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Phillips, A. M.; Gouvea, E. J.; Gravel, B. E.; Beachemin, P. -H.; Atherton, T. J. – Physical Review Physics Education Research, 2023
Computation is intertwined with essentially all aspects of physics research and is invaluable for physicists' careers. Despite its disciplinary importance, integration of computation into physics education remains a challenge and, moreover, has tended to be constructed narrowly as a route to solving physics problems. Here, we broaden Physics…
Descriptors: Physics, Science Instruction, Teaching Methods, Models
Saat, Rohaida Mohd; Piaw, Chua Yan; Fadzil, Hidayah Mohd – International Journal of Science and Mathematics Education, 2023
Science, technology, engineering, and mathematics (STEM) education is regarded by many countries as fundamental to economic growth and as a result received continued attention. Scientist-teacher-student partnership (STSP) is one of the ways to make STEM education attractive and meaningful. However, research on the performance quality of STSP is…
Descriptors: STEM Education, Partnerships in Education, Scientists, Science Teachers
Harris, Emily; Ballard, Heidi – Science and Children, 2018
Educators and researchers often suggest that participation in "real" science may help students "think like" or "see themselves as" scientists because students participate in and contribute to the broader scientific community. However, bringing citizen science (CS) activities into the classroom does not necessarily…
Descriptors: Science Instruction, Citizen Participation, Models, Scientists
Pelaez, Nancy; Anderson, Trevor R.; Gardner, Stephanie M.; Yin, Yue; Abraham, Joel K.; Barlett, Edward L.; Gormally, Cara; Hurney, Carol A.; Long, Tammy M.; Newman, Dina L.; Sirum, Karen; Stevens, Michael T. – CBE - Life Sciences Education, 2018
Since 2009, the U.S. National Science Foundation Directorate for Biological Sciences has funded Research Coordination Networks (RCN) aimed at collaborative efforts to improve participation, learning, and assessment in undergraduate biology education (UBE). RCN-UBE projects focus on coordination and communication among scientists and educators who…
Descriptors: Science Instruction, Biology, Models, Undergraduate Students
Fujiwara, Y.; Velasco, R. C. L.; Jones, L. K.; Hite, R. L. – International Journal of Science Education, 2022
Memes within animated graphical interchange formats (GIFs) are developed and shared by Internet users to communicate cultural ideas, symbols, or practices for a wide global audience. Among the billions of GIFs shared internationally, some portray scientists engaged in scientific work. Media and science education scholarship alike have evidenced…
Descriptors: Content Analysis, Social Media, Visual Aids, Scientists
Levy, Amanda R. – ProQuest LLC, 2018
Limited research has been done on the implementation of experiential learning to align with science and engineering practices. This research project developed an instrumental case study to examine the efficacy of an experiential education framework for teaching and learning water science and engineering practices in the elementary science…
Descriptors: Water, Science Instruction, Elementary School Science, Teaching Methods
Collins, Caroloyn S.; Perkins, Molly D. – Science and Children, 2020
This article is a presentation of a three-day sequence of lessons that engaged fifth-grade students in an exploration following the activities of scientists. From asking questions and analyzing data, to engaging in scientific modeling, to defending their theories to the scientific (classroom) community, these fifth graders were mirroring how…
Descriptors: Science Instruction, Teaching Methods, Earth Science, Units of Study
Newella, MiKayla J.; Ulrich, Paul N. – Journal of Microbiology & Biology Education, 2022
Attrition from the science, technology, engineering, and math (STEM) pipeline limits the number of graduates needed to meet STEM workforce demand and impedes efforts to diversify the workforce. Identifying factors that underlie academic success and STEM persistence is an important component to increasing the number of STEM graduates. The current…
Descriptors: STEM Careers, Career Pathways, Science Education, Science Interests
Labouta, Hagar Ibrahim; Kenny, Natasha A.; Li, Rui; Anikovskiy, Max; Reid, Leslie; Cramb, David Thomas – International Journal of Science Education, 2018
Research on understanding the full extent that an authentic science research experience engages students in how scientists think and act is sparse. 'Learning-science-by-doing-science' (LSDS) is an emerging self-guided process-learning model in postsecondary science education. It offers authentic science research opportunities that drive students…
Descriptors: Experiential Learning, Hands on Science, Science Education, Science Process Skills
Achiam, Marianne; Simony, Leonora; Lindow, Bent Erik Kramer – International Journal of Science Education, 2016
Although the scientific disciplines conduct practical work in different ways, all consider practical work as the essential way of connecting objects and phenomena with ideas and the abstract. Accordingly, practical work is regarded as central to science "education" as well. We investigate a practical, object-based palaeontology programme…
Descriptors: Museums, Science Activities, Science Instruction, Science Education
Tala, Suvi; Vesterinen, Veli-Matti – Science & Education, 2015
Understanding nature of science (NOS) is widely considered an important educational objective and views of NOS are closely linked to science teaching and learning. Thus there is a lively discussion about what understanding NOS means and how it is reached. As a result of analyses in educational, philosophical, sociological and historical research,…
Descriptors: Scientific Principles, Science Instruction, Scientists, Interviews
Stamer, Insa; Pönicke, Hanno; Tirre, Frederike; Laherto, Antti; Höffler, Tim; Schwarzer, Stefan; Parchmann, Ilka – Research in Science & Technological Education, 2020
Background: Many students have incomplete or incorrect perceptions of science and scientists. These simplified images, mediated by media or influential agents of socialisation, result in common stereotypes. Especially for occupational choices it is important to convey an authentic image about science and scientists. Purpose: One manner to convey…
Descriptors: Video Technology, Vignettes, Scientists, Student Attitudes
Shultz, Ginger V.; Gere, Anne Ruggles – Journal of Chemical Education, 2015
Traditional methods for teaching the Lewis dot structure model emphasize rule-based learning and often neglect the purpose and function of the model. Thus, many students are unable to extend their understanding of molecular structures in new contexts. The assignment described here addresses this issue by asking students to read and write about the…
Descriptors: Science Instruction, Chemistry, Teaching Methods, Scientists
Yenilmez Turkoglu, Ayse; Oztekin, Ceren – Research in Science & Technological Education, 2016
Background: Scientific models have important roles in science and science education. For scientists, they provide a means for generating new knowledge or function as an accessible summary of scientific studies. In science education, on the other hand, they are accessible representations of abstract concepts, and are also organizational frameworks…
Descriptors: Preservice Teachers, Science Teachers, Teacher Attitudes, Teacher Role
Weiland, Ingrid; Blieden, Katherine; Akerson, Valarie – Science and Children, 2014
The nature of science (NOS) describes what science is and how knowledge in science is developed (NSTA 2013). To develop elementary students' understandings of how scientists explore the world, the authors--an education professor and a third-grade teacher--endeavored to integrate NOS into a third-grade life science unit. Throughout the lesson,…
Descriptors: Scientific Principles, Science Education, Elementary School Science, Science Instruction