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Hunkapiller, Michael W.; And Others – Science, 1984
Describes the nature and capabilities of methods used to characterize protein and peptide structure, indicating that they have undergone changes which have improved the speed, reliability, and applicability of the process. Also indicates that high-performance liquid chromatography and gel electrophoresis have made purifying proteins and peptides a…
Descriptors: Biochemistry, Chemical Analysis, College Science, Enzymes
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Rechnitz, G. A. – Analytical Chemistry, 1982
Discusses major themes and interrelationships common to bioselective potentiometric membrane electrodes including the nature of bioselective electrodes, applications, and future prospects. Includes tables on traditional ion-selective membrane electrodes, nontraditional electrodes, and typical biocatalytic potentiometric electrodes. (Author/JN)
Descriptors: Biochemistry, Chemical Analysis, Chemistry, College Science
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Panijpan, Bhinyo – Journal of Chemical Education, 1979
Spectroscopic studies on solutions and x-ray diffraction work on crystals lead to the conclusion that the Metrogen of the pyrimidine ring is preferentially protonated. The correct monoprotonated structures of thiamine and its 4-amino-pyrimidine synthetic precursor are presented. (BT)
Descriptors: Biochemistry, Chemical Analysis, Chemical Nomenclature, Chemistry
House, James E. – Personal Computing, 1982
Discusses the role and use of microcomputers in scientific research, from monitoring instruments to controlling experimental processes. Included are descriptions of a computer-controlled protein sequencer and gene synthesizer, and microcomputer uses in medicine, physiology, biochemistry, and geology. (JN)
Descriptors: Biochemistry, Biology, College Science, Computer Oriented Programs
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Peterman, Keith E.; And Others – Journal of Chemical Education, 1989
A laboratory experiment designed as a model for studying enzyme activity with a basic spectrometer is presented. Included are background information, experimental procedures, and a discussion of probable results. Stressed is the value of the use of Nuclear Magnetic Resonance in biochemistry. (CW)
Descriptors: Biochemistry, Chemistry, College Science, Enzymes
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Skogerboe, Kristen J. – Analytical Chemistry, 1988
Highlights several analytical techniques that are being used in state-of-the-art clinical labs. Illustrates how other advances in instrumentation may contribute to clinical chemistry in the future. Topics include: biosensors, polarization spectroscopy, chemiluminescence, fluorescence, photothermal deflection, and chromatography in clinical…
Descriptors: Biochemistry, Chemical Analysis, Chemical Nomenclature, Chemical Reactions
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Wightman, R. Mark; And Others – Analytical Chemistry, 1988
Explores neurochemical events in the extra cellular space of the brain by use of in vivo voltammetric microelectrodes. Reports dopamine concentrations and pathways, and discusses techniques used for analysis. Recognizes current problems and future directions for research. (ML)
Descriptors: Biochemistry, Biomedicine, Chemistry, College Science
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Brettell, T. A.; Saferstein, R. – Analytical Chemistry, 1989
Presents a review of articles appealing to forensic practitioners. Topics include: drugs and poisons, forensic biochemistry, and trace evidence. Lists noteworthy books published on forensic science topics since 1986. (MVL)
Descriptors: Biochemistry, Chemical Analysis, Chemistry, Chromatography
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Rechnitz, Garry A. – Chemical and Engineering News, 1988
Describes theory and principles behind biosensors that incorporate biological components as part of a sensor or probe. Projects major applications in medicine and veterinary medicine, biotechnology, food and agriculture, environmental studies, and the military. Surveys current use of biosensors. (ML)
Descriptors: Biochemistry, Biological Sciences, Bionics, Biophysics
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Cotter, Robert J. – Analytical Chemistry, 1988
Discusses the history and development of Plasma Desorption Mass Spectrometry to determine molecular weights and structures of proteins and polymers. Outlines theory, instrumentation, and sample preparation commonly used. Gives several examples of resulting spectra. (ML)
Descriptors: Biochemistry, Chemical Analysis, Chemistry, College Science
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Steehler, Jack K. – Journal of Chemical Education, 1990
Described are 14 experiments that use lasers. Topic areas include physical chemistry, analytical chemistry, organic chemistry, inorganic chemistry, and biochemistry. Instrumentation and the use of the laser in undergraduate research are discussed. (CW)
Descriptors: Biochemistry, Chemistry, College Science, Computer Interfaces
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Sharp, Robert L.; And Others – Analytical Chemistry, 1988
Discusses the use of robotics in the analytical chemistry laboratory. Suggests using a modular setup to best use robots and laboratory space. Proposes a sample preparation system which can perform aliquot measurement, dilution, mixing, separation, and sample transfer. Recognizes attributes and shortcomings. (ML)
Descriptors: Automation, Biochemistry, Chemistry, College Science