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Moira R. Dillon; Cindy R. Lawrence – Mind, Brain, and Education, 2024
University research labs focusing on education, psychology, and cognitive development have been collaborating with museums more and more over the past decade. Nevertheless, cognitive science labs that primarily engage in basic as opposed to applied research may find it difficult to entice museums to collaborate, and existing collaborations may…
Descriptors: Museums, Laboratories, Partnerships in Education, Program Content
Yang, Wenyuan; Liu, Enshan; Li, Xintao; Liu, Cheng – American Biology Teacher, 2019
A lesson plan is a design problem for a teacher. The desired solution to this problem is to design an instructional process that can guide students in constructing an understanding of scientific concepts through their own thinking. This article demonstrates a practical approach to designing an effective lesson plan. The approach has five phases:…
Descriptors: Metacognition, Scientific Concepts, Concept Formation, Lesson Plans
Tovar-Moll, Fernanda; Lent, Roberto – Prospects: Quarterly Review of Comparative Education, 2016
Education is a socially structured form of learning. It involves the brains of different players--students, teachers, family members, and others--in permanent interaction. The biological set of mechanisms by which these brains receive, encode, store, and retrieve mutually exchanged information is called "neuroplasticity". This is the…
Descriptors: Brain, Cognitive Processes, Neurological Organization, Cognitive Development
Smith, Tim – Teaching Science, 2016
Originally called Cognitive Acceleration through Science Education, Thinking Science is a program of 30 lessons, usually delivered in Years 7 and 8, that has been shown to improve learner outcomes in science, maths and English. Over recent years, it has grown in popularity in Australia and was the subject of an ARC-funded research project at the…
Descriptors: Teaching Methods, Cognitive Development, Science Education, Foreign Countries
Constantinou, Yanoula – Primary Science, 2016
Deansfield Primary School, Eltham, south-east London, is always striving to enable children to become successful learners who are confident and enthusiastic. Teachers have endeavoured to give more emphasis to science teaching and learning by bringing it up to date through research and creating a positive attitude to it among the teachers and…
Descriptors: Cartoons, Science Instruction, Foreign Countries, Science Teachers
Cohen, Steven D. – Center on the Developing Child at Harvard University, 2016
How can we use insights from cutting-edge science to improve the well-being and long-term life prospects of the most vulnerable children in our society? This is both a critical challenge and a powerful opportunity to affect the trajectories of millions of children in the United States and around the world. It is a question of particular importance…
Descriptors: Child Development, Child Welfare, Welfare Services, Evidence Based Practice
Zull, James E. – Stylus Publishing, LLC, 2011
With his knack for making science intelligible for the layman, and his ability to illuminate scientific concepts through analogy and reference to personal experience, James Zull offers the reader an engrossing and coherent introduction to what neuroscience can tell us about cognitive development through experience, and its implications for…
Descriptors: Lifelong Learning, Scientific Concepts, Metacognition, Memory
Stoll, Julia; Hamilton, Ashley; Oxley, Emilie; Eastman, Angela Mitroff; Brent, Rachael – Young Children, 2012
Physics is the study of forces and motion--the science of matter and energy and the interaction between the two. The big idea the children explore, as well as the question they ask as they engage in physical knowledge activities related to physics, is "How does it move?" Many teachers translate naturally as they come to know the children they…
Descriptors: Teacher Role, Physics, Problem Solving, Motion
American Psychologist, 2009
Susan E. Carey, winner of the 2009 Award for Distinguished Scientific Contributions, is cited for groundbreaking studies of the nature of concepts and conceptual change. Her research deepens understanding of the development of concepts, and of the belief systems in which they are embedded, over human childhood, over the history of science, and…
Descriptors: Science History, Recognition (Achievement), Beliefs, Educational Change
Wavering, Michael James – School Science and Mathematics, 2011
In his last book, "Toward a Logic of Meanings" (Piaget & Garcia, 1991), Jean Piaget describes how thought can be categorized into a form of propositional logic, a logic of meanings. The intent of this article is to offer this analysis by Piaget as a means to understand the language and teaching of science. Using binary propositions, conjunctions,…
Descriptors: Logical Thinking, Classrooms, Pedagogical Content Knowledge, Science Instruction
Tsaparlis, Georgios; Kolioulis, Dimitrios; Pappa, Eleni – Chemistry Education Research and Practice, 2010
We present a programme for a novel introductory lower-secondary chemistry course (seventh or eighth grade) that aims at the application of theories of science education, and in particular of conceptual/meaningful learning and of teaching methodology that encourages active and inquiry forms of learning The approach is rigorous with careful use of…
Descriptors: Chemistry, Science Teachers, Grade 7, Grade 8
Ornek, Funda – International Journal of Environmental and Science Education, 2008
In this paper, I discuss different types of models in science education and applications of them in learning and teaching science, in particular physics. Based on the literature, I categorize models as conceptual and mental models according to their characteristics. In addition to these models, there is another model called "physics model" by the…
Descriptors: Physics, Science Education, Models, Classification
Otte, M. – Educational Studies in Mathematics, 2003
Niels Bohr's term "complementarity" has been used by several authors to capture the essential aspects of the cognitive and epistemological development of scientific and mathematical concepts. In this paper we will conceive of complementarity in terms of the dual notions of extension and intension of mathematical terms. A complementarist approach…
Descriptors: Teaching Methods, Mathematical Concepts, Mathematics Instruction, Mathematics Education

Pearson, J. T.; Hughes, W. J. – Journal of Biological Education, 1986
Presents an overview of a genetics course including explanations of major concepts, principles, and sequencing methods. Describes the typical participating student's background and prior knowledge level. Appendices contain a list of terms and three concept maps. (ML)
Descriptors: Biology, Cognitive Development, Concept Teaching, Genetics

Stepans, Joseph; Kuehn, Christine – Science and Children, 1985
Children in grades two and five explained such weather phenomena as wind, clouds, thunder, lightning, rain, snow, and rainbows during interviews. Results indicate that most students in both grades were at a stage of nonreligious finalism and do not use true causality in explanations. Implications for teaching are discussed. (DH)
Descriptors: Cognitive Development, Comprehension, Concept Formation, Earth Science