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Pantaleao, Ines; Portugal, Ana F.; Mendes, Adelio; Gabriel, Joaquim – Journal of Chemical Education, 2010
A pedagogical experiment is described to examine the physical absorption of gases, in this case carbon dioxide, in a hollow fiber membrane contactor (HFMC) where the absorption concentration profile can be followed by a color change. The HFMC is used to teach important concepts and can be used in interesting applications for students, such as…
Descriptors: Chemistry, Laboratory Experiments, Science Experiments, Scientific Concepts
Downs, Nathan; Larsen, Kim; Parisi, Alfio; Schouten, Peter; Brennan, Chris – Teaching Science, 2012
A practical exercise for developing a simple cost-effective solar ultraviolet radiation dosimeter is presented for use by middle school science students. Specifically, this exercise investigates a series of experiments utilising the historical blue print reaction, combining ammonium iron citrate and potassium hexacyanoferrate to develop an…
Descriptors: Chemistry, Foreign Countries, Science Curriculum, Investigations
Brewer, Sharon E.; Cinel, Bruno; Harrison, Michelle; Mohr, Christina L. – International Review of Research in Open and Distance Learning, 2013
In delivering chemistry courses by distance, a key challenge is to offer the learner an authentic and meaningful laboratory experience that still provides the rigour required to continue on in science. To satisfy this need, two distance general chemistry laboratory courses appropriate for Bachelor of Science (B.Sc.) students, including chemistry…
Descriptors: Distance Education, College Freshmen, Laboratory Training, Chemistry
Fagerlund, Johan; Zevenhoven, Ron; Hulden, Stig-Goran; Sodergard, Berndt – Journal of Chemical Education, 2010
To determine the carbonation degree of materials used in mineral carbonation experiments, a fast, simple, and sufficiently accurate method is required. For this purpose, a method based on the reaction between carbonates and hydrochloric acid was developed. It was noted that this method could also be used to teach undergraduate students some basic…
Descriptors: Undergraduate Students, Thermodynamics, Inorganic Chemistry, Measurement Equipment

DeRose, James V. – Journal of Chemical Education, 1980
Describes a collection of college chemistry demonstrations designed for self-paced classes. Some of these exercises stem from original ideas; others are adaptations of one or more published demonstrations. Two exercises, as examples, are also included. (HM)
Descriptors: Chemistry, College Science, College Students, Higher Education

Fuhrman, Marlene; And Others – Journal of Chemical Education, 1982
Laboratory exercises from five chemistry curricula were examined to determine organization (integration of laboratory work with other parts of a course) and tasks required of students (assessed in terms of inquiry skills and behaviors required for the laboratory work). Implications and suggestions for instruction are included. (Author/JN)
Descriptors: Chemistry, Curriculum Design, Curriculum Evaluation, Evaluation Criteria
National Science Teachers Association, Washington, DC. – 1968
THIS BIBLIOGRAPHY IS A CONTINUATION OF THE SERIES OF BIBLIOGRAPHIES OF COURSES OF STUDY AND TEXTBOOKS IN SCIENCE BEGUN IN 1959 BY THE NATIONAL SCIENCE TEACHERS ASSOCIATION (NSTA). PART 1 LISTS COURSES OF STUDY ALPHABETICALLY BY STATE UNDER THE CATEGORIES OF (1) LONG-RANGE COURSES OF STUDY, GRADES K-12, (2) JUNIOR HIGH SCHOOL, GRADES 7, 8, 9, (3)…
Descriptors: Bibliographies, Biological Sciences, Chemistry, Curriculum Development

Journal of Chemical Education, 1989
Described is a practical resource that ties the specifics of classroom chemistry content to the specifics of teaching practice. Listed are 135 lessons found on three videodisks which have 700 pages of supporting written materials. Notes that the full gamut of the traditional high school curriculum is covered. (MVL)
Descriptors: Chemical Nomenclature, Chemistry, Computer Interfaces, Computer Oriented Programs
Waddington, D. J., Ed. – 1984
This eight-chapter book is intended for use by chemistry teachers, curriculum developers, teacher educators, and other key personnel working in the field of chemical education. The chapters are: (1) "The Changing Face of Chemistry" (J. A. Campbell); (2) "Curriculum Innovation in School Chemistry" (R. B. Ingel and A. M.…
Descriptors: Chemistry, Curriculum Development, Educational Trends, Evaluation Methods