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 982
... solution is measured by their mobilities ( μ ) , which in aqueous solution are 3.625 × 10-3 cm2 s - 1 V - 1 and μCI- μH + 7.912 x 104 cm2 s - 1 V - 1 . The movement of protons in solution is more than four times faster than the movement ...
... solution is measured by their mobilities ( μ ) , which in aqueous solution are 3.625 × 10-3 cm2 s - 1 V - 1 and μCI- μH + 7.912 x 104 cm2 s - 1 V - 1 . The movement of protons in solution is more than four times faster than the movement ...
Pagina 1062
... solution viscosity . O , R. Let us now consider the case in which E is moved 28 mV negative of E According to Fig . 29.2 , the ratio of CR / C must now be 3/1 for the Nernst equation to be satisfied . Consequently , some O must be ...
... solution viscosity . O , R. Let us now consider the case in which E is moved 28 mV negative of E According to Fig . 29.2 , the ratio of CR / C must now be 3/1 for the Nernst equation to be satisfied . Consequently , some O must be ...
Pagina 1112
... SOLUTION TECHNIQUES William R. Heineman 30.1 INTRODUCTION Stationary solution voltammetric techniques are implemented in quiescent solution so that diffusion is the only means of mass transport of electroactive species to the electrode ...
... SOLUTION TECHNIQUES William R. Heineman 30.1 INTRODUCTION Stationary solution voltammetric techniques are implemented in quiescent solution so that diffusion is the only means of mass transport of electroactive species to the electrode ...
Sommario
Measurement and Instrumentation | 1 |
BASIC ELECTRONICS | 21 |
Analog Electrical and Electronic Modules | 57 |
Copyright | |
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Chemical Instrumentation: A Systematic Approach Howard A. Strobel,William R. Heineman Visualizzazione estratti - 1989 |
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absorbance absorption amplifier amplitude analysis analyte analytical signal angle anode atoms beam Beer's law calibration capacitor cathode cell Chem chemical chromatographic circuit column components concentration constant curve detection detector determined device diode dispersion electrochemical cell electron elements elution emission energy equation error example excitation filter flame fluorescence frequency gas chromatograph grating incident input instrument intensity ionization laser light limits mass mass spectrometer measurements method mobile phase modules molar absorptivity molecular molecules monochromator noise obtained op-amp operation operational amplifier optical output particles peak photomultiplier photon plate polarized potential precision prism pulse radiation Raman range ratio rays reflection refractive index resistor resolution result sample scanning scattering Section shown in Fig signal slit solution species spectral spectrometer spectrophotometer spectroscopy spectrum standard stationary phase surface techniques temperature tube V₁ vibrational voltage wave wavelength wavenumber width X-ray