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Hegedus, Tess; Segarra, Verónica A.; Allen, Tawannah G.; Wilson, Hillary; Garr, Casey; Budzinski, Christina – Science Teacher, 2016
The authors developed an integrated science-and-art program to engage science students from a performing arts high school in hands-on, inquiry based lab experiences. The students participated in eight biology-focused investigations at a local university with undergraduate mentors. After the laboratory phase of the project, the high school students…
Descriptors: Investigations, Extracurricular Activities, Art Education, Science Education
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Staudt, Carolyn; Hanzlick-Burton, Camden; Williamson, Carol; McIntyre, Cynthia – Science Teacher, 2015
The Innovative Technology in Science Inquiry (ITSI) project is a learning portal with hundreds of free, customizable science, math, and engineering activities funded by the National Science Foundation at the Concord Consortium, a nonprofit research and development organization dedicated to transforming education through technology. The project…
Descriptors: Internet, Genetics, Molecular Structure, Molecular Biology
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O'Brien, Walter – Science Teacher, 2015
One of the most difficult challenges of incorporating literacy in the classroom--as called for by the "Common Core State Standards" (NGAC and CCSSO 2010)--is inspiring reluctant writers. Students are often unmotivated by essay assignments or having to write answers to open-ended questions. Some students may even view these as obstacles…
Descriptors: Chemistry, Science Instruction, Science Education, Molecular Structure
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Bybee, Rodger W. – Science Teacher, 2013
Using the life sciences, this article first reviews essential features of the "NRC Framework for K-12 Science Education" that provided a foundation for the new standards. Second, the article describes the important features of life science standards for elementary, middle, and high school levels. Special attention is paid to the teaching…
Descriptors: Biological Sciences, Biology, Science Education, Elementary School Science
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Streitberger, H. Eric – Science Teacher, 1994
Describes a method that uses ping-pong balls to construct 3-D models of covalent molecules to represent Group I-VIII atoms. (ZWH)
Descriptors: Chemistry, Demonstrations (Science), Models, Molecular Structure
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Craft, Jennifer L.; Miller, Jacqueline S. – Science Teacher, 2007
The National Science Education Standards (NRC 1996) recognize the efficacy of teaching science within the context of history, emphasizing the evolution of concepts, models, and theories. By studying science in a historical context, students view themselves less as spectators and more as participants in this human quest for truth and understanding.…
Descriptors: Nuclear Physics, Chemistry, Molecular Structure, Science Education
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Burr, Robert E. – Science Teacher, 1975
Descriptors: Audiovisual Aids, Chemistry, Demonstrations (Educational), Instructional Materials
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Lamb, William G. – Science Teacher, 1984
Discusses the rationale for using photochemistry to merge descriptive chemistry and molecular orbital theory in first-year chemistry courses. Includes procedures and safety information for various activities, demonstrations, and experiments involving photochemical reactions. (DH)
Descriptors: Chemistry, Demonstrations (Educational), High Schools, Laboratory Procedures
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Virtes, George J., Jr. – Science Teacher, 1974
Descriptors: Chemistry, Demonstrations (Educational), Matter, Models
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Case, Christine L. – Science Teacher, 1991
Presented is an activity in which students make models of viruses, which allows them to visualize the shape of these microorganisms. Included are some background on viruses, the biology and geometry of viruses, directions for building viruses, a comparison of cells and viruses, and questions for students. (KR)
Descriptors: Communicable Diseases, Disease Control, Diseases, Geometry
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Castellini, Olivia M.; Lisensky, George C.; Ehrlich, Jennifer; Zenner, Greta M.; Crone, Wendy C. – Science Teacher, 2006
The four main forms of carbon--diamond, graphite, buckyballs, and carbon nanotubes (CNTs)--are an excellent vehicle for teaching fundamental principles of chemical bonding, material structure, and properties. Carbon atoms form a variety of structures that are intrinsically connected to the properties they exhibit. Educators can take advantage of…
Descriptors: Nuclear Physics, Chemistry, Science Education, Scientific Concepts
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Tretter, Thomas – Science Teacher, 2006
Nanotechnology is an emergent technology that holds much promise and excitement. The ability to control and manipulate matter at the most basic level--atoms and molecules--offers possibilities that transcend traditional science discipline boundaries. This interdisciplinary nature of nanotechnology provides many avenues for teachers to connect the…
Descriptors: Measures (Individuals), Science Activities, Molecular Structure, Scientific Concepts
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Remington, Lloyd D. – Science Teacher, 1980
Described is the use of analogy in teaching abstract chemical concepts. A foreign universe is postulated and nuts, bolts, and washers play the roles of atoms and molecules in this universe. (DS)
Descriptors: Atomic Structure, Chemistry, Concept Formation, Molecular Structure
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DiSpezio, Michael A. – Science Teacher, 1990
Contrasted are DNA viruses, RNA viruses, and RNA retroviruses. The structure, genome, and replication of retroviruses are discussed. The discovery, structure, and action of the HIV virus are described. A list of 17 references is included. (CW)
Descriptors: Acquired Immune Deficiency Syndrome, Biological Sciences, Communicable Diseases, Disease Control
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Gabel, Dorothy; And Others – Science Teacher, 1992
Chemistry can be described on three levels: sensory, molecular, and symbolic. Proposes a particle approach to teaching chemistry that uses magnets to aid students construct molecular models and solve particle problems. Includes examples of Johnstone's model of chemistry phenomena, a problem worksheet, and a student concept mastery sheet. (MDH)
Descriptors: Chemistry, Cognitive Development, Concept Formation, Magnets