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Jorge Carlos Sanabria-Zepeda; Pamela Geraldine Olivo-Montaño; Inna Artemova; Amadeo José Argüelles-Cruz – Journal of Technology and Science Education, 2024
This study proposes a narrative pedagogical model for creating and developing case studies that highlight the challenges and issues surrounding the megatrends of the Fourth Industrial Revolution, specifically "People and the Internet." This proposal, framed in an online learning environment, represents the second stage of an educational…
Descriptors: Educational Trends, Trend Analysis, Artificial Intelligence, Technology Uses in Education
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Förster, Christoph; Heinze, Katja – Journal of Chemical Education, 2020
Instructive, inexpensive, and environmentally friendly laboratory syntheses of two highly luminescent copper(I) complexes CuI(PPh[subcript 3])[subscript 2](py[superscript R]) (py[superscript R] = pyridine, 4-cyanopyridine) are described for second-year/upper-division undergraduate inorganic chemistry students. Both complexes exhibit bright…
Descriptors: Science Instruction, Inorganic Chemistry, College Science, Undergraduate Study
Robson, Sue – Routledge, Taylor & Francis Group, 2012
Developing "Thinking and Understanding in Young Children" presents a comprehensive and accessible overview of contemporary theory and research about young children's developing thinking and understanding. Throughout this second edition, the ideas and theories presented are enlivened by transcripts of children's activities and conversations taken…
Descriptors: Video Technology, Young Children, Visualization, Metacognition
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Jones, Thomas C.; Laughlin, Thomas F. – American Biology Teacher, 2010
Natural selection and other components of evolutionary theory are known to be particularly challenging concepts for students to understand. To help illustrate these concepts, we developed a simulation model of microevolutionary processes. The model features all the components of Hardy-Weinberg theory, with population size, selection, gene flow,…
Descriptors: Evolution, Science Instruction, Biology, Scientific Concepts
Singer, Susan R., Ed.; Nielsen, Natalie R. Ed.; Schweingruber, Heidi A., Ed. – National Academies Press, 2012
The National Science Foundation funded a synthesis study on the status, contributions, and future direction of discipline-based education research (DBER) in physics, biological sciences, geosciences, and chemistry. DBER combines knowledge of teaching and learning with deep knowledge of discipline-specific science content. It describes the…
Descriptors: Student Attrition, Science Education, Public Agencies, Engineering Education
Jonassen, David, Ed.; Land, Susan, Ed. – Routledge, Taylor & Francis Group, 2012
"Theoretical Foundations of Learning Environments" provides students, faculty, and instructional designers with a clear, concise introduction to the major pedagogical and psychological theories and their implications for the design of new learning environments for schools, universities, or corporations. Leading experts describe the most…
Descriptors: Expertise, Communities of Practice, Constructivism (Learning), Instructional Design
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Tufts, Mark A.; Higgins-Opitz, Susan B. – Advances in Physiology Education, 2009
Physiology is an integral component of any medical curriculum. Traditionally, the learning of physiology has relied heavily on systems-based didactic lectures. In 2001, the Nelson R. Mandela School of Medicine (NRMSM; Durban, South Africa) embarked on a problem-based curriculum in which the learning of physiology was integrated with relevant…
Descriptors: Medical Education, Physiology, Problem Based Learning, Teaching Methods
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King, Donna; Bellocchi, Alberto; Ritchie, Stephen M. – Research in Science Education, 2008
Even though several studies have reported positive attitudinal outcomes from context-based chemistry programs, methodological obstacles have prevented researchers from comparing satisfactorily the chemistry-learning outcomes between students who experience a context-based program with those who experience a content-driven program. In this…
Descriptors: Chemistry, Science Instruction, Context Effect, Comparative Analysis
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Costu, Bayram – Chemistry Education Research and Practice, 2008
The aim of this study was to elicit students' conceptions about big bubbles in boiling liquids (water, ethanol and aqueous CuSO[subscript 4] solution). The study is based on twenty-four students at different ages and grades. The clinical interviews technique was conducted to solicit students' conceptions and the interviews were analyzed to…
Descriptors: Concept Formation, Misconceptions, Science Instruction, Scientific Concepts
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Wang, Jing-Ru; Lin, Sheau-Wen – International Journal of Science and Mathematics Education, 2008
This study has resulted in an elementary science methods course that facilitates the identification and description of the changes in students' conceptions and understanding of inquiry teaching, and the cultural influences, reflections, and situational factors influencing these changes. Written responses to open-ended questions, reflective…
Descriptors: Constructivism (Learning), Elementary School Science, Methods Courses, Cultural Influences
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Orgill, Mary Kay; Thomas, Megan – Science Teacher, 2007
Science classes are full of abstract or challenging concepts that are easier to understand if an analogy is used to illustrate the points. Effective analogies motivate students, clarify students' thinking, help students overcome misconceptions, and give students ways to visualize abstract concepts. When they are used appropriately, analogies can…
Descriptors: Misconceptions, Science Instruction, Logical Thinking, Scientific Concepts