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Kampourakis, Kostas – Science Scope, 2006
Many secondary students hold misconceptions about evolution, even after instruction, that are often inconsistent with what is accepted by evolutionary biologists. Understanding evolution is difficult due to major conceptual difficulties concerning variation, differential survival, adaptation, and natural selection. In this article, the author…
Descriptors: Misconceptions, Evolution, Scientific Concepts, Science Instruction
Sakakeeny, Jarred – Science Scope, 2006
Biomaterial science is a rapidly growing field that has scientists and doctors searching for new ways to repair the body. A merger between medicine and engineering, biomaterials can be complex subject matter, and it can certainly capture the minds of middle school students. In the lesson described in this article, seventh graders generally learn…
Descriptors: Grade 7, Assistive Technology, Science Instruction, Middle School Students
Schoedinger, Sarah; Cava, Francesca; Jewell, Beth – Science Teacher, 2006
Unfortunately, the United States educational system does not adequately include the concepts necessary for students, and thus the public at large, to develop a coherent understanding of the importance of the ocean to our daily lives. Society is largely ocean illiterate and a basic understanding of the key concepts needed for sound decision making…
Descriptors: Scientific Concepts, Science Education, Oceanography, Elementary School Science
Liu, Xiufeng; Lesniak, Kathleen – Journal of Research in Science Teaching, 2006
Adopting a neo-Piagetian conceptual framework and a phenomenographic approach, we identified students' conceptual progression pattern on matter from elementary to high school. We interviewed 54 students from Grade 1 to Grade 10 chemistry on their conceptions of substances (i.e., water, vinegar, and baking soda) and the combining of the substances.…
Descriptors: Chemistry, Scientific Concepts, Comprehension, Concept Formation
Peer reviewedBindel, Thomas H. – Journal of Chemical Education, 2004
A new method is presented, which educates and empowers the teachers and assists them in incorporating entropy analysis in their curricula and also provides an entropy-analysis unit that can be used in classrooms. The topics that the teachers can cover depending on the ability of the students and the comfort level of the teacher are included.
Descriptors: Scientific Concepts, Secondary Education, Postsecondary Education, Science Curriculum
Peer reviewedShtoyko, Tanya; Zudans, Imants; Seliskar, Carl J.; Heineman, William R.; Richardson, John N. – Journal of Chemical Education, 2004
A sensor experiment which can be applied to advanced undergraduate laboratory course in physical or analytical chemistry is described along with certain concepts like the demonstration of chemical sensing, preparation of thin films on a substrate, microtitration, optical determination of complex ion stoichiometry and isosbestic point. It is seen…
Descriptors: Chemistry, Advanced Courses, Undergraduate Students, Scientific Concepts
Peer reviewedForbes, David C. – Journal of Chemical Education, 2004
Application of concepts presented in organic chemistry lecture using a virtual project involving the sythesis of medicinally important compounds is emphasized. The importance of reinforcing the concepts from lecture in lab, thus providing a powerful instructional means is discussed.
Descriptors: Lecture Method, Organic Chemistry, Science Instruction, Science Curriculum
Cowens, John – Teaching Pre K-8, 2005
From wind-stirred ripples to "large waves in a harbor," this paper describes science projects that can help students learn about and create their own ocean motion.
Descriptors: Motion, Science Activities, Science Instruction, Creative Teaching
Shimabukuro, Mary A.; Haberman, Vickie – American Biology Teacher, 2006
In this paper, the authors explore the potential of garlic ("Allium sativum L.") to illustrate the concept of allelopathy and demonstrate the biological activity of plant volatiles. This article describes several classroom experiments involving garlic that can be used as a method of introducing students of various ages to the following important…
Descriptors: Biology, Science Instruction, Science Experiments, Plants (Botany)
MacKenzie, Ann Haley – American Biology Teacher, 2006
For many biology classes, the year begins with the study of characteristics of life. Many biology teachers have their students read lists from biology books and then have examinations about those characteristics. However, it is doubtful if students really understand what those characteristics mean "in terms of the life of an organism." They may…
Descriptors: Science Education, Science Instruction, Teaching Methods, Science Activities
Butcher, Michael T.; Bertram, John E. A. – Journal of Science Education and Technology, 2004
This laboratory exercise is designed to provide an understanding of the mechanical concept of impulse as it applies to human movement and athletic performance. Students compare jumps performed with and without handheld weights. Contrary to initial expectation, jump distance is increased with moderate additional weights. This was familiar to…
Descriptors: Exercise, Physical Fitness, Athletics, Athletes
Peer reviewedKahn, Bruce E. – Journal of Chemical Education, 2004
A laboratory activity that can be used at a number of levels from high school to college is discussed. This activity can be used to teach chemical concepts such as oxidation and reduction, stoichiometry, acids and bases, pH, nucleophilic reactions, conjugation, leaving groups, complexation, solubility, and reversibility.
Descriptors: Chemistry, Secondary Education, Scientific Concepts, Laboratory Experiments
Peer reviewedWilliamson, Vickie; Huffman, Jason; Peck, Larry – Journal of Chemical Education, 2004
High School students' understanding about the particulate theory of matter and their use of particulate terminology is investigated. The Physical Changes Concepts Test (PCCT) was administered in two forms, an applied version and a theoretical version, to determine whether students scientifically understood the concepts well enough to apply them to…
Descriptors: Theories, High School Students, Scientific Concepts, Scientific Methodology
Peer reviewedOliver-Hoyo, Maria; Allen, DeeDee; Hunt, William F.; Hutson, Joy; Pitts, Angela – Journal of Chemical Education, 2004
A new approach for teaching general chemistry that combines lecture and laboratory into one seamless session and incorporates instructional methods supported by research-based findings is described. A comparative study of the understanding of basic chemical concepts and effective use of high-order cognitive skills by students exposed to two…
Descriptors: Teaching Methods, Active Learning, Chemistry, Science Instruction
Psillos, D.; Tselfes, Vassilis; Kariotoglou, Petros – International Journal of Science Education, 2004
In the present paper we propose a theoretical framework for an epistemological modelling of teaching-learning (didactical) activities, which draws on recent studies of scientific practice. We present and analyse the framework, which includes three categories: namely, Cosmos-Evidence-Ideas (CEI). We also apply this framework in order to model a…
Descriptors: Science Instruction, Scientific Literacy, Models, Teaching Methods

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