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Peer reviewedTouvelle, Michele; Venugopalan, Mundiyath – Journal of Computers in Mathematics and Science Teaching, 1986
Describes a computer program, "Activation Energy," which is designed for use in physical chemistry classes and can be modified for kinetic experiments. Provides suggestions for instruction, sample program listings, and information on the availability of the program package. (ML)
Descriptors: Chemistry, College Science, Computer Simulation, Computer Software
Peer reviewedStock, John T. – School Science Review, 1984
Suggests preparing displays which include both dynamic and static items to attract observers' attention and hold their interest. Includes instructions for making exhibits related to phenomena associated with Joseph Priestley and Michael Faraday. (DH)
Descriptors: Chemistry, College Science, Electricity, Exhibits
Peer reviewedBatschelet, William H.; George, Arnold – Journal of Chemical Education, 1986
Describes procedures for two demonstrations: (1) photochemical energy conversion using ferric oxalate actinometry and (2) liquification of gases using Freon 114. Safety precautions are given for both demonstrations, as are procedures and material specifications. (JM)
Descriptors: Chemical Reactions, Chemistry, Demonstrations (Educational), Laboratory Experiments
Peer reviewedHamilton, Marlene A. – Science Education, 1985
Examination results from 1146 Jamaican high school students in single-sex and coeducational schools indicated students from coeducational schools had lower performance on all measures. A subsample provided more information on sex differences, performance in individual subjects, and students receiving grades of A or B. (DH)
Descriptors: Academic Achievement, Biology, Chemistry, Coeducation
Peer reviewedRichardson, W. S. – Journal of Chemical Education, 1986
Describes a visual transparency method to develop the concept of resonance with respect to molecular resonance hybrid structures and partial charge on the atoms of an ion. Discusses the distinction between tautomerism and resonance, and emphasizes clarification of the Lewis structure concept. (JM)
Descriptors: Atomic Structure, Audiovisual Instruction, Chemical Equilibrium, Chemistry
Peer reviewedFormicola, Allan J. – Journal of Dental Education, 1986
The inadequacy of secondary and undergraduate student preparation for dental school science instruction requires that dental schools provide remedial instruction and study skill-building opportunities for their students and be more specific about the kinds of preprofessional training required of applicants. (MSE)
Descriptors: Academic Achievement, Chemistry, College Admission, College Preparation
Peer reviewedSchool Science Review, 1985
Presents 23 experiments, demonstrations, activities, and computer programs in biology, chemistry, and physics. Topics include lead in petrol, production of organic chemicals, reduction of water, enthalpy, X-ray diffraction model, nuclear magnetic resonance spectroscopy, computer simulation for additive mixing of colors, Archimedes Principle, and…
Descriptors: Biology, Chemical Reactions, Chemistry, Computer Software
Bathory, Zoltan – Evaluation in Education: An International Review Series, 1985
As part of Hungary's Curriculum Theory Department (CTD-80) assessment, 1,543 14-year-olds were tested in the performance of science experiments in physics and chemistry. Skills included observing, measuring, hypothesizing, and drawing conclusions. Results are presented, and implications for curriculum are suggested. (GDC)
Descriptors: Academic Achievement, Chemistry, Curriculum Evaluation, Educational Assessment
Hanania, Edith A. S.; Akhtar, Karima – ESP Journal, 1985
Variability in the grammatical profile of finite verbs in English is examined in 20 Master of Science theses in biology, chemistry, and physics. The use of verbs with respect to voice, tense, aspect, and modality is examined in five rhetorical sections of the theses--introduction, review, methods, results, discussion. (SED)
Descriptors: Biology, Chemistry, Discourse Analysis, Expository Writing
Peer reviewedBigum, C. J.; Gilding, A. – Computers and Education, 1985
Describes a video monitoring technique for detailed analysis of student use of computer-based learning programs which produces a synchronized record of computer output and student use; a study concerned with developing computer-based learning programs in chemistry which utilizes the technique; and advantages and disadvantages of the technique.…
Descriptors: Chemistry, Computer Assisted Instruction, Computer Simulation, Educational Research
Peer reviewedMulder, T.; Verdonk, A. H. – Journal of Chemical Education, 1984
Reports on a project in which observations of student and teaching assistant behavior were used to redesign a teaching unit on recrystallization. Comments on the instruction manual, starting points for teaching the unit, and list of objectives with related tasks are included. (JN)
Descriptors: Chemistry, College Science, Crystallography, Curriculum Development
Peer reviewedJournal of Chemical Education, 1985
Twelve papers focusing on various aspects of teaching chemistry to the nonchemist are presented. Includes details of courses designed around specific topics and/or needs (such as art hazards), use of field trips, issues related to the problem of explaining technical ideas to lay persons, and other topic areas. (JN)
Descriptors: Art Materials, Chemistry, College Science, Course Descriptions
Peer reviewedKean, Elizabeth; Middlecamp, Catherine Hurt – Journal of Chemical Education, 1983
Identifies assumptions and points out specific design questions which can help guide the development of successful programs to assist nontraditional students. Lists five myths identified as interfering with program development. Also reviews some factors to be considered in evaluating an assistance program and provides a concluding analysis. (JM)
Descriptors: Chemistry, College Science, Higher Education, Minority Group Teachers
Peer reviewedLamb, William G. – Science Teacher, 1984
Recommends using dramatic demonstrations on the energy in chemical systems as an audiovisual adjunct to lectures and laboratory sessions. Lists materials needed and provides procedures including safety tips for various experiments to produce chemical light, heat, and electricity; and concludes with hints for preparation/rehearsal. (JM)
Descriptors: Chemistry, Demonstrations (Educational), Electricity, Energy
Peer reviewedTalesnick, Irwin, Ed. – Science Teacher, 1984
Provides innovative ideas in biology, chemistry, and physics on the following topics: enzyme decomposition; chemical waste; time measurement; acid-base color magic; ball bouncing properties; heat; cell theory; and specimen boxes. Materials and procedures are listed when appropriate along with hints for expanding these ideas and investigations. (JM)
Descriptors: Biology, Chemistry, Demonstrations (Educational), High Schools


