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Saeed Salimpour; Russell Tytler; Michael T. Fitzgerald – Science & Education, 2025
For millennia, the awe and wonder of the night sky has captivated and inspired humans to explore some of the most fundamental mysteries of the Cosmos through different perspectives and disciplines. Astronomy as a field of inquiry exemplifies a synergy of disciplines, a synergy that is more often tacit. Over the years, education and educational…
Descriptors: Astronomy, Science Education, Art, STEM Education
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Elina Palmgren; Tapio Rasa – Science & Education, 2024
Modelling roles of mathematics in physics has proved to be a difficult task, with previous models of the interplay between the two disciplines mainly focusing on mathematical modelling and problem solving. However, to convey a realistic view of physics as a field of science to our students, we need to do more than train them to become fluent in…
Descriptors: Physics, Mathematical Models, Science Instruction, Problem Solving
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Matthew D. Hanson; Daniel P. Miller; Cholavardhan Kondeti; Adam Brown; Eva Zurek; Scott Simpson – Journal of Chemical Education, 2023
In this article, we describe a fully computational laboratory exercise that results in an increase of students' understanding of what quantum chemical geometry optimization calculations are doing to find minimum energy structures. This laboratory exercise was conducted several times over multiple years at a small private undergraduate institution,…
Descriptors: Undergraduate Students, Geometry, Chemistry, Science Education
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Peel, Amanda; Sadler, Troy D.; Friedrichsen, Patricia – Journal of Science Education and Technology, 2022
Computing has become essential in modern-day problem-solving, making computational literacy necessary for practicing scientists and engineers. However, K-12 science education has not reflected this computational shift. Integrating computational thinking (CT) into core science courses is an avenue that can build computational literacies in all…
Descriptors: Computation, Thinking Skills, Problem Solving, Science Education
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Eila Jeronen; Tuula Keinonen; Sirpa Kärkkäinen – Discourse and Communication for Sustainable Education, 2024
This article explores how global citizenship can be seen in the practices of science education in the context of international education policy and Finnish school and teacher education, with a focus on scientific literacy and sustainability education for promoting a sustainable future. Possibilities of science education to promote sustainability…
Descriptors: Transformative Learning, Sustainability, Science Education, Scientific Literacy
M. Anwar H. Khan; Timothy G. Harrison; Magdalena Wajrak; Michele Grimshaw; Kathy G. Schofield; Alison J. Trew; Kulvinder Johal; Jeannette Morgan; Karen. L. Shallcross; Joyce D. Sewry; Michael T. Davies-Coleman; Dudley E. Shallcross – Journal of Chemical Education, 2023
All learners have a contribution to make to the development of the Chemical Sciences, be that in novel ways to teach, and their perspectives and contexts, but also in research, both in chemical education and the wider Chemical Sciences. Through four case studies, this paper explores interactions with diverse groups and how this has altered…
Descriptors: Equal Education, Science Education, Chemistry, Diversity
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Bortz, Whitney Wall; Gautam, Aakash; Tatar, Deborah; Lipscomb, Kemper – Journal of Science Education and Technology, 2020
Integrating computational thinking (CT) and science education is complex, and assessing the resulting learning gains even more so. Arguments that assessment should match the learning (Biggs, "Assessment & Evaluation in Higher Education," 21(1), 5-16. 1996; Airasian and Miranda, "Theory into Practice," 41(4), 249-254. 2002;…
Descriptors: Computation, Thinking Skills, Science Education, Evaluation Methods
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Shannon L. W. Accettone; Cassandra DeFrancesco; Lori Van Belle; Joel Smith; Erin Giroux – Journal of Chemical Education, 2022
The ability of students to perform quantitative analysis is a fundamental aspect of analytical chemistry courses and laboratories. In this laboratory experiment, students quantitatively analyze both liquid and solid samples through the use of internal standard calibration and ATR-FTIR spectroscopy. Using a problem-based approach to selecting their…
Descriptors: Chemistry, Spectroscopy, Science Education, Problem Solving
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Tekkumru-Kisa, Miray; Stein, Mary Kay; Doyle, Walter – Educational Researcher, 2020
Informed by decades of research and standards-based policies, there has been a growing demand for high-quality teaching and learning in mathematics and science classrooms. Achieving these ambitious goals will not be easy; students' opportunities for learning as shaped by the tasks they are assigned will matter the most. The purpose of this article…
Descriptors: Educational Change, Mathematics Education, Science Education, Task Analysis
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Gleason, Tristan – Environmental Education Research, 2019
This commentary first seeks to situate the broad themes of Bruno Latour's work by discussing how particular texts and ideas have influenced the author's thinking about science, the environment, education, and research methods that enable generative approaches towards these phenomena. Latour's work deftly crosses borders that have long siloed…
Descriptors: Authors, Climate, Science Education, Environmental Education
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Ropohl, Mathias; Nielsen, Jan Alexis; Olley, Christopher; Rönnebeck, Silke; Stables, Kay – Contributions from Science Education Research, 2018
Since the beginning of the twenty-first century, the concept of competence has been introduced as a new paradigm in several educational systems. It reflects the need of educational systems to respond to societal and economic changes, i.e. the transition from industrial- to information-based societies. In contrast to earlier educational goals that…
Descriptors: Competence, Science Education, Mathematics Education, Technology Education
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Williams, Mobolaji – Science & Education, 2018
Physics is often seen as an excellent introduction to science because it allows students to learn not only the laws governing the world around them, but also, through the problems students solve, a way of thinking which is conducive to solving problems outside of physics and even outside of science. In this article, we contest this latter idea and…
Descriptors: Physics, Science Curriculum, Science Education, Problem Solving
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McGregor, Debra; Frodsham, Sarah – British Educational Research Journal, 2019
Creativity and the way it could be supported in schools is understood differently by policy makers, practitioners and scientists. This article reviews, with a chronological lens, the development of policies that include teaching creativity and teaching for creativity. The epistemic tensions between the intentions of government and the nature of…
Descriptors: Epistemology, Creativity, Educational Policy, Policy Formation
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Kohvakka, Mikko – European Journal of Higher Education, 2021
This paper analyses the phenomena of co-existence of competing moral principles in a university merger. In doing so, the paper builds on Boltanski and Thévenot's theoretical framework of orders of worth to account for the ways in which different social actors, both inside and outside academia, actively engage in justification work to solve…
Descriptors: Universities, Organizational Change, Moral Values, College Faculty
Santos, Luis Fernando – Online Submission, 2017
This review aims to respond various questions regarding the role of Critical Thinking in Science Education from aspects concerning the importance or relevance of critical thinking in science education, the situation in the classroom and curriculum, and the conception of critical thinking and fostering in science education. This review is specially…
Descriptors: Critical Thinking, Science Education, Science Curriculum, Scientific Principles
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