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Hunter, David N.; Pickering, Shawn L.; Jia, Dongdong – European Journal of Physics, 2007
An undergraduate thin-film nanotechnology laboratory was designed. Nanocapacitors were fabricated on silicon substrates by sputter deposition. A mask was designed to form the shape of the capacitor and its electrodes. Thin metal layers of Au with a 80 nm thickness were deposited and used as two infinitely large parallel plates for a capacitor.…
Descriptors: Physics, Molecular Structure, Technology, Laboratories
Huang, Tina H.; Salter, Gail; Kahn, Sarah L.; Gindt, Yvonne M. – Journal of Chemical Education, 2007
We have developed a simple, resilient experiment that illustrates the Nernst equation and Beer-Lambert law for our second-semester general chemistry students. In the experiment, the students monitor the reduction of ferricyanide ion, [Fe(CN)[subscript 6]][superscript 3-], to ferrocyanide, [Fe(CN)[subscript 6]][superscript 4-], both…
Descriptors: Chemistry, College Science, Science Instruction, Laboratory Experiments
Yang, Shui-Ping – Journal of Chemical Education, 2007
This article describes an experiment using a novel gasometric assembly to determine the thickness and number of atomic layers of zinc coating on galvanized iron substrates. Students solved this problem through three stages. In the first stage, students were encouraged to find a suitable acidic concentration through the guided-inquiry approach. In…
Descriptors: Problem Solving, Laboratories, Data Processing, Chemistry
Bard, Allen J. – Journal of Chemical Education, 2007
The drooping mercury electrode (DME) was previously used to carry out electrochemical experiments but invention of polarography technique changed this. Voltammetry with DME was given the term polarography and are used in measurement of current as a function of potential at small electrodes.
Descriptors: Chemistry, Science History, Science Equipment, Laboratory Equipment
Peer reviewedChristensen, Fritjof E. – Physics Teacher, 1974
Summarizes the results of a 1969 experiment survey made for learning the impact of special publications and the trend of experimentation in colleges. Describes some new or modified apparatus that has appared since the 1956 survey. (GS)
Descriptors: College Science, Higher Education, Laboratory Equipment, Laboratory Experiments
Freudenstein, Reinhold, Ed. – Praxis des Neusprachlichen Unterrichts, 1965
The definition, purposes, and possible uses of the language laboratory are discussed in this booklet. Consideration is given to such related topics as the production of materials, the student's task in the laboratory, the planning and supervision of the laboratory, and the problems and future of the laboratory. The second half of the booklet…
Descriptors: Instructional Materials, Laboratory Equipment, Laboratory Procedures, Language Instruction
Peer reviewedPowers, D. E.; And Others – Journal of Chemical Education, 1979
This experiment provides an excellent practical application of computer-controlled spectrometers. (BB)
Descriptors: Chemistry, Computer Assisted Instruction, Computers, Higher Education
Peer reviewedSchussheim, Joan Yares – Arithmetic Teacher, 1978
A detailed and up-to-date description of how the Harbor Hill Elementary School mathematics laboratory operates is given along with a list of materials that are available in the laboratory. (MN)
Descriptors: Educational Games, Elementary Education, Elementary School Mathematics, Experiential Learning
Peer reviewedMcDuffie, Thomas E. – Science Activities, 1977
Describes four science laboratory, consumer oriented activities including: milk, fireproofing clothing, acetic acid, and paints. (SL)
Descriptors: Consumer Education, Consumer Science, Instruction, Laboratory Procedures
Peer reviewedMillar, G. – Physics Education, 1986
Describes an experimental procedure to measure the specific heat of a gas. Discusses equipment, setup, and procedures and provides sample values obtained for air, propane, helium, carbon dioxide, and argon. (JM)
Descriptors: College Science, Heat, Higher Education, Instrumentation
Peer reviewedMiller, B. J. – American Journal of Physics, 1974
Discusses the use of a simple computer exercise to derive a general law for simple pendulum phenomena with square-law damping. Indicates that less mathematical skills are requires in the computer treatment than in the analytical treatment.
Descriptors: College Science, Computer Assisted Instruction, Instruction, Instructional Materials
Peer reviewedBoulton, L. H. – Education in Chemistry, 1973
Discusses application of Schoniger's method of quantitative organic elemental analysis in teaching of qualitative analysis of the halogens, nitrogen, sulphur, and phosphorus. Indicates that the oxygen flask method is safe and suitable for both high school and college courses because of simple apparatus requirements. (CC)
Descriptors: Chemical Analysis, Chemistry, College Science, Instructional Materials
Peer reviewedMiller, P. J. – Journal of Chemical Education, 1972
Outlines experiments in which a density gradient might be used to advantage. A density gradient consists of a column of liquid, the composition and density of which varies along its length. The procedure can be used in analysis of solutions and mixtures and in density measures of solids. (Author/TS)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
Peer reviewedAdams, Paul E. – Journal of Chemical Education, 1995
Describes a laboratory experiment for secondary school chemistry students utilizing the classic reaction between the iron(III) ion and the thiocyanate ion. The experiment also works very well in other chemistry courses as an experience in spectrophotometric analysis. (PVD)
Descriptors: Chemical Reactions, Chemistry, Demonstrations (Science), Laboratory Equipment
Lamancusa, John S. – Engineering Education, 1990
Discusses a laboratory course to familiarize mechanical engineering students in the use of electronics and computers. Describes the objectives, laboratory facilities, lecture topics, projects, and laboratory exercises for the course. (YP)
Descriptors: College Science, Computer Interfaces, Course Descriptions, Course Objectives

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