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Armaghan Shafaei; Hayley Abbiss; Sophie Coutts; Mark Bannister; Janine Bruemmer; Mary C. Boyce – Journal of Chemical Education, 2022
A student experiment that uses QuEChERS (quick, easy, cheap, effective, rugged, and safe) methodology for extraction and HPLC for quantitative determination of tocopherols from seeds and nuts is described here. Chromatographic separation is achieved by using a pentafluorophenyl stationary phase which gives enhanced separation of the tocopherols…
Descriptors: Science Instruction, Science Laboratories, Chemistry, Laboratory Procedures
Wolyniak, Michael J. – Biochemistry and Molecular Biology Education, 2013
A study of modern genetics requires students to successfully unite the principles of Mendelian genetics with the functions of DNA. Traditional means of teaching genetics are often successful in teaching Mendelian and molecular ideas but not in allowing students to see how the two subjects relate. The laboratory module presented here attempts to…
Descriptors: Science Instruction, College Science, Secondary School Science, High Schools

Abney, James R.; Scalettar, Bethe A. – Journal of Chemical Education, 1998
Describes absorption spectroscopy experiments that allow students to explore the mechanisms by which sunscreens and sunglasses provide protection from ultraviolet radiation. Exposes students to absorption phenomena in an engaging way. (DDR)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, Concept Formation

Lacey, Anthony R. – Journal of Chemical Education, 1987
Describes a classroom experiment designed to teach students the fundamentals underlying the normal coordinate analysis procedure of a polyatomic molecule. Uses a reverse procedure from traditional experiments of this type by providing the values for the force field and working backwards. (TW)
Descriptors: Atomic Structure, Chemical Bonding, Chemistry, College Science

Ward, Alan – School Science Review, 1983
Lists 25 energy activities and describes two experiments (materials needed and procedures used included) for secondary/middle school students. Like activities for younger children listed in part 1 (appearing in Vol. 65, No. 229), these activities are designed to provide concrete experiences for teaching various aspects of the energy concept. (JM)
Descriptors: Concept Formation, Concept Teaching, Elementary Education, Elementary School Science
Blyth, Kristy M.; Mullings, Lindsay R.; Philips, David N.; Pritchard, David; van Bronswijk, Wilhelm – Journal of Chemical Education, 2005
The chemical and instrumental methods used in the study of transition-metal complexes provide a complete determination of their structure, bonding, and properties. It unites concepts of analytical, inorganic, and physical chemistry in a way that students might appreciate that these areas of chemistry are not different.
Descriptors: Holistic Approach, Chemistry, Science Education, Science Instruction
Roth, Kathleen J.; Anderson, Charles W. – 1987
This document contains a set of instructional materials about photosynthesis that were used in a research study of middle school science teaching during 1985-86. The Middle School Science Project investigated ways to help middle school science teachers use teaching strategies that were identified in earlier studies as particularly effective in…
Descriptors: Botany, Concept Formation, Experiential Learning, Junior High Schools
Anderson, Charles W.; And Others – 1987
This document contains a set of instructional materials about cellular respiration that were used in a research study of middle school science teaching during 1985-86. The Middle School Science Project investigated ways to help middle school science teachers use teaching strategies that were identified in earlier studies as particularly effective…
Descriptors: Biology, Concept Formation, Cytology, Experiential Learning
Reay, Judith, Ed. – 1982
Provided is an annotated bibliography of items of particular interest to science education. Items are arranged alphabetically by author (or in some cases by title) within each of the following sections: (1) techniques in the lab and field; (2) nature and evolution of science; (3) teaching strategies; (4) curriculum and examinations; (5) young…
Descriptors: Cognitive Development, Concept Formation, Curriculum Development, Educational Games