engineering, and mathematics (STEM) fields and the public is critical to the future of STEM. Partnerships between institutions of higher education with K-12 schools are identified as one effective strategy to support community engagement. We have employed a service-learning model to…
Descriptors: Service Learning, Chemistry, College Science, Science Education
Hansen, Alexandria Killian – ProQuest LLC, 2018
Science education is changing. With the release of the Next Generation Science Standards [NGSS], K-12 teachers are expected to engage students in the practices of scientists and engineers to make sense of disciplinary core ideas and crosscutting concepts (NGSS Lead States, 2013). Simultaneously, there is a push to expose students to Science,…
Descriptors: Preservice Teachers, Elementary School Teachers, Instructional Design, Shared Resources and Services
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Pi-Sui Hsu; Silvia Ginting; Margot Van Dyke – International Journal of Designs for Learning, 2018
The objective of this design case was to describe the development of an online graph-oriented tool to support the representation of collaborative argumentation for middle school students from a faculty expert's perspective and discuss the processes that were instrumental in developing the tool. Supported by the professional staff in the Digital…
Descriptors: Graphs, Persuasive Discourse, Middle School Students, Expertise
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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
Basu, Satabdi; Biswas, Gautam; Sengupta, Pratim; Dickes, Amanda; Kinnebrew, John S.; Clark, Douglas – Research and Practice in Technology Enhanced Learning, 2016
Computational thinking (CT) parallels the core practices of science, technology, engineering, and mathematics (STEM) education and is believed to effectively support students' learning of science and math concepts. However, despite the synergies between CT and STEM education, integrating the two to support synergistic learning remains an important…
Descriptors: Science Instruction, STEM Education, Concept Formation, Middle School Students
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Ågren, J. Arvid; Williamson, Robert J.; Campitelli, Brandon E.; Wheeler, Jill – Journal of Biological Education, 2017
Recent years have seen a dramatic increase in our understanding of the social behaviour of microbes. Here, we take advantage of these developments to present an undergraduate laboratory exercise that uses the cooperative flocculating behaviour of yeast ("Saccharomyces sp.") to introduce the concept of inclusive fitness and teach the…
Descriptors: College Science, Undergraduate Study, Science Laboratories, Genetics
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Cooper, Robert A. – Journal of Biological Education, 2017
Student reasoning about cases of natural selection is often plagued by errors that stem from miscategorising selection as a direct, causal process, misunderstanding the role of randomness, and from the intuitive ideas of intentionality, teleology and essentialism. The common thread throughout many of these reasoning errors is a failure to apply…
Descriptors: Science Process Skills, Misconceptions, Ecology, Evolution
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Brady, Anna G. – Cultural Studies of Science Education, 2017
As has been widely discussed, the National Research Council's (NRC) current policy in United States education advocates supporting students toward acquiring skills to engage in scientific practices. NRC policy also suggests that supporting students in the practices of science may require different approaches than what is required for supporting…
Descriptors: Science Process Skills, Scientific Methodology, Scientific Literacy, Semiotics
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Stanhope, Liz; Ziegler, Laura; Haque, Tabassum; Le, Laura; Vinces, Marcelo; Davis, Gregory K.; Zieffler, Andrew; Brodfuehrer, Peter; Preest, Marion; Belitsky, Jason M.; Umbanhowar, Charles, Jr.; Overvoorde, Paul J. – CBE - Life Sciences Education, 2017
Multiple reports highlight the increasingly quantitative nature of biological research and the need to innovate means to ensure that students acquire quantitative skills. We present a tool to support such innovation. The Biological Science Quantitative Reasoning Exam (BioSQuaRE) is an assessment instrument designed to measure the quantitative…
Descriptors: Test Construction, Science Tests, Biology, Undergraduate Students
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Sensibaugh, Cheryl A.; Madrid, Nathaniel J.; Choi, Hye-Jeong; Anderson, William L.; Osgood, Marcy P. – CBE - Life Sciences Education, 2017
With growing interest in promoting skills related to the scientific process, we studied performance in solving ill-defined problems demonstrated by graduating biochemistry majors at a public, minority-serving university. As adoption of techniques for facilitating the attainment of higher-order learning objectives broadens, so too does the need to…
Descriptors: Problem Solving, Biochemistry, Undergraduate Students, College Science
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Ozdemir, Gokhan; Dikici, Ayhan – Journal of Education in Science, Environment and Health, 2017
The purpose of this study is to explore the strength of relationships between 7th grade students' Scientific Process Skills (SPS), Nature of Science (NOS) beliefs, and Scientific Creativity (SC) through Structural Equation Modeling (SEM). For this purpose, data were collected from 332 students of two public middle school students in Turkey. SPS,…
Descriptors: Science Process Skills, Creativity, Scientific Principles, Knowledge Level
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