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Corinna West; Noah Weeth Feinstein – International Journal of Science Education, Part B: Communication and Public Engagement, 2025
There is an international trend towards fun, irreverent, and social events that feature scientific themes and content. We argue that these events -- what we call Adult Science Entertainment Events, or ASEEs -- are a distinct phenomenon in science education and science communication, deserving of study in their own right. In addition to their…
Descriptors: Recreational Activities, Science Activities, Adult Programs, Informal Education
Xin Xia; Lillian R. Bentley; Xitao Fan; Robert H. Tai – International Journal of Science and Mathematics Education, 2025
This meta-analysis explores the impact of informal science education experiences (such as after-school programs, enrichment activities, etc.) on students' attitudes towards, and interest in, STEM disciplines (Science, Technology, Engineering, and Mathematics). The research addresses two primary questions: (1) What is the overall effect size of…
Descriptors: Elementary Secondary Education, STEM Education, Science Education, Informal Education
Eduardo Martín; Yefrin Ariza – Science & Education, 2025
Contemporary sciences, including the didactics of science, employ computational simulations as tools in their academic endeavors. The construction and application of these simulations are of interest to didactics as they contribute to shaping new perspectives on scientific activity. Consequently, they warrant special attention in…
Descriptors: Computation, Simulation, Science Education, Design
Kenneth Silseth; Anniken Furberg – European Journal of Psychology of Education, 2024
Previous studies have shown both benefits and challenges of group work and whole-class activities in educational settings. One overall finding in the existing literature is that it is challenging for teachers to facilitate whole-class conversations that realise the rich potential of student discussions and undertakings during group work. This…
Descriptors: Science Education, Class Activities, Teaching Methods, Science Instruction
Kaiyuan Chen; Sharon Lyn Chu; Francis Quek; Rebecca J. Schlegel – Journal of Science Education and Technology, 2024
Although research has touted the value of making in educational settings, scant work has been done in formal school contexts utilizing quantitative methods. This could be attributed to the various challenges in integrating making in school settings. To fill in the gap, this study presents an approach to integrate making into science classes at the…
Descriptors: Elementary School Students, Elementary School Science, Science Education, Science Activities
Aaron Christian Wenger – ProQuest LLC, 2024
Contemporary education research seeks causal inferences in order to guide policy and practice. Often well-controlled quasi-experimental and experimental designs are used as they are very useful for supporting and contextualizing causal inferences. Nevertheless, individual studies, even high-quality, resource-intensive randomized controlled trials,…
Descriptors: Science Education, Educational Research, Concept Mapping, Teaching Methods
Azam Ghazali; Zakiah Mohamad Ashari; Joanne Hardman; Mohd Nazir Md Zabit – Journal of Turkish Science Education, 2025
Early science learning has the potential to enhance children's social interaction development, but a lack of resources in schools requires well-structured activities and a supportive learning environment. In a project aimed at helping children develop an interest in science education from an early age, this describes a Project-Based,…
Descriptors: Active Learning, Student Projects, Technology Uses in Education, Science Education
Yanti Herlanti; Shinji Nobira; Yasunobu Kuboki; Qumilaila Qumilaila – International Journal for Lesson and Learning Studies, 2025
Purpose: This study developed an online lesson study, investigated teacher professionalism after following an online lesson study and examined students' environmental literacy. Design/methodology/approach: This study used a mixed-method research design. The qualitative approach entailed observing science learning focussing on environmental issues…
Descriptors: Science Education, Environmental Education, Social Problems, Electronic Learning
Christine Lee; Tessaly Jen; Sarah Lee; D. Teo Keifert; Noel Enyedy – Anthropology & Education Quarterly, 2025
This paper investigates affect as part of children's sensemaking in the context of a play-based mixed-reality science learning environment. We build on theories of affect as disciplinary work by investigating the multiple layers of affect that are essential to children's scientific inquiry and to identify pedagogical moves that recognize, value,…
Descriptors: Children, Human Dignity, Play, Science Education
Nabojit Kar; Chuanliang Huang; Sanjay Sridhar; Madison E. Edwards; Suchismita Ghosh; Marie E. Nikolov; Bianca Paranzino; Xin Yan; Katherine A. Willets; Xingchen Ye; Sara E. Skrabalak – Journal of Chemical Education, 2024
In contemporary society, cultivating scientific literacy among the public is imperative for informed decision-making on matters influencing general well-being. Here, we report the multifaceted activity Magnifying Minds as a collaboration between artists and scientists to enhance scientific literacy through public art. Murals as a medium for…
Descriptors: Integrated Activities, Painting (Visual Arts), Artists, Scientists
Olivia F. McRae; Reyne Pullen; Alice Motion – International Journal of Science Education, Part B: Communication and Public Engagement, 2025
Carefully designed evaluations of informal science events are key to gaining insights into their efficacy and impact on audiences. However, traditional approaches to evaluation, such as interviews and questionnaires, can be disruptive to the audience experience of science events. There is therefore a need to develop and implement new evaluation…
Descriptors: Informal Education, Science Education, Evaluation Methods, Data Collection
John W. Keller; Arianna L. Demmerly – Journal of Chemical Education, 2025
This computational exercise gives students an in-depth look at the reactants, transition state, and product of the crystal violet alkaline hydrolysis reaction. The exercise, which is aimed at second semester general chemistry students, involves DFT energy calculations on five structures: crystal violet cation, crystal violet alcohol, and 4-water…
Descriptors: Chemistry, Science Education, Computation, Scientific Concepts
Peter Nagy; Areej Mawasi; Ed Finn; Ruth Wylie – Science & Education, 2025
In this paper, we present findings from an exploratory qualitative study that investigated how hands-on activities can help learners think of socioscientific issues more concretely. These activities borrowed themes, such as the responsibilities of creators and limits of scientific exploration from the culturally ubiquitous Frankenstein story to…
Descriptors: Social Problems, Science Education, Middle School Students, Hands on Science
Meridith Greythorne; Kai Staats – Connected Science Learning, 2024
The Scalable, Interactive Model of an Off-World Community (SIMOC) is a computer simulation of a human habitat on Mars. Built upon decades of NASA research and authentic science processes, SIMOC is both a research-grade simulation and an engaging web-based tool for science education. Users access an intuitive web interface to select mission…
Descriptors: Computer Simulation, Space Exploration, Science Education, Web Sites
Goutam Roy; Shukla Sikder; Lena Danaia – International Journal of STEM Education, 2025
This article systematically reviews empirical studies involving scientific literacy published in peer-reviewed journals, focusing on the construction of scientific literacy in formal education worldwide, the suggested ways of adopting scientific literacy in the early years, and the current practices and future possibilities for scientific literacy…
Descriptors: Scientific Literacy, Early Childhood Education, Educational Research, Science Education