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Cheng, Meng-Fei – Teaching Science, 2009
This paper illustrates a series of activities designed to encourage fourth to sixth-grade students to develop their conceptions of magnets. Through scaffolding activities and facilitation from the teacher, students will be able to generate, evaluate, and refine their explanations for how magnets work. Students can gradually develop sophisticated…
Descriptors: Magnets, Science Instruction, Scientific Concepts, Scientific Principles
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Hansen, Pal J. Kirkeby – Design and Technology Education, 2009
"Knowledge Promotion" is the recent curriculum for the Norwegian 10-year compulsory school. "Technology and Design" (ToD) is a new main subject area in Natural Science. ToD should be taught across the curriculum between Natural Science, Art and Crafts, and Mathematics. The main goal is that pupils should be able to plan,…
Descriptors: Natural Sciences, Scientific Principles, Case Studies, Technology Education
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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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Wilson, Craig A. – Middle School Journal (J3), 2009
The current educational climate poses a difficult challenge for middle grades science teachers, because they must respond to calls for more inquiry-oriented instruction in the science classroom and, at the same time, prepare students to pass high-stakes proficiency tests based on broad state science standards. The purpose of this article is to…
Descriptors: Science Teachers, Science Education, Middle School Students, Secondary School Science
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Petridou, E.; Psillos, D.; Hatzikraniotis, E.; Viiri, J. – Physics Education, 2009
As research shows that the knowledge and use of models and modelling by teachers is limited, particularly for predicting phenomena, we developed and applied a sequence of three representations of a simulated model focusing on polarization and specifically showing the behaviour of an atom, and forces exerted on a dipole and an insulator, when a…
Descriptors: Preservice Teachers, Science Activities, Science Instruction, Physics
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Eidietis, Laura; Rutherford, Sandra – Science Activities: Classroom Projects and Curriculum Ideas, 2009
In the activities presented in this article, students mimic real scientists while constructing predictions and scientific explanations about surface currents. The activities are inspired by and couched within true scientific inquiries regarding the ocean and the North American Great Lakes. Students engage in a classroom inquiry and use map-reading…
Descriptors: Scientific Concepts, Science Activities, Scientific Principles, Earth Science
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Kattoula, Ehsan; Verma, Geeta; Martin-Hansen, Lisa – Journal of College Science Teaching, 2009
In this paper, the authors examine an algebra-based physics course designed for preservice teachers and explore how the course integrated two pedagogical strategies to bridge the gap between inquiry-learning experiences and the teachers' nature of science (NOS) understandings. The results of this research show that the explicit, reflective process…
Descriptors: Preservice Teachers, Scientific Principles, Physics, Science Instruction
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Schaffer, Linda; Kingsley, Karla V. – Science and Children, 2009
In order to demonstrate how plants remove water from the soil and release it to the atmosphere, students compared open- and closed-growing systems using drought-tolerant and higher water requirement plants. Then, students designed a drought-tolerant garden demonstrating what they had learned. Through this experience, students not only learned…
Descriptors: Ecology, Science Instruction, Water, Gardening
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Jackson, Julie – Science Activities: Classroom Projects and Curriculum Ideas, 2009
Learning about states of matter is fun and exciting when students, acting as water molecules, role-play moving from a solid to a liquid to a gas. The 5-E lesson plan model provides the framework for this activity, ensuring that students actively engage in inquiry science while creatively constructing knowledge. (Contains 2 figures.)
Descriptors: Demonstrations (Educational), Science Instruction, Scientific Principles, Learning Activities
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Sadler, Troy D. – Studies in Science Education, 2009
This paper presents situated learning as a theoretical framework for conceptualising new ways to approach science education. Key constructs associated with this framework, including communities of practice, Discourse and identity, are introduced. I advance an argument to develop classroom communities of practice based on engaged citizenship…
Descriptors: Investigations, Scientific Principles, Student Development, Science Education
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Ridley, Charles R.; Shaw-Ridley, Mary – Counseling Psychologist, 2009
Clinical judgment is foundational to psychological practice. Accurate judgment forms the basis for establishing reasonable goals and selecting appropriate treatments, which in turn are essential in achieving positive therapeutic outcomes. Therefore, Spengler and colleagues' meta-analytic finding--clinical judgment accuracy improves marginally with…
Descriptors: Medical Evaluation, Clinical Experience, Inferences, Therapy
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Kleinert, Katrin – Science and Children, 2009
How could a rock formed by volcanic activity get to this shoreline, surrounded by sedimentary rocks? That was the question a group of third-grade students asked--and answered--during an inquiry-based summer camp. Over a two week timeframe, the students practiced basic inquiry skills such as observing; measuring; describing and drawing; sharing…
Descriptors: Physical Geography, Foreign Countries, Science Instruction, Inquiry
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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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Huggins, Elisha – Physics Teacher, 2008
As students watched a compressional pulse bounce back and forth on the horizontally suspended Slinky[TM], shown in Fig. 1, we wrote down the formula for the speed of the pulse and promised that later in the course we would derive the formula. The problem is we did not keep our promise in the course. Here is where we are keeping the promise. As…
Descriptors: Scientific Concepts, Science Instruction, Mathematical Formulas, Physics
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