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Doug Lombardi; Gale M. Sinatra; Janelle M. Bailey; Lucas P. Butler – Educational Psychology Review, 2024
Our technological, information-rich society thrives because of scientific thinking. However, a comprehensive theory of the development of scientific thinking remains elusive. Building on previous theoretical and empirical work in conceptual change, the role of credibility and plausibility in evaluating scientific evidence and claims, science…
Descriptors: Science Education, Scientific Literacy, Thinking Skills, Skill Development
Cuilan Qiao; Yuqing Chen; Qing Guo; Yunwei Yu – International Journal of STEM Education, 2024
In the era defined by the fourth paradigm of science research, the burgeoning volume of science data poses a formidable challenge. The established data-related requisites within science literacy now fall short of addressing the evolving needs of researchers and STEM students. Consequently, the emergence of science data literacy becomes imperative.…
Descriptors: Scientific Literacy, Data, STEM Education, Majors (Students)
Teresa Margarida Loureiro Cardoso; João Paulo Pinto; Filomena Pestana – Educational Media International, 2024
This text addresses the importance of scientific collaboration networks in the context of open science, presenting the experience achieved within the International Academic Network WEIWER®. From this particular case, it will be possible to show that scientific entrepreneurship initiatives, based on collaborative research, are an effective way to…
Descriptors: Scientific Research, International Cooperation, Access to Information, Open Source Technology
McNew-Birren, Jill; Gaul-Stout, Jennifer – International Journal of Science Education, Part B: Communication and Public Engagement, 2022
Citizen science programs, which engage volunteers in varied aspeicts of scientific research projects, have been widely touted as a promising avenue for enhancing public scientific literacy and scientific civic engagement. The meanings volunteers make of citizen science experiences can influence the ways that scientific information is translated…
Descriptors: Scientific Literacy, Civics, Citizen Participation, Scientific Research
Dara M. Ruiz Whalen – ProQuest LLC, 2024
High school science teachers require increased skills in science research literacy, so that their students develop research competencies in the classroom (Evans, Warning, & Christodoulou, 2017; Udompong, Traiwichitkhun, & Wongwanich, 2014). For teachers to promote a scientific atmosphere, literature points to training that fosters…
Descriptors: Scientific Research, Scientific Literacy, Faculty Development, Biomedicine
Robert W. Danielson; Neil G. Jacobson; Erika A. Patall; Gale M. Sinatra; Olusola O. Adesope; Alana A. U. Kennedy; Bethany H. Bhat; Onur Ramazan; Blessing Akinrotimi; Gabriel Nketah; Gan Jin; Oluwafemi J. Sunday – Educational Psychologist, 2025
Misinformation around scientific issues is rampant on social media platforms, raising concerns among educators and science communicators. A variety of approaches have been explored to confront this growing threat to science literacy. For example, refutations have been used both proactively as warning labels and in attempts to inoculate against…
Descriptors: Misinformation, Scientific Research, Social Media, Scientific Literacy
P. V. Seema – Journal on School Educational Technology, 2024
In today's rapidly advancing world, scientific literacy is becoming increasingly crucial. The ability to understand and critically evaluate scientific information is a key skill for navigating an increasingly complex and technology-driven society. Developing scientific literacy not only boosts individual knowledge but also promotes 21st-century…
Descriptors: Scientific Literacy, 21st Century Skills, Science and Society, Influence of Technology
Mitra, Sunayana; Wagner, Eugene – Journal of Chemical Education, 2021
All students pursuing STEM careers need to be adept at interpreting and evaluating primary research literature. The complexity of research articles requires significant practice and training in order to become skilled and efficient at this process. Thus, an early start in undergraduate education is essential and allows for development and practice…
Descriptors: Undergraduate Students, Primary Sources, Scientific Research, Chemistry
Isaac Spencer Rosenthal – ProQuest LLC, 2023
Giant kelp ("Macrocystis pyrifera") forests are icons of marine beauty, acting as critical marine ecosystems with great ecological and economic value. Kelp forests are hot spots for biodiversity and provide myriad ecosystem services such as nursery habitat for commercial fisheries, nutrient cycling, wave attenuation, as well as…
Descriptors: Citizen Participation, Science Education, Ecology, Marine Biology
Button, John; Turner, Diren Pamuk; Hammer, David – Chemistry Education Research and Practice, 2023
The most obvious feature of expertise in chemistry is content knowledge, which defines the primary objectives of instruction. Research in chemistry education, and STEM education more broadly, has also devoted attention to students' developing scientific practices of reasoning, investigation, and learning. In this study, we set out to investigate…
Descriptors: Chemistry, Scientists, Abstract Reasoning, Epistemology
Critical Thinking, Epistemological Beliefs, and the Science-Pseudoscience Distinction among Teachers
Alkis Küçükaydin, Mensure; Esen, Seher; Çite, Hakan; Geçer, Sümeyra – Journal of Pedagogical Research, 2023
This study used the structural equation model to examine teachers' scientific epistemological beliefs, critical thinking skills, and beliefs about the distinction between science and pseudoscience. The study involved 730 teachers from 26 different subjects in different regions of Türkiye. Descriptive analyses showed a significant relationship…
Descriptors: Foreign Countries, Teachers, Interests, Critical Thinking
Andrea A. Perla; Sara Hollar; Katy Muzikar; Jane M. Liu – Journal of Chemical Education, 2023
The use of primary literature can be an effective way to expose students to the scientific research process. At the same time, primary literature can be intimidating to many students, particularly those with limited exposure to science research. The CREATE (consider, read, elucidate hypotheses, analyze and interpret the data, and think of the next…
Descriptors: Teaching Methods, Science Instruction, Scientific Research, Self Esteem
Chia-Yu Wang; Yu-Chi Tseng; Shu-Sheng Lin; Shu-Chiu Liu; Alan Reid; Martha C. Monroe – Environmental Education Research, 2024
This study uses bibliometric techniques to explore the international knowledge base on climate change education (CCE), which considers education as crucial for addressing the climate emergency through fostering climate-literate citizens. Analyzing two decades of scientific literature on CCE, we identify evolving considerations, foci, trends, and…
Descriptors: Climate, Environmental Education, Educational Research, Scientific Research
Tulli Ariyaratne; Valarie Akerson – International Journal of Research in Education and Science, 2024
Several Nature of Science (NOS) studies have been conducted on different categories of professionals and different age groups. Even though NOS is considered a structural facet of scientific literacy, not much research has been conducted on the NOS ideas of scientists and science professionals. This crosssectional study investigated the nature of…
Descriptors: Scientists, Chemistry, Scientific Principles, Research Universities
Lee, Sangah; Zhong, Min; Foster, Cerrone; Segura-Totten, Miriam; McCartney, Melissa – Journal of Microbiology & Biology Education, 2022
Primary Scientific Literature (PSL) has been used in undergraduate classrooms as a way to engage students with the research process and to increase science literacy. Most curricula lack any formal training for undergraduates to critically read PSL even though most undergraduate science courses require students to engage with PSL at some level. In…
Descriptors: Reading Strategies, Measures (Individuals), Primary Sources, Scientific Research