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Crandall, E. W.; Pennington, Maxine – Journal of Chemical Education, 1980
Describes the preparation of selected aldehydes and ketones, alcohols, amines, phenols, haloalkanes, and tertiaryamines by differential scanning calorimetry. Technique is advantageous because formation of the reaction product occurs and the melting point of the product is obtained on the same sample in a short time with no additional purification…
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Huggins, Elisha R.; Lelek, Jeffrey J. – American Journal of Physics, 1979
Describes a series of laboratory experiments and computer simulations of the motion of electrons in electric and magnetic fields. These experiments, which involve an inexpensive student-built electron gun, study the electron mean free path, magnetic focusing, and other aspects. (Author/HM)
Descriptors: College Science, Computer Oriented Programs, Electricity, Electronics
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Koury, Albert M.; Parcher, Jon F. – Journal of Chemical Education, 1979
Describes a laboratory technique for use in an undergraduate instrumental analysis course that, using the interpretation of window diagrams, prepares a mixed liquid phase column for gas-liquid chromatography. A detailed procedure is provided. (BT)
Descriptors: Chemical Analysis, Chemistry, Chromatography, College Science
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Noble, Richard D. – Chemical Engineering Education, 1979
Describes a laboratory experiment for freeze-drying fruits and vegetables which aims to expose college students to the principles of drying and simultaneous heat and mass transfer. The experimental apparatus, procedure of the experiment, and data analysis are also included. (HM)
Descriptors: Biochemistry, Biological Sciences, Chemical Industry, College Science
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Bennett, Carole A.; And Others – Journal of Chemical Education, 1989
Notes the careful observation of chemical reactivity phenomena has been and should be an important part of the general chemistry laboratory curriculum. Stresses reduction of experimental scale will help to ensure, in times of rampant chemophobia, that it remains so. Provides several examples of the methodology. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Perina, Ivo; Mihanovic, Branka – Journal of Chemical Education, 1989
Presents a halogen substitution of an alkane using a compartmentalized Petri dish or Conway dish on an overhead projector. Provides methodology and several modifications for different reactions. Uses hexane, methyl orange, bromine, and silver nitrate. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Atwater, Mary M. – Science Activities, 1988
Presents several fun activities and teacher demonstrations which simplify terms and condense science concepts for teaching about the lever, wedge, wheel and axle, screw, pulley, and the inclined plane. Includes objectives, materials, procedures, suggested follow-up assignments, and diagrams. (RT)
Descriptors: Demonstrations (Educational), Experiential Learning, Laboratory Procedures, Motivation Techniques
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Figueira, Alvaro Rocha; And Others – Journal of Chemical Education, 1988
Examines the thermal decomposition of sodium bicarbonate to sodium carbonate. Encourages students to predict the end products and to use the stoichiometric results to determine if their predictions are correct. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Kolb, Doris, Ed. – Journal of Chemical Education, 1988
Provides two demonstrations: (1) electrolyte migration of ions using colored ions which cross a strip of gelatin allowing for noticeable migration; and (2) photochemical reduction of Fe+3 by the citrate ion. Points out both reactions can be done in a Petri dish using common lab materials. (MVL)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, College Science
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Lagowski, J. J. – Journal of Chemical Education, 1989
States there is little direct evidence that the current laboratory instructional method is an important component of chemistry instruction. Provides a historical account of laboratory work. Studies individual work versus demonstrations, and computer simulations. Urges the use of computer based methods to provide a rich laboratory experience. (MVL)
Descriptors: Chemistry, College Science, Computer Simulation, Computer Uses in Education
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Craig, Norman C.; And Others – Journal of Chemical Education, 1989
Develops a compact minicell design in which the measured voltage is close to the desired emf. Notes student's observations for several cells are within 0.02V of the expected values. Presents numerous reasons for using miniware and semimicro qualitative analysis. Full experimental writeup is available from the authors. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Kumar, Lavinia; And Others – American Biology Teacher, 1989
Described is an introductory laboratory course designed to enhance basic skills required of biology majors. Discusses materials and their development, manual design, and student and instructor's roles. Outlines procedures and examples of writing, reading, and mathematics activities. (RT)
Descriptors: Biology, College Science, Experiential Learning, Interdisciplinary Approach
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Davies, Wayne A. – Chemical Engineering Education, 1989
Described is a reliable and predictable laboratory experiment which represents the result of an integrated approach to design with an emphasis on teaching. Notes the flat-celled rig has logged over 100 hours service in 2 years without any problems. (MVL)
Descriptors: Chemical Analysis, Chemical Engineering, Chemical Reactions, Chemistry
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Matsuo, Tsutomu; And Others – Journal of Chemical Education, 1989
Presented is a photoelectric colorimeter which can be assembled by the student. Reports that it can do many of the same analyses as the SPEC 20 but at a greatly reduced cost using older technology. Presents several experiments to use with the colorimeter. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Electronic Equipment
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Gold, Marvin – Journal of Chemical Education, 1988
Describes a simple laboratory procedure for changing sodium carbonate into sodium chloride by adding concentrated HCl to cause the reaction and then evaporating the water. Claims a good stoichiometric yield can be obtained in one three-hour lab period. Suggests using fume hood for the reaction. (ML)
Descriptors: Chemistry, College Science, High Schools, Higher Education
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