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Dickinson, Gail; Summers, Emily J. – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2010
This longitudinal study tracks primary participants over 3 years from their last year of university preservice teaching training through their second year of in-service teaching via surveys, interviews, and teaching observations. The study employs a descriptive case study design to examine the transfer of preservice content, pedagogy, and video…
Descriptors: Preservice Teachers, Case Studies, Faculty Development, Teaching Methods
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Sikoyo, Leah – Cambridge Journal of Education, 2010
This article explores teachers' experiences of implementing the problem-solving approach; a learner centred pedagogic innovation prescribed by a centrally mandated curriculum in Uganda. It presents teachers' interpretations of the pedagogic principles suggested by the innovation as well as their accounts of challenges of implementing the pedagogic…
Descriptors: Instructional Innovation, Problem Solving, Educational Change, Foreign Countries
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Fons, John T. – Physics Teacher, 2008
Laboratory sessions offer students an opportunity to develop creative problem-solving skills and to better understand the nature of the scientific process through hands-on learning. Unfortunately, traditional procedures are often written in such detail, they require students to do little more than follow step-by-step directions. Under those…
Descriptors: Creativity, Research Methodology, Problem Solving, Science Instruction
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Jewett, John W., Jr. – Physics Teacher, 2008
Energy is a critical concept that is used in analyzing physical phenomena and is often an essential starting point in physics problem-solving. It is a global concept that appears throughout the physics curriculum in mechanics, thermodynamics, electromagnetism, and modern physics. Energy is also at the heart of descriptions of processes in biology,…
Descriptors: Textbooks, Thermodynamics, Physics, Science Instruction
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Partensky, Michael B. – Physics Teacher, 2008
The circle of Apollonius is named after the ancient geometrician Apollonius of Perga. This beautiful geometric construct can be helpful when solving some general problems of geometry and mathematical physics, optics, and electricity. Here we discuss two of its applications: localizing an object in space and calculating electric fields. First, we…
Descriptors: Energy, Geometric Concepts, Scientific Principles, Science Instruction
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Long, S. R.; Browning, S. R.; Lagowski, J. J. – Journal of Chemical Education, 2008
The electrochemical synthesis of transition-metal acetylacetonates described here can form the basis of assisting in the transformation of an entry-level laboratory course into a research-like environment where all members of a class are working on the same problem, but where each member has a personal responsibility for the synthesis and…
Descriptors: Chemistry, Science Experiments, Science Instruction, Problem Solving
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Mayer, Richard E.; Griffith, Emily; Jurkowitz, Ilana T. N.; Rothman, Daniel – Journal of Experimental Psychology: Applied, 2008
In Experiment 1, students received an illustrated booklet, PowerPoint presentation, or narrated animation that explained 6 steps in how a cold virus infects the human body. The material included 6 high-interest details mainly about the role of viruses in sex or death (high group) or 6 low-interest details consisting of facts and health tips about…
Descriptors: Multimedia Instruction, Cognitive Processes, Science Instruction, Instructional Materials
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Szeberenyi, Jozsef – Biochemistry and Molecular Biology Education, 2008
Mutational inactivation of a specific gene is the most powerful technique to analyze the biological function of the gene. This approach has been used for a long time in viruses, bacteria, yeast, and fruit fly, but looked quite hopeless in more complex organisms. Targeted inactivation of specific genes (also known as knock-out mutation) in mice is…
Descriptors: Genetics, Biology, Problem Solving, Science Instruction
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Armoni, Michal; Ginat, David – Computer Science Education, 2008
Reversing is the notion of thinking or working in reverse. Computer science textbooks and tutors recognize it primarily in the form of recursion. However, recursion is only one form of reversing. Reversing appears in the computer science curriculum in many other forms, at various intellectual levels, in a variety of fundamental courses. As such,…
Descriptors: Computer Science Education, Problem Solving, Computer Science, Models
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Jimenez, J. L.; Campos, I.; Aquino, N. – European Journal of Physics, 2008
We solve exactly the problem of calculating the electromagnetic fields produced by a finite wire with a constant current, by using two methods: retarded potentials and Jefimenko's formalism. One result in this particular case is that the usual Biot-Savart law of magnetostatics gives the correct magnetic field of the problem. We also show…
Descriptors: Magnets, Energy, Scientific Concepts, Science Instruction
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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
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Ornek, Funda – Asia-Pacific Forum on Science Learning and Teaching, 2009
The purpose of this study was to investigate how modeling-based instruction combined with an interactive-engagement teaching approach promotes students' problem solving abilities. I focused on students in a calculus-based introductory physics course, based on the matter and interactions curriculum of Chabay & Sherwood (2002) at a large state…
Descriptors: Physics, Problem Solving, Calculus, Teaching Methods
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Taasoobshirazi, Gita; Glynn, Shawn M. – Journal of Research in Science Teaching, 2009
A model of expertise in chemistry problem solving was tested on undergraduate science majors enrolled in a chemistry course. The model was based on Anderson's "Adaptive Control of Thought-Rational" (ACT-R) theory. The model shows how conceptualization, self-efficacy, and strategy interact and contribute to the successful solution of quantitative,…
Descriptors: Majors (Students), Self Efficacy, Chemistry, Problem Solving
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Fortus, David – Science Education, 2009
Making assumptions is an important step in solving many real-world problems. This study investigated whether participants who could solve well-defined physics problems could also solve a real-world physics problem that involved the need to make assumptions. The participants, who all had at least a BA in physics, were videotaped "thinking aloud"…
Descriptors: Physics, Science Education, Problem Solving, Science Instruction
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Walker-Livingston, Wendy – Science Scope, 2009
Why not combine the use of technology with the excitement of a scavenger hunt that moves middle-level students out into the "wilds" of their school campus to classify plants? In the lesson plan described here, students embark on a botanical scavenger hunt and then document their findings using a digital camera. This project was designed to allow…
Descriptors: Photography, Science Instruction, Middle School Students, Outdoor Education
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