Razón española, Edizioni 21-26Fundación Balmes, 1983 |
Dall'interno del libro
Risultati 1-3 di 27
Pagina 164
... Beer's law . 6B - 2 APPLICATION OF BEER'S LAW TO MIXTURES Beer's law also applies to a solution contain- ing more than one kind of absorbing sub- stance . Provided there is no interaction among the various species , the total absorb ...
... Beer's law . 6B - 2 APPLICATION OF BEER'S LAW TO MIXTURES Beer's law also applies to a solution contain- ing more than one kind of absorbing sub- stance . Provided there is no interaction among the various species , the total absorb ...
Pagina 166
... Beer's law is ob- served only with truly monochromatic radi- ation ; this observation is yet another mani- festation of the limiting character of the law . Unfortunately , the use of radiation that is restricted to a single wavelength ...
... Beer's law is ob- served only with truly monochromatic radi- ation ; this observation is yet another mani- festation of the limiting character of the law . Unfortunately , the use of radiation that is restricted to a single wavelength ...
Pagina 167
... Beer's law with poly- chromatic light . Here , two wavelengths or radia- tion λ and λ have been assumed for which the absorber has the indicated molar absorptivities . or AM = log ( P + Pő ) - log ( P 10 - ebe + P 10 - be ) Now , when ɛ ...
... Beer's law with poly- chromatic light . Here , two wavelengths or radia- tion λ and λ have been assumed for which the absorber has the indicated molar absorptivities . or AM = log ( P + Pő ) - log ( P 10 - ebe + P 10 - be ) Now , when ɛ ...
Sommario
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Elementary Electronics | 30 |
Microcomputers and Microprocessors in Chemical Instrumentation | 80 |
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absorbance absorption acid amplifier Anal analysis analyte analytical signal anode applications atoms beam Beer's law Calculate cathode cell Chem chemical chromatography circuit column components compounds concentration constant containing coulometric curve detector determination device dispersion effect elec electrical electrode elements emission employed energy Equation example excited filter flame fluorescence frequency function hydrogen infrared input instruments ionization iron(II liquid magnetic mass mass spectrometer measurements membrane ment methods mobile phase molar absorptivities molecular molecules monochromator obtained operational amplifier optical output oxidation particles peak photomultiplier plate polarized polarography potential prism protons pulse quantitative radiation Raman range reaction reagent refractive refractive index region relative rotation sample sensitivity shown in Figure signal slit solution solvent species spectra spectrometer spectrophotometer spectroscopy spectrum standard deviation stationary phase surface temperature tion titration trode tube typical ultraviolet V₁ vibrational voltage wave wavelength X-ray