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Podolefsky, Noah S.; Finkelstein, Noah D. – Physical Review Special Topics - Physics Education Research, 2007
Previously, we proposed a model of student reasoning which combines the roles of representation, analogy, and layering of meaning--analogical scaffolding [Podolefsky and Finkelstein, Phys. Rev. ST Phys. Educ. Res. 3, 010109 (2007)]. The present empirical studies build on this model to examine its utility and demonstrate the vital intertwining of…
Descriptors: Physics, Logical Thinking, Science Instruction, Concept Formation
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O'Brien, William P., Jr. – Physics Education, 2007
Residential monthly electricity bills provided by students in physics classes served as data for a project designed to help them develop a sense of scale for electric energy consumption referenced to their own electric lifestyles and insight into how these lifestyles depend heavily on various naturally occurring terrestrial hydrocarbon resources.…
Descriptors: Physics, Energy Conservation, Energy, Science Instruction
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Linsey, Julie; Talley, Austin; White, Christina; Jensen, Dan; Wood, Kristin – Advances in Engineering Education, 2009
Active learning enhances engineering education. This paper presents rationale, curriculum supplements, and an approach to active learning that may be seamlessly incorporated into a traditional lecture-based engineering class. A framework of educational theory that structures the active learning experiences and includes consideration of learning…
Descriptors: Engineering Education, Active Learning, Mechanics (Physics), Educational Innovation
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Conboy, Joseph E.; Fonseca, Jesuina M. B. – EURASIA Journal of Mathematics, Science & Technology Education, 2009
One frequently overlooked approach to improving academic success is the simple technique of listening to the students. Students are uniquely positioned to understand the nature of school problems, and their perceptions can be useful in forming solutions to problems of academic failure and school leaving. In this study, science-tracked secondary…
Descriptors: Foreign Countries, Content Analysis, Grade 10, Classroom Environment
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Baram-Tsabari, Ayelet; Yarden, Anat – Research in Science & Technological Education, 2008
Many of the explanations for girls' disinterest in physics focus on the role of the educational system in creating this situation. Here, we use evidence from free-choice science learning settings to study if this lack of interest is also expressed in non-school settings. Three sets of self-generated questions raised by children, adolescents and…
Descriptors: Females, Physics, Biology, Science Instruction
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Koleza, Eugenia; Pappas, John – International Journal of Mathematical Education in Science and Technology, 2008
In this article, we present the results of a qualitative research project on the effect of motion analysis activities in a Video-Based Laboratory (VBL) on students' understanding of position, velocity and frames of reference. The participants in our research were 48 pre-service teachers enrolled in Education Departments with no previous strong…
Descriptors: Preservice Teacher Education, Qualitative Research, Motion, Science Laboratories
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Lee, Young-Jin; Palazzo, David J.; Warnakulasooriya, Rasil; Pritchard, David E. – Physical Review Special Topics - Physics Education Research, 2008
We investigate short-term learning from hints and feedback in a Web-based physics tutoring system. Both the skill of students and the difficulty and discrimination of items were determined by applying item response theory (IRT) to the first answers of students who are working on for-credit homework items in an introductory Newtonian physics…
Descriptors: Feedback (Response), Physics, Item Response Theory, Tutoring
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Ting, Choo-Yee; Phon-Amnuaisuk, Somnuk; Chong, Yen-Kuan – Educational Technology & Society, 2008
This article aims at discussing how Dynamic Decision Network (DDN) can be employed to tackle the challenges in modeling temporally variable scientific inquiry skills and provision of adaptive pedagogical interventions in INQPRO, a scientific inquiry exploratory learning environment for learning O'level Physics. We begin with an overview of INQPRO…
Descriptors: Discovery Learning, Educational Environment, Science Instruction, Inquiry
Murray, Tom; And Others – 1988
This paper evaluates the strengths and limitations of a computer tutor designed to help students understand physics concepts. The tutor uses a teaching strategy called "bridging analogies" that previous research has demonstrated to be successful in one-to-one tutoring. The strategy is designed to remedy misconceptions by appealing to existing…
Descriptors: Cognitive Structures, College Science, Computer Assisted Instruction, Computer Uses in Education
Schollum, Brendan, Ed.; And Others – 1981
This booklet provides suggestions for student activities appropriate for introducing ideas about forces and their relationship to motion at the Form 1 to 4 level. The overall program is divided into five parts and is based on knowledge of views about force, friction, and gravity which children bring with them to science classrooms. An overview of…
Descriptors: Comprehension, Concept Formation, Concept Teaching, Curriculum Development
SULCOSKI, JOHN W. – 1967
THIS CURRICULUM GUIDE DESCRIBES A TWELFTH-GRADE INTERDISCIPLINARY, INTRODUCTORY NUCLEAR SCIENCE COURSE. IT IS BELIEVED TO FILL THE NEED FOR AN ADVANCED COURSE THAT IS TIMELY, CHALLENGING, AND APPROPRIATE AS A SEQUENTIAL ADDITION TO THE BIOLOGY-CHEMISTRY-PHYSICS SEQUENCE. PRELIMINARY INFORMATION COVERS SUCH MATTERS AS (1) RADIOISOTOPE WORK AREAS,…
Descriptors: Atomic Theory, Audiovisual Aids, Bibliographies, Biology
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Cline, Robert A.; Risley, John S. – Physics Teacher, 1988
Reviews the computer software, "Science Toolkit," made by Broderbund Software. The software covers experiments on light, temperature, timing, motion, speed, and frequency by using interfacing equipment. Provides an evaluation and four typical monitor displays. Concludes that it is an excellent software package. (YP)
Descriptors: Computer Software, Computer Software Reviews, Computer Uses in Education, Courseware
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Osborne, Jonathan – Physics Education, 1987
Points out two areas of difficulty in teaching Newtonian dynamics. Describes several alternatives to physics learning using new technology. Details the use of the LOGO computer language in teaching simple Newtonian environments. Suggests the potential for creating new learning experiences in dynamics with new technology. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Uses in Education, Courseware
Thompson, Malcolm H.; Rameau, Jonathan D. – 1997
This program guide is meant to help teachers assist their students in viewing the six-part public television series, "Stephen Hawking's Universe." The guide features program summaries that give background information and brief synopses of the programs; previewing activities that familiarize students with the subject; vocabulary that…
Descriptors: Astronomy, Earth Science, Educational Television, Higher Education
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Calle, Carlos I.; Wright, Lavonia F. – Journal of Computers in Mathematics and Science Teaching, 1989
Lists a program for a simulation of Rutherford's gold foil experiment in BASIC for both Apple II and IBM compatible computers. Compares Rutherford's model of the atom with Thompson's plum pudding model of the atom. (MVL)
Descriptors: Atomic Structure, Atomic Theory, College Science, Computer Graphics
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