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Yannier, Nesra; Hudson, Scott E.; Koedinger, Kenneth R. – International Journal of Artificial Intelligence in Education, 2020
Along with substantial consensus around the power of active learning, comes some lack of precision in what its essential ingredients are. New educational technologies offer vehicles for systematically exploring benefits of alternative techniques for supporting active learning. We introduce a new genre of Intelligent Science Station technology that…
Descriptors: Active Learning, Artificial Intelligence, STEM Education, Educational Technology
Gjerde, Vegard; Holst, Bodil; Kolstø, Stein Dankert – Physical Review Physics Education Research, 2020
Introductory physics is taught to several hundred thousand university students every year. It is seen as especially difficult by many and the failure rate is often high. A relevant question is whether one can increase the success rate among the weaker students? Retrieval practice is an established learning strategy with large benefits. However, as…
Descriptors: Foreign Countries, College Science, Introductory Courses, Undergraduate Students
Khishfe, Rola – Journal of Science Teacher Education, 2021
The study investigated how explicit instruction of argumentation-in the context of socioscientific issues (SSI)- and explicit instruction of NOS, compared with explicit instruction of argumentation only, can develop grade 10 students' argumentation skills and NOS conceptions. Participants were 36 grade 10 students enrolled in two sections that…
Descriptors: Science Instruction, Scientific Principles, Teaching Methods, Persuasive Discourse
Erduran, Sibel; Dagher, Zoubeida R.; McDonald, Christine V. – Science & Education, 2019
The emergence of the Family Resemblance Approach (FRA) to nature of science (NOS) has prompted a fresh wave of scholarship embracing this new approach in science education. The FRA provides an ambitious and practical vision for what NOS-enriched science content should aim for and promotes evidence-based practices in science education to support…
Descriptors: Science Instruction, Teaching Methods, Course Content, Evidence Based Practice
Jones, Tamera; Romanov, Anastasia; Pratt, Justin M.; Popova, Maia – Chemistry Education Research and Practice, 2022
Representational competence (RC) is a set of skills to reflectively use a variety of representations to draw inferences, make predictions, and support claims. Despite the important role RC plays in student success in chemistry and the considerable number of investigations into student ability to reason with representations, little is known about…
Descriptors: Organic Chemistry, Science Instruction, Pedagogical Content Knowledge, Science Teachers
Bellocchi, Alberto; Davis, James; Mills, Reece; Arthars, Natasha; Appanna, Subhashni – Teaching Science, 2022
Science curriculum and pedagogy offer ideal avenues for teaching young people the critical thinking skills they need to live in a post-truth world. Drawing on the theory of epistemic cognition, we present a selection of research-based pedagogies that have been shown to be effective in developing school students' understanding of knowledge and how…
Descriptors: Foreign Countries, Science Education, Science Instruction, Teaching Methods
Mercier, Philippe H. – Journal of Chemical Education, 2018
Le Châtelier's principle is used as a basis to derive an expression to calculate solution pH during titrations that involve only strong acids and strong bases. Central to this model are the reaction quotient and a re-equilibration term that represents the extent of neutralization during a titration. Unlike the method traditionally taught to…
Descriptors: Science Instruction, Scientific Principles, College Science, Undergraduate Study
Lessl, Thomas – Science & Education, 2018
Scientific inquiry is both theoretical and empirical. It succeeds by bringing thought into productive harmony with the observable universe, and thus, students can attain a robust understanding of the nature of science (NOS) only by developing a balanced appreciation of both these dimensions. In this article, I examine naïve empiricism, a teaching…
Descriptors: Scientific Principles, Religion, Conflict, Scientific Research
Olson, Joanne K. – Science & Education, 2018
Understanding the nature of science (NOS) has long been a desired outcome of science education, despite ongoing disagreements about the content, structure, and focus of NOS expectations. Addressing the concern that teachers likely focus only on student learning expectations appearing in standards documents, this study examines the current state of…
Descriptors: Science Education, Standards, Scientific Principles, Cross Cultural Studies
Amato, Joseph – Physics Teacher, 2018
North Korea's development of nuclear weapons and, more recently, intercontinental ballistic missiles (ICBMs) has added a grave threat to world order. The threat presented by these weapons depends critically on missile range, i.e., the ability to reach North America or Europe while carrying a nuclear warhead. Using the limited information available…
Descriptors: Science Instruction, Weapons, Mathematical Concepts, Scientific Concepts
Hasovic, Elvedin; Mešic, Vanes; Erceg, Nataša – Physics Teacher, 2017
In this paper we are going to show how learning about some counterintuitive aspects of rolling motion can be facilitated by combining the use of analogies with extreme case reasoning. Specifically, the intuitively comprehensible examples of "rolling" polygonal prisms are used as an analogical anchor that is supposed to help the students…
Descriptors: Motion, Logical Thinking, Scientific Concepts, Scientific Principles
do Nascimento Rocha, Maristela; Gurgel, Ivã – Interchange: A Quarterly Review of Education, 2017
This paper performs a critical analysis of the consensual and family resemblance approaches to the nature of science. Despite the debate that surrounds them, between a pragmatic consensus and a more comprehensive understanding, both approaches have in common the goal of helping students to "internalize" knowledge about science in a…
Descriptors: Scientific Principles, Criticism, Educational Practices, Scientific Literacy
Hansson, Lena; Leden, Lotta; Thulin, Susanne – International Journal of Science Education, 2020
This article focuses on the need for increased attention to content issues and working methods for science teaching in Early Childhood Education (ECE). Science education research emphasises the importance of not only focusing on specific phenomena, but also on the Nature of Science (NOS). NOS teaching deals with questions about what science is,…
Descriptors: Scientific Principles, Picture Books, Reading Aloud to Others, Teaching Methods
Vazquez-Manassero, Margarita-Ana; Manassero-Mas, Maria-Antonia; Vázquez-Alonso, Ángel – Journal for Learning through the Arts, 2020
An interdisciplinary approach to science education through history of art is proposed. The approach is innovative, as the artworks complement the history, philosophy and sociology of science contents to increase students' interest and motivation. The approach integrates humanities and science education through history of art, which requests…
Descriptors: Science Education, Art Education, Interdisciplinary Approach, Science History
Valencia Narbona, Martina; Núñez Nieto, Paola; Cofré Mardones, Hernán – International Journal of Science Education, 2023
There is worldwide agreement that the understanding of the Nature of Science (NOS) is a critical component of scientific literacy. However, evidence indicates that both pre-service and in-service science teachers hold naïve views about NOS. Even so, the characteristics of pre-service teachers that influence their learning of NOS are not fully…
Descriptors: Scientific Principles, History, Science Instruction, Teaching Methods

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