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Mott, Jenna R.; Munson, Paul J.; Kreuter, Rodney A.; Chohan, Balwant S.; Sykes, Danny G. – Journal of Chemical Education, 2014
The teaching of instrumental analysis for many small colleges and high schools continues to be stymied by high-cost, complicated maintenance, high power requirements, and often the sheer bulk of the instrumentation. Such issues have led us to develop inexpensive instruments as part of a SMILE initiative (small, mobile instruments for laboratory…
Descriptors: Measurement Equipment, Chemistry, Electronics, Instrumentation
Scherer, George A. – J Chem Educ, 1969
Descriptors: College Science, Electronics, Equipment Manufacturers, Instrumentation
Ewing, Galen W. – J Chem Educ, 1970
Descriptors: Chemistry, College Science, Electronics, Instrumentation
Palmer, S. B.; Forster, G. A. – Amer J Phys, 1970
Describes and apparatus designed to generate and detect pulsed ultrasonics in solids and liquids over the frequency range 1-20 MHz. Experiments are suggested for velocity of sound, elastic constant and ultrasonic attenuation measurements on various materials over a wide temperature range. The equipment should be useful for demonstration purposes.…
Descriptors: College Science, Electronics, Equipment Utilization, Instrumentation
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Keedy, Curtis R.; Abele, John C. – Journal of Chemical Education, 1985
Describes a two-term course in electronic instrumentation for chemistry and physics students. The first term focuses on analog circuits and the measurement of voltage, current, and impendance. The second-term course focuses on digital pulses/logic, microcomputer organization, and assembly language programing and interfacing to experiments. (JN)
Descriptors: Chemistry, College Science, Computer Oriented Programs, Course Descriptions
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Mazza, R. J.; Washbourn, D. H. – Journal of Chemical Education, 1982
Describes a semi-automatic viscometer which incorporates a microprocessor system and uses optoelectronics to detect flow of liquid through the capillary, flow time being displayed on a timer with accuracy of 0.01 second. The system could be made fully automatic with an additional microprocessor circuit and inclusion of a pump. (Author/JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Electronics
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Dart, S. Leonard – American Journal of Physics, 1975
Describes techniques and equipment intended to both improve laboratory measurements and also form a background for more advanced work by introducing the concepts of electronic and digital circuits. (GS)
Descriptors: College Science, Electronic Equipment, Electronics, Higher Education
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Lafferty, James M. – Physics Today, 1981
Reviews the history of vacuum technology. Includes vacuum pump developments (mechanical, ion, and cyrogenic pumps), measurement techniques, the development of the American Vacuum Society, and electronics in vacuum technology. (JN)
Descriptors: College Science, Electronics, Higher Education, Instrumentation
Syracuse Univ., NY. Dept. of Electrical Engineering. – 1966
Developed as part of a series of materials in the electrical engineering sequence developed under contract with the United States Office of Education, this laboratory manual provides nine laboratory projects suitable for a second course in electrical engineering. Dealing with resonant circuits, electrostatic fields, magnetic devices, and…
Descriptors: College Science, Electricity, Electronics, Engineering Education
Nachtigal, Chester L.; And Others – 1975
A program designed to increase studnet interest and provide motivation in a third-year systems and measurements laboratory in mechanical engineering is provided. The philosophy of the course, instructional techniques, equipment design (including schematics and photographs), suggested activities, and student reactions to the course are presented.…
Descriptors: College Science, Course Descriptions, Curriculum Development, Electronics
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White, H. W.; Graves, R. J. – American Journal of Physics, 1982
An advanced undergraduate laboratory experiment in inelastic electron tunneling spectroscopy is described. Tunnel junctions were fabricated, the tunneling spectra of several molecules absorbed on the surface of aluminum oxide measured, and mode assignments made for several of the prominent peaks in spectra using results obtained from optical…
Descriptors: College Science, Electric Circuits, Electronics, Higher Education
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Kissner, Fritz – American Journal of Physics, 1981
Describes a low-cost instrument using a solar cell as a sensor to measure both instantaneous and integrated value of solar flux. Constructing and calibrating such an instrument constitutes an undergraduate experimental project, affording students an opportunity to examine a variety of aspects associated with solar energy measurements. (Author/SK)
Descriptors: College Science, Electronics, Higher Education, Instrumentation
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Biscegli, Clovis; And Others – American Journal of Physics, 1982
A description is given of an inexpensive nuclear magnetic resonance (NMR) spectrometer suitable for use in advanced laboratory courses. Applications to the nondestructive analysis of the oil content in corn seeds and in monitoring the crystallization of polymers are presented. (SK)
Descriptors: College Science, Electric Circuits, Electronic Equipment, Electronics
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Weber, Stephen G.; Long, John T. – Analytical Chemistry, 1988
Discusses three aspects of electrochemical detectors: (1) signal and noise generation and signal-to-noise ratio, (2) improvement of qualitative information content, and (3) control of selectivity of the detector. Explains electronic principles of detectors and detection limits. Lists current applications and research. (ML)
Descriptors: Chemical Analysis, Chemistry, College Science, Electronic Control
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Caldwell, Karin D. – Analytical Chemistry, 1988
Describes a technique for separating samples that range over 15 orders of magnitude in molecular weight. Discusses theory, apparatus, and sample preparation techniques. Lists several types of field-flow fractionation (FFF) and their uses: sedimentation FFF, thermal FFF, flow FFF, electrical FFF, and steric FFF. (ML)
Descriptors: Chemical Analysis, Chemistry, College Science, Electronic Control
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