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Showing 2,551 to 2,565 of 2,565 results Save | Export
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Shallenberger, Robert S.; Wienen, Wanda J. – Journal of Chemical Education, 1989
Treats the development of general stereochemical principles in historical fashion. Discusses work by Pasteur, van't Hoff, and Le Bel. Considers sugars by configuration, anomeric forms, ring forms, and conformational isomers. Presents numerous diagrams and thorough explanations. (MVL)
Descriptors: Chemical Bonding, Chemical Nomenclature, Chemistry, College Science
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Li, Thomas; Worrell, Jay H. – Journal of Chemical Education, 1989
Presents an exercise to get students more intimately involved in the three dimensional nature of basic units by constructing models. Uses balsa wood, glue, sandpaper, and a square. Studies seven crystals: cubic, hexagonal, monoclinic, orthorhombic, rhombohedral, tetragonal, and triclinic. Plans are available for a Macintosh computer. (MVL)
Descriptors: Chemical Bonding, Chemical Nomenclature, Chemistry, College Science
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Centeno, Nuria B.; Villa-Freixa, Jordi; Oliva, Baldomero – Biochemistry and Molecular Biology Education, 2003
Understanding the basic principles of structural biology is becoming a major subject of study in most undergraduate level programs in biology. In the genomic and proteomic age, it is becoming indispensable for biology students to master concepts related to the sequence and structure of proteins in order to develop skills that may be useful in a…
Descriptors: Biology, College Science, Science Instruction, Information Technology
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Barak, Phillip; Nater, Edward A. – Journal of Natural Resources and Life Sciences Education, 2005
The Virtual Museum of Minerals and Molecules (VMMM) is a web-based resource presenting interactive, 3-D, research-grade molecular models of more than 150 minerals and molecules of interest to chemical, earth, plant, and environmental sciences. User interactivity with the 3-D display allows models to be rotated, zoomed, and specific regions of…
Descriptors: Visualization, Museums, Internet, Models
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Schultz, Ethel L. – Journal of Chemical Education, 1986
Discusses the use of the Tangent Sphere Model (TSM) in introducing chemical structure to beginning chemistry students at both the secondary school and college levels. Describes various applications of the use of such models, including instruction of the atom's kernel and valence electrons. (TW)
Descriptors: Chemical Reactions, Chemistry, College Science, Experiential Learning
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Journal of Chemical Education, 1988
Reviews two computer programs: "Molecular Graphics," which allows molecule manipulation in three-dimensional space (requiring IBM PC with 512K, EGA monitor, and math coprocessor); and "Periodic Law," a database which contains up to 20 items of information on each of the first 103 elements (Apple II or IBM PC). (MVL)
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computer Graphics
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Kinderman, Jesusa Valdez – Physics Teacher, 1992
Describes a computer simulation of the Compton effect designed to lead students to discover (1) the relationship of the electron's final kinetic energy to its angle of scattering and (2) the relationship between the scattering angles of the outgoing electron and photon. (MDH)
Descriptors: Computer Assisted Instruction, Computer Simulation, Discovery Learning, Energy
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Hall, Megan – Science Teacher, 2005
While teaching science in an alternative arts high school, the author continuously addresses the challenge of welcoming creative, right-brained students into the world of systematic inquiry. Busily mixing paint colors, choreographing futuristic dances, performing comedic theater, and practicing the banjo, the students rarely initiate authentic…
Descriptors: Interdisciplinary Approach, Teaching Methods, Science Projects, Evolution
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Davis, Larry P.; And Others – Journal of Chemical Education, 1987
Describes a personalized method of instruction being used in junior-level physical chemistry classes which uses computer-aided instruction (CAI) and computer-managed instruction (CMI). Claims this results in more instructor-student interaction, better use of classroom time, and better scores on standardized examinations. (TW)
Descriptors: Academic Achievement, Chemistry, College Science, Computer Assisted Instruction
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Moore, John W., Ed. – Journal of Chemical Education, 1986
Presents six brief articles dealing with the use of computers in teaching various topics in chemistry. Describes hardware and software applications which relate to protein graphics, computer simulated metabolism, interfaces between microcomputers and measurement devices, courseware available for spectrophotometers, and the calculation of elemental…
Descriptors: Chemistry, College Science, Computer Assisted Instruction, Computer Graphics
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Journal of Chemical Education, 1989
Reviews two chemistry software packages: (1) "Organic Reaction Chemistry" (organic chemistry, college level, Apple II); and (2) "Chemical Reactions, Reactions in Aqueous Solution, and Oxidation Reduction Reactions" (general chemistry, college level, IBM). (MVL)
Descriptors: Chemical Analysis, Chemical Nomenclature, Chemical Reactions, Chemistry
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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
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Bednarski, April E.; Elgin, Sarah C. R.; Pakrasi, Himadri B. – Cell Biology Education, 2005
This inquiry-based lab is designed around genetic diseases with a focus on protein structure and function. To allow students to work on their own investigatory projects, 10 projects on 10 different proteins were developed. Students are grouped in sections of 20 and work in pairs on each of the projects. To begin their investigation, students are…
Descriptors: Inquiry, Science Laboratories, Molecular Structure, Cooperative Learning
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Ferk, Vesna; Vrtacnik, Margareta; Blejec, Andrej; Gril, Alenka – International Journal of Science Education, 2003
The purpose of the investigation was to determine the meanings attached by students to the different kinds of molecular structure representations used in chemistry teaching. The students (n = 124) were from primary (aged 13-14 years) and secondary (aged 17-18 years) schools and a university (aged 21-25 years). A computerised "Chemical…
Descriptors: Age Differences, Molecular Structure, Chemistry, Science Instruction
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Barak, Miri; Dori, Yehudit Judy – Science Education, 2005
Project-based learning (PBL), which is increasingly supported by information technologies (IT), contributes to fostering student-directed scientific inquiry of problems in a real-world setting. This study investigated the integration of PBL in an IT environment into three undergraduate chemistry courses, each including both experimental and…
Descriptors: Undergraduate Students, Control Groups, Experimental Groups, Information Technology
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