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Wörner, Salome; Kuhn, Jochen; Scheiter, Katharina – Review of Educational Research, 2022
Conducting experiments fosters conceptual understanding in science education. In various studies, combinations of real (hands-on) and virtual (computer-simulated) experiments have been shown to be especially helpful for gaining conceptual understanding. The present systematic review, based on 42 experimental studies, focuses on the following: (1)…
Descriptors: Science Education, Science Experiments, Computer Simulation, Conventional Instruction
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Psycharis, Sarantos – Journal of Science Education and Technology, 2016
In this study, an instructional design model, based on the computational experiment approach, was employed in order to explore the effects of the formative assessment strategies and scientific abilities rubrics on students' engagement in the development of inquiry-based pedagogical scenario. In the following study, rubrics were used during the…
Descriptors: Formative Evaluation, Learner Engagement, Elementary School Teachers, Science Instruction
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Soylu, Firat; Holbert, Nathan; Brady, Corey; Wilensky, Uri – Journal of Interactive Learning Research, 2017
In this paper we present a learning design approach that leverages perspective-taking to help students learn about complex systems. We define perspective-taking as projecting one's identity onto external entities (both animate and inanimate) in an effort to predict and anticipate events based on ecological cues, to automatically sense the…
Descriptors: Perspective Taking, Instructional Design, Learning Processes, Systems Approach
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An, Song A.; Zhang, Meilan; Tillman, Daniel A.; Robertson, William; Siemssen, Annette; Paez, Carlos R. – European Journal of Science and Mathematics Education, 2016
The purpose of this study was to investigate differences between science lessons taught by Chinese astronauts in a space shuttle and those taught by American astronauts in a space shuttle, both of whom conducted experiments and demonstrations of science activities in a microgravity space environment. The study examined the instructional structure…
Descriptors: Virtual Classrooms, Science Education, Science Instruction, Space Exploration
Xu Ryan, Qing – ProQuest LLC, 2013
The ability to solve problems in a variety of contexts is becoming increasingly important in our rapidly changing technological society. Problem-solving is a complex process that is important for everyday life and crucial for learning physics. Although there is a great deal of effort to improve student problem solving skills throughout the…
Descriptors: Coaching (Performance), Electronic Learning, Computer Mediated Communication, Computer Assisted Instruction
Giger, Kaspar; Knogl, J. Sebastian – Online Submission, 2012
Satellite navigation is widely used for personal navigation and more and more in precise and safety-critical applications. Thus, the subject is suited for attracting the interest of young people in science and engineering. The practical applications allow catching the students' attention for the theoretical background. Educational material on the…
Descriptors: Instructional Materials, Introductory Courses, Science Interests, Engineering Education
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Johnstone, A. H. – Journal of Computer Assisted Learning, 1991
Discusses difficulties of learning and teaching science at the secondary school level. Highlights include the nature of science concepts; multilevel thought; the use of scientific experiments; language problems; students' learning processes; and an information processing model that can be used to guide thinking and research in this area. (10…
Descriptors: Instructional Design, Learning Processes, Models, Science Education
Abraham, Michael R.; Renner, John W. – 1983
A learning cycle consists of three phases: exploration; conceptual invention; and expansion of an idea. These phases parallel Piaget's functioning model of assimilation, disequilibrium and accomodation, and organization respectively. The learning cycle perceives students as actors rather than reactors to the environment. Inherent in that…
Descriptors: Chemistry, Cognitive Development, Concept Formation, Discussion (Teaching Technique)