Chemical Instrumentation: A Systematic ApproachWiley, 22 feb 1989 - 1248 pagine The Third Edition of this established work on chemical instrumentation has been completely rewritten and updated to account for the advances made since the Second Edition came out in 1973. More main methods of measurement are presented, and there is extended coverage of chromatography and electrochemistry. Most of the material is new--including coverage of microprocessors and microcomputers, statistical control of measurement quality, quantification and extraction of information, x-ray fluorescence spectrometry, surface spectrometric techniques, and chromatography and HPLC. The quality and range of the worked examples have been improved, and there are end-of-chapter exercises. |
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Pagina 347
... limits . A classic example in which the limits are justo is shown in Fig . 10.3 . An important virtue of working with a distri- bution is that calculated probabilities can also serve as measures of confidence and the limits involved as ...
... limits . A classic example in which the limits are justo is shown in Fig . 10.3 . An important virtue of working with a distri- bution is that calculated probabilities can also serve as measures of confidence and the limits involved as ...
Pagina 348
... Limits " Limits -σ to + o -20 to + 20 -30 to + 30 P 0.682 0.954 0.997 " For very large populations . der selected conditions so that such a table does yeoman service . A very abbre- viated set of values is listed in Table 10.1 . For ...
... Limits " Limits -σ to + o -20 to + 20 -30 to + 30 P 0.682 0.954 0.997 " For very large populations . der selected conditions so that such a table does yeoman service . A very abbre- viated set of values is listed in Table 10.1 . For ...
Pagina 391
... limits . In most cases confidence limits for the signal S differ from those that will apply to the concentration of analyte . The narrowest confidence limits for both are at the mean concentration of each standard solution used to ...
... limits . In most cases confidence limits for the signal S differ from those that will apply to the concentration of analyte . The narrowest confidence limits for both are at the mean concentration of each standard solution used to ...
Sommario
Measurement and Instrumentation | 1 |
Operational Amplifier Circuits | 4 |
BASIC ELECTRONICS | 21 |
Copyright | |
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Chemical Instrumentation: A Systematic Approach Howard A. Strobel,William R. Heineman Visualizzazione estratti - 1989 |
Parole e frasi comuni
absorbance absorption amplifier amplitude analyte analytical signal angle atomic band beam Beer's law bits capacitor cell Chem circuit components concentration constant curve detector device diagram differential diffraction diffraction grating diode dispersion electrical electronic elements emission energy ensure equation error example excited exit slit feedback filter flame flip-flop fluorescence frequency gate grating incident input instrument integrated integrated circuit intensity interference lamp laser limit measurements method microprocessor mirror mode modules molecules monochromator noise Ohm's law op-amp operation operational amplifier optical output voltage p-n junction peak photodiode photomultiplier photon polarized precision prism pulse R₁ R₂ radiation Raman range reflection refractive index region resistance resistor resolution result sample scanning Section shown in Fig signal slit width spectral spectrometer spectrophotometer spectrum standard stray light temperature transistor transition tube V₁ variable vibrational wave wavelength wavenumber zener diode