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Meuzelaar, Henk L. C.; And Others – Science, 1984
Illustrates the state of the art in pyrolysis mass spectrometry techniques through applications in: (1) structural determination and quality control of synthetic polymers; (2) quantitative analysis of polymer mixtures; (3) classification and structural characterization of fossil organic matter; and (4) nonsupervised numerical extraction of…
Descriptors: Biology, Chemical Analysis, Chemistry, College Science
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Dessy, Raymond E., Ed. – Analytical Chemistry, 1984
Discusses working implementations of artificial intelligence systems for chemical laboratory applications. They include expert systems for liquid chromatography, spectral analysis, instrument control of a totally computerized triple-quadrupole mass spectrometer, and the determination of the mineral constituents of a rock sample given the powder…
Descriptors: Artificial Intelligence, Chemical Analysis, Chemistry, College Science
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Nicklin, R. C. – Journal of College Science Teaching, 1985
Microcomputers can record laboratory measurements which human laboratory partners can never collect. Simple, harder, and general-purpose interfaces are discussed, with suggestions for several experiments involving an exercise bike, acceleration, and pendulums. Additional applications with pH meters, spectrophotometers, and chromatographs are also…
Descriptors: College Science, Computer Oriented Programs, Higher Education, Laboratory Procedures
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Jorgenson, James W. – Science, 1984
Discusses recent developments in the instrumentation and practice of analytical scale operations. Emphasizes detection devices and procedures in gas chromatography, liquid chromatography, electrophoresis, supercritical fluid chromatography, and field-flow fractionation. (JN)
Descriptors: Biology, Chemical Analysis, Chemistry, Chromatography
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Hirschfeld, T.; And Others – Science, 1984
Discusses: (1) rationale for chemical sensors in process analysis; (2) existing types of process chemical sensors; (3) sensor limitations, considering lessons of chemometrics; (4) trends in process control sensors; and (5) future prospects. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Computer Oriented Programs
Beatty, Jim – Computers in Chemical Education Newsletter, 1985
Suggests purchasing a digital multimer (DMM) with an IEEE-488 option to interface an instrument to a microcomputer, indicating that a DMM is well protected from overloads and is easy to connect. An example of its use in an experiment involving hydrolysis of tertiary butyl alcohol (with program listing) is given. (JN)
Descriptors: Chemistry, College Science, Computer Oriented Programs, Computer Software
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Dessy, Raymond E., Ed. – Analytical Chemistry, 1985
Discusses new solid-state transducers, arrays of nonspecific detectors, hardware and firmware computational elements, and other devices that are transforming modern analytical chemistry. Examples in which microelectroic sensors are used to solve 14 problems are included. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Computer Oriented Programs
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Hinds, Daniel; And Others – Journal of Chemical Education, 1978
Describes a computer model kinetic theory experiment for the college physical chemistry laboratory. (HM)
Descriptors: Chemistry, College Science, Computer Oriented Programs, Computer Programs
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Julien, L. M. – Journal of Chemical Education, 1984
Describes a physical chemistry experiment which incorporates the use of a microcomputer to enhance understanding of combined kinetic and equilibrium phenomena, to increase experimental capabilities when working with large numbers of students and limited equipment, and for the student to develop a better understanding of experimental design. (JN)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, College Science
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Barnard, Sister Marquita – Journal of College Science Teaching, 1984
Describes a two-semester course designed to meet the needs of future elementary teachers, home economists, and occupational therapists. Laboratory work includes homemade calorimeters, inclined planes, and computing. Content areas of the course include measurement, physics, chemistry, astronomy, biology, geology, and meteorology. (JN)
Descriptors: College Science, Computer Oriented Programs, Course Descriptions, Higher Education
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School Science Review, 1983
Discusses the Rugby clock as a source of project material, use of ZX81 for experimental science, computer dice analog, oil recovery from reservoirs, and computer simulation of Thompson's experiment for determining e/m for an electron. Activities/procedures are provided when applicable. Also presents questions (and answers) related to time-coded…
Descriptors: College Science, Computer Oriented Programs, Computer Programs, High Schools
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Semeister, Joseph J., Jr.; Dowden, Edward – Science Teacher, 1989
To avoid a tedious task for recording temperature, a computer was used for calculating the heat of crystallization for the compound sodium thiosulfate. Described are the computer-interfacing procedures. Provides pictures of laboratory equipment and typical graphs from experiments. (YP)
Descriptors: Chemical Bonding, Chemistry, Computer Oriented Programs, Crystallography
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Lillie, Thomas S.; Yeager, Kirk – Journal of Chemical Education, 1989
Describes a laboratory experiment using AMPAC (a computer program) in conjunction with infrared spectroscopy. The experimental procedure and a list of questions for discussion are provided. Typical data are presented. (YP)
Descriptors: Chemical Analysis, Chemistry, College Science, Computer Assisted Instruction
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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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School Science Review, 1981
Outlines a variety of laboratory procedures, demonstrations, and classroom materials including a technique for estimating speed of electromagnetic waves; a support for multipin components when soldering; use of dynometer to measure force; bending light; using a microcomputer to measure and produce voltage; force-distance curves; and two games. (DS)
Descriptors: College Science, Computer Oriented Programs, Computer Programs, Educational Games
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