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Peer reviewedJohnson, Mike – Hoosier Science Teacher, 1998
Presents an exercise in which an eighth-grade science teacher decorated the classroom with a periodic table of students. Student photographs were arranged according to similarities into vertical columns. Students were each assigned an atomic number according to their placement in the table. The table is then used to teach students about…
Descriptors: Charts, Chemistry, Classification, Cluster Analysis
Peer reviewedRichman, Robert M.; Villaescusa, Warren – Journal of Chemical Education, 1998
Outlines the development of a kinetic study using the enzyme Lactaid to hydrolyze the synthetic substrate of lactose into an undergraduate laboratory experiment. Provides students with experience doing order-of-magnitude estimates. (DDR)
Descriptors: Chemical Reactions, Chemistry, Concept Formation, Enzymes
Peer reviewedBlanco, Rafael; Niaz, Mansoor – Science and Education, 1998
Reconstructs students' and teachers' understanding of the structure of the atom based on a framework characterized by considering the history of science as competing research programs and by believing that some great scientific research programs progress on inconsistent foundations. Contains 107 references. (DDR)
Descriptors: Atomic Structure, Atomic Theory, Chemistry, Concept Formation
Peer reviewedTsai, Chin-Chung – International Journal of Science Education, 1998
Explores the interrelationships between students' general science achievement, scientific epistemological beliefs, and cognitive structure outcomes derived from instruction of basic atomic theory. Contains 19 references. (DDR)
Descriptors: Academic Achievement, Atomic Theory, Chemistry, Cognitive Processes
Peer reviewedAhtee, Maija; Varjola, Irma – International Journal of Science Education, 1998
Presents results from a study of the conceptions of chemical reactions held by middle school students, high school students, and general chemistry students at the university level. Results suggest that very few students understand what a chemical reaction is. Contains 19 references. (DDR)
Descriptors: Chemical Reactions, Chemistry, Cognitive Processes, Concept Formation
Peer reviewedRytting, J. Howard; Schowen, Richard L. – Journal of Chemical Education, 1998
Describes the development of a semester-long course that addresses issues of scientific integrity in a practical way as they arise in the daily lives of working scientists. Shares the topical organization of the course and other details. (DDR)
Descriptors: Chemistry, Course Content, Curriculum Development, Ethics
Peer reviewedHolmes, L. H., Jr. – Journal of Chemical Education, 1998
Explains how population growth can be used to illustrate the concepts of chemical kinetics. Provides an illustration of how one can use concepts and mathematics to take information that is known and obtain a result that is not initially obvious. (DDR)
Descriptors: Chemical Reactions, Chemistry, Environmental Education, Higher Education
Peer reviewedBurdge, Julia R.; Daubenmire, Sandy W. – Journal of College Science Teaching, 2001
Examines student success in a freshman chemistry course that involves students who are at risk of failure. (Contains 14 references.) (YDS)
Descriptors: Chemistry, Computer Uses in Education, Failure, High Risk Students
Peer reviewedCessna, Stephen; Cessna, Gretchen – Science Teacher, 2001
Presents a multidisciplinary activity for reviewing general chemistry concepts in which students make their own tie-dye cloth. Explores the traditional cultures and customs of Nigeria. (ASK)
Descriptors: Chemical Reactions, Chemistry, Cultural Influences, Elementary Secondary Education
Peer reviewedDaniel, Trent – Science Teacher, 2001
Introduces an interdisciplinary project called Learning Chemistry through Science Literature and Technology that involves the collaboration of a high school and an elementary school in Florida. Groups of elementary and high schools students produced science storybooks by using technology to record on CDs. (YDS)
Descriptors: Chemistry, Computers, Cooperation, Educational Technology
Peer reviewedMessmore, Ann B. – Science Communication, 1996
Describes the results of the American Chemical Society Public Outreach Office's research program to measure the impact of the Kids & Chemistry program on both the children and the volunteer scientists. Highlights include objectives of the program, pretest research, focus group results, field tests, and pre- and posttest survey results.…
Descriptors: Chemistry, Educational Objectives, Field Tests, Focus Groups
Peer reviewedHolmes, Colette O.; Warden, Joseph T. – Journal of Chemical Education, 1996
Describes the CIStudio (Chemical Information Studio), a one-credit undergraduate chemistry course at Rensselaer Polytechnic Institute. Focuses on the integration of electronic and print sources of chemical information, especially Internet-accessible reference and database services. Discusses administrative, instructor, and student issues involved.…
Descriptors: Chemistry, Computer Uses in Education, Cooperative Learning, Higher Education
Peer reviewedSterling, Donna – Science Scope, 1996
Presents an activity that introduces the historical developments in science that led to the discovery of the periodic table and lets students experience scientific discovery firsthand. Enables students to learn about patterns among the elements and experience how scientists analyze data to discover patterns and build models. (JRH)
Descriptors: Chemistry, Classification, Data Analysis, Discovery Processes
Peer reviewedMorgan, Kelly – Science Teacher, 2000
Presents a science experiment in which students test the buffering capacity of household products such as shampoo, hand lotion, fizzies candy, and cola. Lists the standards addressed in this experiment and gives an example of a student lab write-up. (YDS)
Descriptors: Acids, Active Learning, Chemical Reactions, Chemistry
Peer reviewedFurio, C.; Calatayud, M. L.; Barcenas, S. L.; Padilla, O. M. – Science Education, 2000
Focuses on learning difficulties in procedural knowledge, and assesses the procedural difficulties of grade 12 and first- and third-year university students based on common sense reasoning in two areas of chemistry--chemical equilibrium and geometry, and polarity of molecules. (Contains 55 references.) (Author/YDS)
Descriptors: Chemical Equilibrium, Chemistry, Constructivism (Learning), Epistemology


