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Rebeckah K. Fussell; Emily M. Stump; N. G. Holmes – Physical Review Physics Education Research, 2024
Physics education researchers are interested in using the tools of machine learning and natural language processing to make quantitative claims from natural language and text data, such as open-ended responses to survey questions. The aspiration is that this form of machine coding may be more efficient and consistent than human coding, allowing…
Descriptors: Physics, Educational Researchers, Artificial Intelligence, Natural Language Processing
Halloun, Ibrahim – 1995
Models occupy the content core of physics, and modeling is a major process for constructing and employing physics knowledge. A model is characterized by its domain, composition, structure, behavior, and organization. Problem solving is a schematic modeling process consisting of model selection, construction, validation, analysis, and deployment. A…
Descriptors: Mechanics (Physics), Models, Physics, Problem Solving
Heller, Joan I.; Hungate, Harriet N. – 1984
This paper discusses research on the processes by which individuals progress toward expertise in scientific domains, focusing on the activity of constructing qualitative problem representations during solution of standard mechanics problems in physics. It includes information on: (1) descriptive analyses of problem-solving performance; (2)…
Descriptors: College Science, Computer Software, Higher Education, Instructional Design
Heller, Joan I.; And Others – 1983
Several empirical and theoretical analyses related to scientific problem-solving are reviewed, including: detailed studies of individuals at different levels of expertise, and computer models simulating some aspects of human information processing during problem solving. Analysis of these studies has revealed many facets about the nature of the…
Descriptors: Artificial Intelligence, Cognitive Processes, College Science, Educational Research
Smolensky, Paul; Riley, Mary S. – 1984
This document consists of three papers. The first, "A Parallel Model of (Sequential) Problem Solving," describes a parallel model designed to solve a class of relatively simple problems from elementary physics and discusses implications for models of problem-solving in general. It is shown that one of the most salient features of problem…
Descriptors: Computation, Mathematical Models, Mathematics, Models

Parsons, Sharon – Research in Science Education, 1995
Investigated children's conceptualization of scientific phenomena and intuitive methods learned from their everyday experiences. Explores the nature of tinkering within the context of electricity. Presents a model of tinkering that provides a conceptual framework for the interpretation of tinkering as one of the methods students use to make sense…
Descriptors: Electricity, Intuition, Models, Physics

Nersessian, Nancy J. – Science and Education, 1995
Presents a model of expert reasoning practices that focuses on constructive modeling, a tacit dimension of the thinking practices of expert physicists. Draws on historical cases and protocol accounts of expert reasoning in scientific problem solving and argues that having expertise in physics requires facility with the practice of constructive…
Descriptors: Constructivism (Learning), Models, Physics, Science Education

Bennion, Bruce C.; Karschamroon, Sunee – Journal of Documentation, 1984
This study examines possibility of ranking journals in physics by means of bibliometric regression models that estimate usefulness as it is reported by 167 physicists in United States and Canada. Development of four models, patterns of deviation from models, and validity and application are discussed. Twenty-six references are cited. (EJS)
Descriptors: Models, Multiple Regression Analysis, Physics, Research Methodology

Andaloro, G.; And Others – International Journal of Science Education, 1991
The importance and value of modeling in physics teaching is discussed from two different points of view: to teach physics as it is nowadays practiced; and to take into account research into cognitive science and learning. Two kinds of modeling software are briefly described. (40 references) (Author)
Descriptors: Computer Assisted Instruction, Computer Simulation, Higher Education, Knowledge Level

Dupin, J. J.; Johsua, S. – Science Education, 1989
Investigates the effect of modeling analogy on learning of the concepts of electricity in grade 6, 8, and 10. Describes 2 analogies (train analogy and thermal analogy) with diagrams and examples. Discusses the accessibility, transferability, and difficulty of each analogy. Reports treatment effect and some further implications. (YP)
Descriptors: Concept Formation, Electricity, Elementary School Science, Models

Niedderer, H.; And Others – Journal of Computer Assisted Learning, 1991
Described is how an iconic model building software can be used to help students gain a deeper qualitative conceptual understanding of physics concepts. The program, STELLA, links research about misconceptions and new teaching strategies with the use of modern information technology tools. (31 references) (KR)
Descriptors: Computer Assisted Instruction, Concept Formation, Learning Strategies, Misconceptions

Smith, W. – Physics Education, 1987
Proposes a mathematical computer model for the behavior of liquids using the classical dynamic principles of Sir Isaac Newton and the molecular dynamics method invented by other scientists. Concludes that other applications will be successful using supercomputers to go beyond simple Newtonian physics. (CW)
Descriptors: College Mathematics, College Science, Computer Uses in Education, Fluid Mechanics
Hewson, Peter W. – South African Journal of Science, 1984
This article describes an approach to modifying science students' alternative conceptions of physical phenomena by means of diagnostic and remedial microcomputer programs designed in accord with a model of conceptual change. Current applications of microcomputers are discussed, including numerical work, drill and testing, tutorials, simulation,…
Descriptors: College Students, Computer Assisted Instruction, Concept Formation, Concept Teaching
Clement, John; Brown, David – 1984
In this paper examples of the role of analogical reasoning in expert problem solving are presented. These are intended to show that using an analogy can change an expert's understanding of a problem situation by changing the conceptual model he or she uses to think about the situation. This suggests that using a good analogy may allow students to…
Descriptors: Analogy, Cognitive Structures, College Science, Concept Formation
Tweney, Ryan D. – 1987
Drawing parallels with critical thinking and creative thinking, this document describes some ways that scientific thinking is utilized. Cognitive approaches to scientific thinking are discussed, and it is argued that all science involves an attempt to construct a testable mental model of some aspect of reality. The role of mental models is…
Descriptors: Biology, Cognitive Processes, College Science, Higher Education
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