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Chung, Gregory K. W. K. – Teachers College Record, 2014
Background: Historically, significant advances in scientific understanding have followed advances in measurement and observation. As the resolving power of an instrument increased, so have gains in the understanding of the phenomena being observed. Modern interactive systems are potentially the new "microscopes" when they are…
Descriptors: Online Systems, Data Analysis, Data Collection, Data Interpretation
Livy, Sharyn; Vale, Colleen – Mathematics Teacher Education and Development, 2011
In this article, pre-service teachers' mathematics content knowledge is explored through the analysis of two items about ratio from a Mathematical Competency, Skills and Knowledge Test. Pre-service teachers' thinking strategies, common errors and misconceptions in their responses are presented and discussed. Of particular interest was the range…
Descriptors: Mathematics Education, Misconceptions, Preservice Teachers, Tests
Nehm, Ross H.; Ha, Minsu – Journal of Research in Science Teaching, 2011
Despite concerted efforts by science educators to understand patterns of evolutionary reasoning in science students and teachers, the vast majority of evolution education studies have failed to carefully consider or control for item feature effects in knowledge measurement. Our study explores whether robust contextualization patterns emerge within…
Descriptors: Majors (Students), Evolution, Animals, Measures (Individuals)
Sherin, Bruce – 1999
This paper introduces issues related to the role of intuitive knowledge in physics learning. Phenomenological primitives, which form the base level for intuitive explanations in the research, are discussed. Three primary questions are the focus of this paper: (1) What role, if any, does intuitive knowledge play in physics problem solving? (2) How…
Descriptors: Concept Formation, Higher Education, Misconceptions, Physics
Boyer, Kristy Elizabeth, Ed.; Yudelson, Michael, Ed. – International Educational Data Mining Society, 2018
The 11th International Conference on Educational Data Mining (EDM 2018) is held under the auspices of the International Educational Data Mining Society at the Templeton Landing in Buffalo, New York. This year's EDM conference was highly competitive, with 145 long and short paper submissions. Of these, 23 were accepted as full papers and 37…
Descriptors: Data Collection, Data Analysis, Computer Science Education, Program Proposals
Peer reviewedStahl, Frieda – Physics Teacher, 1994
Provides a method to help students understand problem-solving techniques used in introductory physics courses. (MVL)
Descriptors: Higher Education, Misconceptions, Nonmajors, Physics
Peer reviewedGreenslade, Thomas B., Jr. – Physics Teacher, 1994
Discusses and provides an example of reflectivity approximation to determine whether reflection will occur. Provides a method to show thin-film interference on a projection screen. Also applies the reflectivity concepts to electromagnetic wave systems. (MVL)
Descriptors: Demonstrations (Science), Higher Education, Light, Misconceptions
Peer reviewedRoschelle, Jeremy – International Journal of Science Education, 1998
Supports the use of microanalysis of conceptual change as a tool for reconceptualizing the nature of students' knowledge-in-development and dissolving concept-misconception and expert-novice dichotomies. Contains 48 references. (DDR)
Descriptors: Concept Formation, High Schools, Higher Education, Knowledge Representation
Peer reviewedThomas, Peter L.; Schwenz, Richard W. – Journal of Research in Science Teaching, 1998
Focuses on many alternative conceptions and nonconceptions about material related to equilibrium and thermodynamics. Uses interviews and compares the concepts from these with those expressed by experts in textbooks. (DDR)
Descriptors: Chemical Equilibrium, Concept Formation, Higher Education, Misconceptions
Peer reviewedMenigaux, Jacqueline – Physics Education, 1994
Describes an investigation that explores students' understanding of the translation, rotation, and deformation of an object. Findings illustrate that students have difficulty appreciating that these different phenomena can occur simultaneously. Discusses some implications for teaching. (DDR)
Descriptors: Concept Formation, Energy, Foreign Countries, Higher Education
Peer reviewedBayman, Piraye; Mayer, Richard E. – Journal of Educational Psychology, 1988
BASIC programing was taught to 95 undergraduates from a manual emphasizing the language's syntax or from a manual that included additional material on the underlying semantics. Both approaches produced equivalent learning of syntactic features of BASIC; however, semantically trained students developed fewer misconceptions and performed better on…
Descriptors: Computer Science Education, Higher Education, Instructional Materials, Misconceptions
Peer reviewedGrimvall, Goran – Physics Teacher, 1995
Provides six short story problems that are solved using common physics concepts. Includes solutions. (MVL)
Descriptors: Higher Education, Mathematical Applications, Misconceptions, Physics
Peer reviewedMcMillan, Claude, III; Swadener, Marc – Journal of Research in Science Teaching, 1991
Describes the problem-solving behaviors of six novice subjects attempting to solve an electrostatics problem in calculus-based college physics. The level of qualitative thinking exhibited by these novices was determined. Sound procedural knowledge and problem representation were suggested as an integral part of skilled problem solving in physics.…
Descriptors: Calculus, Cognitive Development, Concept Formation, Higher Education
Peer reviewedHammer, David – Physics Teacher, 1989
Considers what college students think reasoning about physics involves. Discusses whether it is possible to identify students' general conceptions of physics and the effects of a course on students' concepts. Data indicated that students' understandings had an effect on problem solving, qualitative problems, and misconceptions. (YP)
Descriptors: Beliefs, College Science, Concept Formation, Higher Education
Peer reviewedNassar, Antonio B. – Physics Teacher, 1994
Discusses a well-known optical refraction problem where the depth of an object in a liquid is determined. Proposes that many texts incorrectly solve the problem. Provides theory, equations, and diagrams. (MVL)
Descriptors: Higher Education, Light, Misconceptions, Optics

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