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Ravishankar Chatta Subramaniam; Nikhil Borse; Amir Bralin; Jason W. Morphew; Carina M. Rebello; N. Sanjay Rebello – Physical Review Physics Education Research, 2025
Reform documents advocate for innovative pedagogical strategies to enhance student learning. A key innovation is the integration of science and engineering practices through engineering design (ED)-based physics laboratory tasks, where students tackle engineering design problems by applying physics principles. While this approach has its benefits,…
Descriptors: Physics, Laboratory Experiments, Teaching Methods, Science Instruction
Gette, Cody R.; Kryjevskaia, Mila; Stetzer, MacKenzie R.; Heron, Paula R. L. – Physical Review Physics Education Research, 2018
A growing body of scholarly work indicates that student performance on physics problems stems from many factors, including relevant conceptual understanding. However, in contexts in which significant conceptual difficulties have been documented via research, it can be difficult to pinpoint and isolate such factors because students' written and…
Descriptors: Case Studies, Science Instruction, Scientific Principles, Physics
Zhang, Lin; Li, Zhushan – Canadian Journal of Science, Mathematics and Technology Education, 2019
The present study examined to what extent inquiry-based investigation as an instructional approach associated with students' overall science achievement and achievement in cognitive domains, including knowing science facts, applying scientific principles, and reasoning with scientific concepts to solve problems. Using TIMSS 2007 science…
Descriptors: Science Instruction, Investigations, Active Learning, Inquiry
Russ, Rosemary S.; Odden, Tor Ole B. – Physical Review Physics Education Research, 2017
Our field has long valued the goal of teaching students not just the facts of physics, but also the thinking and reasoning skills of professional physicists. The complexity inherent in scientific reasoning demands that we think carefully about how we conceptualize for ourselves, enact in our classes, and encourage in our students the relationship…
Descriptors: Physics, Evidence, Undergraduate Students, Scientific Concepts
Day, Martha; Stobaugh, Rebecca; Tassell, Janet; Neiman, Nicholas – Science Scope, 2012
This article discusses the resources available for teachers to apply higher-level thinking and cognitive complexity to their instruction and assessments. While designing higher-level assessments might be a challenging task, doing so not only can improve student achievement in science, it also prepares students for a changing world. Students learn…
Descriptors: Science Achievement, Science Process Skills, Problem Solving, Science Teachers
Madsen, Adrian; Rouinfar, Amy; Larson, Adam M.; Loschky, Lester C.; Rebello, N. Sanjay – Physical Review Special Topics - Physics Education Research, 2013
We investigate the effects of visual cueing on students' eye movements and reasoning on introductory physics problems with diagrams. Participants in our study were randomly assigned to either the cued or noncued conditions, which differed by whether the participants saw conceptual physics problems overlaid with dynamic visual cues. Students in the…
Descriptors: Cues, Visual Stimuli, Eye Movements, Physics
Chander, Subhash – Gifted Education International, 2012
The number of day-to-day challenges has increased at every stage of life, particularly in developing countries, and therefore there is a crying need for a search for solutions. Education plays an important role in providing correct direction, and science education can prove crucial in achieving this goal. Solutions to individual as well as…
Descriptors: Evidence, Creativity, Scientific Principles, Problem Solving
Wisehart, Gary; Mandell, Mark – Journal of College Science Teaching, 2008
A methodology is described that teaches science process by combining informal logic and a heuristic for rating factual reliability. This system facilitates student hypothesis formation, testing, and evaluation of results. After problem solving with this scheme, students are asked to examine and evaluate arguments for the underlying principles of…
Descriptors: Problem Solving, Biology, Teaching Methods, Thinking Skills
Peer reviewedRoberts, Ros – Journal of Biological Education, 2001
Procedural understanding should be taught to students for an understanding of the 'nature of science'. Considers some of the concepts of evidence that are particularly important to biology, and discusses how and why these ideas could be taught. (Contains 21 references.) (Author/YDS)
Descriptors: Biology, Cognitive Development, Curriculum Development, Higher Education
Ramsbottom R.; Kinch, R. F. T.; Morris, M. G.; Dennis, A. M. – Advances in Physiology Education, 2007
The collection of primary data in laboratory classes enhances undergraduate practical and critical thinking skills. The present article describes the use of a lecture program, running in parallel with a series of linked practical classes, that emphasizes classical or standard concepts in exercise physiology. The academic and practical program ran…
Descriptors: Fundamental Concepts, Females, Scientific Principles, Exercise Physiology
Peer reviewedAmend, John R.; And Others – Journal of Computers in Mathematics and Science Teaching, 1990
Demonstrated in this article are some of the capabilities of a spreadsheet program using data obtained in gas law experiments and a computer interface system. The ability to organize and analyze data which a computer can provide for the student is emphasized. (KR)
Descriptors: Chemistry, Computer Assisted Instruction, Data Analysis, Graphs
Porta, Angela R.; Dhawan, Puneet – Journal of College Science Teaching, 2006
Undergraduate biology programs are currently undergoing reform to involve students in biomedical research. Engaging students in more active, hands-on experiments allows students to discover scientific principles for themselves, and to develop techniques of critical thinking and problem solving. This models the world of real scientific research,…
Descriptors: Scientific Principles, Scientific Research, Scientists, Research Design
Peer reviewedVenugopalan, Mundiyath – Journal of Computers in Mathematics and Science Teaching, 1990
Described in this article is a problem-solving activity which integrates the application of microcomputers with the learning of physical chemistry. Students use the program with spectroscopic data to calculate the thermodynamic properties and compare them with the values from the thermochemical tables. (Author/KR)
Descriptors: Chemistry, College Science, Computation, Computer Assisted Instruction
National Aeronautics and Space Administration (NASA), 2007
Lunar Nautics is a hands-on curriculum targeted to youth in grades 6 to 8, that allows the students to design, test, analyze and manage a space mission from initial concept to project funding. Lunar Nautics provides opportunities for development of problem solving skills and critical thinking skills that are needed to design, organize and manage a…
Descriptors: Science Activities, After School Programs, Thinking Skills, Problem Solving

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