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Keren Dali; Ashlyn Velte; Stephanie Anderson; Michelle Ganz; John Lindaman; Miriam Tuliao – Journal of Education for Library and Information Science, 2025
Resulting from the collaboration between five practicing professionals and an LIS faculty member, this article illuminates the experiences of librarians and archivists who engage with LIS students on a continuous basis as guest speakers in LIS classrooms. The phenomenological approach helps to elicit first-hand accounts that encapsulate…
Descriptors: Team Teaching, Professional Personnel, Library Schools, Learning Activities
Elizabeth L. Day; Steven J. Petritis; Hunter McFall-Boegeman; Jacob Starkie; Mengqi Zhang; Melanie M. Cooper – Journal of Chemical Education, 2024
Green and sustainable chemistry (GSC) will become ever more central to the study of chemistry. This is demonstrated by commitments from the American Chemical Society, particularly the Committee on Professional Training and the Green Chemistry Institute, and the United Nations (UN Sustainable Development Goals), which underscore the urgent need for…
Descriptors: Chemistry, Science Education, Sustainability, Ecology
Hodson, Derek – International Journal of Science Education, 2014
This opinion piece paper urges teachers and teacher educators to draw careful distinctions among four basic learning goals: learning science, learning about science, doing science and learning to address socio-scientific issues. In elaboration, the author urges that careful attention is paid to the selection of teaching/learning methods that…
Descriptors: Science Instruction, Learning Strategies, Teaching Methods, Inquiry
Stevenson, E.; McArthur, J. – International Journal for Academic Development, 2015
In this Reflection on Practice we propose a triple nexus of research, public engagement and teaching that could provide a new pathway for academic developers to enable greater engagement in learning and teaching issues from science, technology, engineering, and mathematics (STEM) academics. We argue that the public engagement activities demanded…
Descriptors: STEM Education, Instructional Innovation, Teaching Methods, Science Instruction
Gunckel, Kristin L.; Tolbert, Sara – Journal of Research in Science Teaching, 2018
The push for STEM has raised the visibility of engineering as a discipline that all students should learn. With the release of the "Framework for K-12 Science Education" and the Next Generation Science Standards (NGSS), engineering now has an official place in the science curriculum. In both the "Framework" and the NGSS,…
Descriptors: Engineering Education, Science Instruction, Standards, Elementary Secondary Education
Núñez, Rafael – International Journal of Science Education, 2015
The last couple of decades have seen an enormous development in the study of embodied cognition through the investigation of conceptual mappings, such as conceptual metaphor and conceptual blending. Initially, this progress was achieved at a theoretical level, and more recently through empirical research in basic science--from psycholinguistics,…
Descriptors: Cognitive Mapping, Concept Formation, Scientific Concepts, Schemata (Cognition)
Kinniburgh, Leah H.; Shaw, Edward L. – Science Activities: Classroom Projects and Curriculum Ideas, 2009
The No Child Left Behind Act (2001) placed pressure on elementary teachers to raise standardized test scores in reading and mathematics. Unfortunately, the focus on reading and math has led to reduced time for science instruction. Mandatory standardized testing in science began in elementary schools across the United States in 2007. Instructing…
Descriptors: Reading Comprehension, Federal Legislation, Standardized Tests, Science Instruction
Powerful Knowledge and Quality Talk: Maximising Learning of Genetics during Collaborative Group Work
Venville, Grady – Cultural Studies of Science Education, 2009
This commentary brings additional theoretical perspectives to bear on data and findings presented by Anniken Furberg and Hans Christian Arnseth in their paper on students' meaning making in genetics in collaborative learning activities. The theoretical perspectives converge on the importance of maximizing students' learning in genetics. The…
Descriptors: Educational Research, Genetics, Teaching Methods, Cooperative Learning
Reis, Giuliano – Cultural Studies of Science Education, 2009
The present is a commentary on the article authored by Oliveira, Colak, and Akerson; and as such, it should provoke readers to re-consider the study from a different perspective, one that does not prescribe any intentionality to participants' discourse. It is also my contention that students and teachers should be treated as co-constitutives of…
Descriptors: Environmental Education, Science Education, Curriculum Development, Learning Activities
Aucoin, P. J. – Pathways: The Ontario Journal of Outdoor Education, 2011
Over the past three decades, environmental issues have been on the global forefront and continue to affect people's daily lives. Although the need for environmental attention is at an all-time high, outdoor and environmental education (OEE) plays an insufficient role in school systems. As technology continues to contribute to advancements in every…
Descriptors: Foreign Countries, Place Based Education, Outdoor Education, Environmental Education
Brandt, Danita – Journal of Geoscience Education, 2009
2009 marked the bicentennial of Charles Darwin's birth (February 12) and the 150th anniversary (in November) of the publication of Darwin's "extended abstract" "On the Origin of Species by Natural Selection." Universities, scientific societies, and disciplinary journals anticipated this event by organizing meetings, theme…
Descriptors: Earth Science, Recognition (Achievement), Evolution, Scientific Principles
Pierce, Benjamin A.; Honeycutt, Brenda B. – American Biology Teacher, 2007
Probability is an essential tool for understanding heredity and modern genetics, yet many students have difficulty with this topic due to the abstract and quantitative nature of the subject. To facilitate student learning of probability in genetics, we have developed a set of hands-on, cooperative activities that allow students to determine…
Descriptors: Heredity, Learning Activities, Genetics, Statistical Analysis
Leyden, Michael B. – Teaching PreK-8, 1996
Introduces 25 creative science activities that are grouped under 4 categories: physical science, earth science, life science, and process activities. (MOK)
Descriptors: Biological Sciences, Earth Science, Learning Activities, Physical Sciences

DeBruin, Jerome E. – School Science and Mathematics, 1980
Discusses the phases in the learning process as described originally by David Hawkins. The aspect of choice is included as each phase is described. The intent of the activities planned according to this approach is a happy, curious, and inquisitive child. (Author/SA)
Descriptors: Elementary Education, Elementary School Science, Learning Activities, Learning Experience

Huffman, Amy Bruno – Young Children, 1996
Describes an early childhood educator's approach to teaching children about rain, rainbows, clouds, precipitation, the sun, air, and wind. Recommends ways to organize study topics and describes experiments that can help children better understand the different elements of weather. (MOK)
Descriptors: Curriculum Design, Early Childhood Education, Imagination, Learning Activities