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Rosenblatt, Louis – Science Teacher, 2004
Inquiry labs in the science classroom help students make connections and discover scientific relationships for themselves. This article describes an inquiry laboratory in which students explore the properties of a pendulum. Since most students are familiar with pendulums before they get to high school, they have discovered that the period is…
Descriptors: Laboratory Equipment, Science Instruction, Science Education, Scientific Concepts
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Liddicoat, Scott; Sebranek, John – Science Teacher, 2005
Traditionally nuclear chemistry appears in the last few chapters of chemistry textbooks and is not normally considered a mainstream topic. In addition, some science teachers lack the training or equipment to teach nuclear chemistry. Yet nuclear chemistry is a very important topic that should be taught in all chemistry classrooms. Learning about…
Descriptors: Radiology, Radiation, Chemistry, Scientific Research
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Lisensky, George C.; Horoszewski, Dana; Gentry, Kenneth L.; Zenner, Greta M.; Crone, Wendy C . – Science Teacher, 2006
Phase changes and intermolecular forces are important physical science concepts but are not always easy to present in an active learning format. This article presents several interactive activities in which students plot the melting points of some fatty acids and explore the effect that the nanoscale size and shape of molecules have on the…
Descriptors: Active Learning, Chemistry, Heat, Molecular Structure
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Otte, M. – Educational Studies in Mathematics, 2003
Niels Bohr's term "complementarity" has been used by several authors to capture the essential aspects of the cognitive and epistemological development of scientific and mathematical concepts. In this paper we will conceive of complementarity in terms of the dual notions of extension and intension of mathematical terms. A complementarist approach…
Descriptors: Teaching Methods, Mathematical Concepts, Mathematics Instruction, Mathematics Education
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Tsai, Chin-Chung; Chang, Chun-Yen – Journal of Research in Science Teaching, 2005
This study was based on the framework of the "conflict map" to facilitate student conceptual learning about causes of the seasons. Instruction guided by the conflict map emphasizes not only the use of discrepant events, but also the resolution of conflict between students' alternative conceptions and scientific conceptions, using…
Descriptors: Foreign Countries, Grade 9, Science Instruction, Memorization
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Kozliak, Evguenii I. – Journal of Chemical Education, 2004
A molecular approach for introducing entropy in undergraduate physical chemistry course and incorporating the features of Davies' treatment that meets the needs of the students but ignores the complexities of statistics and upgrades the qualitative, intuitive approach of Lambert for general chemistry to a semiquantitative treatment using Boltzmann…
Descriptors: Scientific Concepts, Chemistry, Molecular Structure, Undergraduate Students
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Gasyna, Zbigniew L.; Jurkiewicz, Antoni – Journal of Chemical Education, 2004
An experiment designed for the physical chemistry laboratory where (super 13)C NMR is applied to determine the spin-lattice relaxation time for carbon atoms in n-hexanol is proposed. It is concluded that students learn the principles and concepts of NMR spectroscopy as well as dynamic NMR experiments.
Descriptors: Laboratory Experiments, Chemistry, Undergraduate Study, Scientific Principles
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Angeli, Celestino; Borini, Stefano; Cimiraglia, Renzo – Journal of Chemical Education, 2005
A very simple strategy for the solution of the Schrodinger equation of a particle moving in one dimension subjected to a generic potential is presented. This strategy is implemented in a computer program called Kmonodium, which is free and distributed under the General Public License (GPL).
Descriptors: Computer Software, Physics, Scientific Concepts, Chemistry
Sprackland, Robert George – Education Digest: Essential Readings Condensed for Quick Review, 2006
One of the most confrontational issues before American school boards and administrators is the effort by some Christian fundamentalists to have their views on life and its origins taught in science classes as a scientifically valid alternative to biological evolution. The issue continues to plague science education, suggesting that few school…
Descriptors: Religious Conflict, Evolution, Science Education, Controversial Issues (Course Content)
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Tan, Kim Chwee Daniel; Goh, Ngoh Khang; Chia, Lian Sai; Treagust, David F. – Journal of Chemical Education, 2004
To assess the major sources of students' difficulties in qualitative analysis (QA), 51 grade 10 students (15 to 17 year old) from three secondary schools were interviewed. The results found that the major sources of students' difficulties in understanding QA are formation of precipitates, formation of complex salts and addition of acid.
Descriptors: Grade 10, Secondary Schools, Inorganic Chemistry, High School Students
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George, Linda A.; Becker, William G. – Journal of Geoscience Education, 2003
Explains a collaborative research project in which students study a phenomenon known as the Urban Heat Island (UHI) effect which is a measure of the near-surface air temperature contrast between urbanized and adjoining rural areas. Includes background content and literature review, preliminary studies, development of research questions,…
Descriptors: Cooperative Learning, Geology, Heat, Higher Education
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Forster, Colin – Primary Science Review, 2006
The scientific model of how people see things is far removed from children's real-world experience. They know that light is needed in order to see an object, but may not know that light is reflected off the object and some of that light enters the eyes. In this article, the author explores children's understanding of reflection and how to develop…
Descriptors: Models, Scientific Concepts, Scientific Literacy, Scientific Principles
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Kinchin, Ian M. – Journal of Biological Education, 2003
The teaching units within the National Science Strategy can be summarised diagrammatically. Presentation in this format makes it easier for teachers and students to visualise progression routes through Key Stage 3. An example is given for the key idea of cells. (Contains 1 figure.)
Descriptors: Foreign Countries, National Standards, Visual Aids, Educational Strategies
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Guisasola, Jenaro; Ceberio, Mikel; Zubimendi, Jose Luis – Research in Science Education, 2006
The study we present tries to explore how first year engineering students formulate hypotheses in order to construct their own problem solving structure when confronted with problems in physics. Under the constructivistic perspective of the teaching-learning process, the formulation of hypotheses plays a key role in contrasting the coherence of…
Descriptors: Physics, Problem Solving, Teaching Methods, College Science
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Christidou, Vasilia; Hatzinikita, Vassilia – Research in Science Education, 2006
This paper explores the different types and characteristics of preschool children's explanations of plant growth and rain formation. The children's explanations were categorized as naturalistic, non-naturalistic, or synthetic, i.e., explanations containing both naturalistic and non-naturalistic parts. In regards to plant growth the children…
Descriptors: Plants (Botany), Science Activities, Preschool Children, Comparative Analysis
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