Practical Guide and Spectral Atlas for Interpretive by Jerry Workman Jr., Lois Weyer

By Jerry Workman Jr., Lois Weyer

Interpretive spectroscopy presents a foundation for the institution of cause-and-effect relationships among NIR spectrometer reaction and the chemical houses of the samples. with out tested cause-effect relationships, the measured facts has no actual predictive value. This interpretive strategy is vital for attaining an analytical figuring out of the size.

In the multiplied moment variation of Practical consultant and Spectral Atlas for Interpretive Near-Infrared Spectroscopy, the authors contain new examine, editorials, supplementations, and molecular structural formulation, besides up-to-date references and data on NIR spectra. The completely up to date and revised moment version deals a whole library of colour spectra in a bigger structure to make sure readability and reader comprehension.

Providing a wealthy set of reference details required to interpret NIR spectra for study and business purposes, this book:

  • Offers greater than three hundred figures representing all of the significant practical teams and their NIR frequency ranges
  • Contains over one hundred twenty pages of tables and charts illustrating overlapping spectra
  • Covers NIR spectra for natural compounds, together with alkanes, carboxylic acids, amines, dienes, alkynes, heterocyclic compounds, amino acids, and aldehydes
  • Provides complete appendices with spectra-structure correlations, instance spectra, and different priceless information for examining NIR spectra

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Additional resources for Practical Guide and Spectral Atlas for Interpretive Near-Infrared Spectroscopy, Second Edition

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Soc. London 1881, 172, 887–918. 2. Ellis, J. W. The near infra-red absorption spectra of some organic liquids. Phys. Rev. 1924, 23(1), 48–62. 3. , Pinto, A. Near-infrared spectroscopy of hydrocarbon functional groups. Spectrochimica Acta 1972, 28A, 585­–597. 4. , Rohleder, J. W. The near infra-red quantitative spectroscopy of CH3 –groups in methyl derivatives of benzene. Ann. Soc. Chim. Polonorum. 1967, 41, 975–983. 5. , Berthold, P. H. Application of NIR spectrometry for the structural group analysis of hydrocarbon mixtures.

Application of NIR spectrometry for the structural group analysis of hydrocarbon mixtures. Jena Rev. 1975, 20(5), 248–251. 6. Rose, F. W. Quantitative analysis, with respect to the component structural groups of the infrared (1 to 2 µ) molal absorptive indices of 55 hydrocarbons. J. Res. Nat. Bur. Stand. 1938, 20, 129–157. 7. , Hibbard, R. , Powell, A. S. Determination of carbon-hydrogen groups in high molecular weight hydrocarbons by near-infrared absorption. Anal. Chem. 1951, 23, 1604–1610. 8.

1954, 6, 257–287. 18. Gassman, P. , Zalar, F. V. Near-infrared studies. The dependence of the cylcopropyl C-H stretching frequency on inductive effects. J. Org. Chem. 1966, 31, 166–171. 19. Gassman, P. G. Near infrared studies: The cyclopropyl group. Chem. , April 21, 1962, 740–741. 20. Olinger, J. , Near and mid infrared spectrometry for the qualitative and quantitative analysis of complex materials. PhD dissertation, University of California, Riverside, 1989. 21. Bonanno, A. , Griffiths, P. R.

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