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Stapleton, Andrew J. – Cultural Studies of Science Education, 2018
In response to the authors, I demonstrate how threshold concepts offer a means to both contextualise teaching and learning of quantum physics and help transform students into the culture of physics, and as a way to identify particularly troublesome concepts within quantum physics. By drawing parallels from my own doctoral research in another area…
Descriptors: Quantum Mechanics, Physics, Science Education, Imagery
Dickes, Amanda Catherine; Sengupta, Pratim; Farris, Amy Voss; Satabdi, Basu – Science Education, 2016
In this paper, we present a third-grade ecology learning environment that integrates two forms of modeling--embodied modeling and agent-based modeling (ABMs)--through the generation of mathematical representations that are common to both forms of modeling. The term "agent" in the context of ABMs indicates individual computational objects…
Descriptors: Elementary School Science, Science Education, Grade 3, Science Process Skills
van Leeuwen, Theo H.; Manalo, Emmanuel; van der Meij, Jan – Mind, Brain, and Education, 2015
There is considerable interest in the cultivation of student graphic literacy among educators and researchers, especially in the sciences. Previous research, however, has shown that many students manifest difficulties in using diagrammatic representations. One explanation that has been proposed to account for these difficulties is that certain…
Descriptors: Science Education, Diagnostic Tests, Brain, Visual Aids
Lamb, Richard L.; Firestone, Jonah B. – International Journal of Science and Mathematics Education, 2017
Conflicting explanations and unrelated information in science classrooms increase cognitive load and decrease efficiency in learning. This reduced efficiency ultimately limits one's ability to solve reasoning problems in the science. In reasoning, it is the ability of students to sift through and identify critical pieces of information that is of…
Descriptors: Cognitive Processes, Difficulty Level, Science Process Skills, Computation
Waldrip, Bruce; Prain, Vaughan – International Journal of Science Education, 2017
Student engagement in learning science is both a desirable goal and a long-standing teacher challenge. Moving beyond engagement understood as transient topic interest, we argue that cognitive engagement entails sustained interaction in the processes of how knowledge claims are generated, judged, and shared in this subject. In this paper, we…
Descriptors: Foreign Countries, Secondary School Students, Secondary School Science, Science Education
Heckler, Andrew F.; Bogdan, Abigail M. – Physical Review Physics Education Research, 2018
A critical component of scientific reasoning is the consideration of alternative explanations. Recognizing that decades of cognitive psychology research have demonstrated that relative cognitive accessibility, or "what comes to mind," strongly affects how people reason in a given context, we articulate a simple "cognitive…
Descriptors: Science Process Skills, Abstract Reasoning, Thinking Skills, Physics
Yapicioglu, Aysegül Evren; Aycan, Sule – Educational Policy Analysis and Strategic Research, 2018
The establishment and use of nuclear power plants to meet the energy need is a controversial socioscientific issue in all the countries of the world; as in Turkey. In this regard, the current study intended to investigate the effect of the socioscientific issue-based instructional activities related to the Nuclear Energy Plants (NEP) that have…
Descriptors: Foreign Countries, Preservice Teachers, Decision Making, Abstract Reasoning
Tolmie, Andrew K.; Ghazali, Zayba; Morris, Suzanne – British Journal of Educational Psychology, 2016
Background: Research has identified the core skills that predict success during primary school in reading and arithmetic, and this knowledge increasingly informs teaching. However, there has been no comparable work that pinpoints the core skills that underlie success in science. Aims and method: The present paper attempts to redress this by…
Descriptors: Children, Primary Education, Elementary School Science, Science Education
Pavlin, Jerneja; Glazar, Sasa A.; Slapnicar, Miha; Devetak, Iztok – Chemistry Education Research and Practice, 2019
The purpose of this paper is to explore and explain students' achievements in solving context-based gas exercises comprising the macroscopic and submicroscopic levels of chemical concepts. The influence of specific variables, such as interest in learning, formal-reasoning abilities, and visualisation abilities, is a significant factor that should…
Descriptors: Chemistry, Science Education, Educational Background, Science Interests
Redish, Edward F.; Kuo, Eric – Science & Education, 2015
Mathematics is a critical part of much scientific research. Physics in particular weaves math extensively into its instruction beginning in high school. Despite much research on the learning of both physics and math, the problem of how to effectively include math in physics in a way that reaches most students remains unsolved. In this paper, we…
Descriptors: Physics, Epistemology, Science Education, Educational Research
van der Graaf, Joep; Segers, Eliane; Verhoeven, Ludo – Instructional Science: An International Journal of the Learning Sciences, 2015
A dynamic assessment tool was developed and validated using Mokken scale analysis to assess the extent to which kindergartners are able to construct unconfounded experiments, an essential part of scientific reasoning. Scientific reasoning is one of the learning processes happening within science education. A commonly used, hands-on,…
Descriptors: Kindergarten, Science Process Skills, Abstract Reasoning, Thinking Skills
Henderson, J. Bryan; MacPherson, Anna; Osborne, Jonathan; Wild, Andrew – International Journal of Science Education, 2015
This paper argues that science education has overemphasized the importance of construction at the expense of critique. In doing so, it draws on two key premises--Ford's argument that the construction of knowledge requires a dialectic between construction and critique and Mercier and Sperber's theory of argumentative reasoning that critique is…
Descriptors: Role, Science Education, Epistemology, Literacy
Faria, Cláudia; Freire, Sofia; Baptista, Mónica; Galvão, Cecília – International Journal of Science Education, 2014
Mobilizing scientific knowledge for understanding the natural world and for critically appraise socio-scientific situations and make decisions are key competencies for today's' society. Therefore, it is essential to understand how students at the end of compulsory schooling use scientific knowledge for understanding the surrounding world. The…
Descriptors: Health Education, Scientific Literacy, Foreign Countries, Grade 9
Katchevich, Dvora; Hofstein, Avi; Mamlok-Naaman, Rachel – Research in Science Education, 2013
One of the goals of science education is to provide students with the ability to construct arguments--reasoning and thinking critically in a scientific context. Over the years, many studies have been conducted on constructing arguments in science teaching, but only few of them have dealt with studying argumentation in the laboratory. Our research…
Descriptors: Science Education, Goal Orientation, Persuasive Discourse, Inquiry
Chen, Juanjuan; Wang, Minhong; Dede, Chris; Grotzer, Tina A. – Educational Technology & Society, 2017
The use of external representations has the potential to facilitate inquiry learning, especially hypothesis generation and reasoning, which typically present difficulties for students. This study describes a novel three-dimensional cognitive mapping (3DCM) approach that supports inquiry learning by allowing learners to combine the information on a…
Descriptors: Cognitive Mapping, Inquiry, Active Learning, Abstract Reasoning