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Baur, Armin – International Journal of Science Education, 2023
Student problems (preconceptions, errors, and learner-specific approaches) that arise when planning and conducting experiments are relevant for lesson planning and the further development of teaching practice overall. student problems are understood as a learning opportunity. So far, little attention has been paid to the relationships between…
Descriptors: Science Education, Science Experiments, Inquiry, Misconceptions
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Bumbacher, Engin; Salehi, Shima; Wieman, Carl; Blikstein, Paulo – Journal of Science Education and Technology, 2018
Manipulative environments play a fundamental role in inquiry-based science learning, yet how they impact learning is not fully understood. In a series of two studies, we develop the argument that manipulative environments (MEs) influence the kind of inquiry behaviors students engage in, and that this influence realizes through the affordances of…
Descriptors: Manipulative Materials, Active Learning, Inquiry, Science Education
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Houston-Price, Carmel; Goddard, Kate; Seclier, Catherine; Grant, Sally C.; Reid, Caitlin J. B.; Boyden, Laura E.; Williams, Rhiannon – Developmental Science, 2011
Happe and Loth (2002) describe word learning as a "privileged domain" in the development of a theory of mind. We test this claim in a series of experiments based on the Sally-Anne paradigm. Three- and 4-year-old children's ability to represent others' false beliefs was investigated in tasks that required the child either to predict the actions of…
Descriptors: Theory of Mind, Cognitive Development, Science Education, Child Development
Goncalves, Fernando J., Ed.; Pereira, Ruth, Ed.; Leal Filho, Walter, Ed.; Miranda Azeiteiro, Ulisses, Ed. – Peter Lang Frankfurt, 2012
This book presents essential learning approaches. It introduces educational and training activities, as well as various innovative methods aiming at the development of practical skills, in order to strengthen the continuous process of environmental education, and in particular the education for sustainable development (ESD). In doing so, it…
Descriptors: Field Instruction, Animals, Higher Education, Science Education
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Faraco, G.; Gabriele, L. – Computers & Education, 2007
Simulations make it possible to explore physical and biological phenomena, where conducting the real experiment is impracticable or difficult. The implementation of a software program describing and simulating a given physical situation encourages the understanding of a phenomenon itself. Fifty-nine students, enrolled at the Mathematical Methods…
Descriptors: Mathematical Models, Computer Software, Computer Simulation, Engineering Education
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Livesley, D. M. – Physics Education, 1986
Describes a physics experiment which demonstrates the pitfalls of assuming that a model which represents an ideal system is applicable to a real experiment. Explains how the failure may give greater understanding of the problem and may lead to improvements in the model. (ML)
Descriptors: Learning Strategies, Models, Physics, Problem Solving
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Wilson, Ronald W. – Journal of College Science Teaching, 1994
Students often complain that lectures requiring simultaneous writing and listening is a difficult task. An alternative method is provided to teachers to facilitate note taking by students. (ZWH)
Descriptors: Higher Education, Learning Strategies, Lecture Method, Notetaking
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Roth, Wolff-Michael – Journal of Research in Science Teaching, 1994
Presents a study involving students (n=46) enrolled in an introductory physics course designed to describe and understand students' experimenting and problem-solving strategies in a constructivist learning environment. Concludes that students should be provided with problem-rich learning environments in which they learn to investigate phenomena of…
Descriptors: Classroom Environment, Classroom Research, Constructivism (Learning), High Schools
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Ferguson, Erika L.; Hegarty, Mary – Cognition and Instruction, 1995
Two experiments examined how learning from different media--real pulley systems or simple line diagrams--affected mechanical learning and problem solving. The first showed that subjects' learning improved equally in both cases; all subjects showed an increase in quantitative understanding as they learned; and subjects manipulating real pulley…
Descriptors: Active Learning, Cognitive Processes, Cognitive Style, Learning Strategies
Barden, Laura M.; Pugh, Michael – 1993
This paper reports a study designed to examine the types of behaviors students exhibit while conducting laboratory activities and assess the effectiveness of strategies students employ. The sample was 42 students enrolled in a physics lab section at a single university. Three types of data were collected: (1) observational data during the lab…
Descriptors: College Science, Educational Research, Group Behavior, Higher Education
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Gilbert, John K.; Reiner, Miriam – International Journal of Science Education, 2000
If science education is to be related as closely as possible to science, then Thought Experiments (TEs) must play an appropriate part. Presents a typology of TEs with examples drawn from the history of physics and addresses their various uses in bringing about students' conceptual development. Finds appropriate use of TEs is lacking in physics…
Descriptors: Cognitive Processes, High Schools, Higher Education, Learning Strategies
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Ager, David J.; And Others – Journal of Chemical Education, 1986
Describes a program of demonstration experiments used to stimulate interest in chemistry, specifically aimed at increasing university chemistry enrollments. Discusses program goals, experiments, design criteria, and several caveats related to the development of such a program. (JM)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Educational Experiments
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Phillips, Mark P. – Science Activities, 1992
Describes the construction of durable, inexpensive and large sand-hourglasses for use in controlled experiments that allow students to observe, infer, measure, record data, and predict. This hands-on activity is designed to take place over a three-day interval. Includes materials needed, techniques, procedures, follow-up activities, and resource…
Descriptors: Concept Formation, Data Collection, Data Interpretation, Discovery Learning
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Sneider, Cary; And Others – Science Education, 1984
Tested the effectiveness of a program designed to teach children how to conduct and interpret a controlled experiment. Results indicate that the ability to control variables can be taught using the program (which consists of activities related to designing, building, and launching model rockets). (JN)
Descriptors: Adolescents, Cognitive Processes, Elementary School Science, Elementary Secondary Education
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Dreyfus, Amos – Research in Rural Education, 1986
The educational potential of agriculture stems from the diversity and tangibility of its components. As a science based human activity, it may provide the educator with a unique combination of educational opportunities in a context which is authentic and accessible to the pupil and to the teacher. (JHZ)
Descriptors: Agricultural Education, Agriculture, Curriculum Development, Experiential Learning
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