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Near infrared reflectance

Dale, J.M., Klatt, L.N., "Principal Component Analysis of diffuse Near-Infrared Reflectance Data From Paper Currency", / /)/. Spec. 1989 (43) 1399-1405. [Pg.193]

Mark, H., "Normalized distances for Qualitative Near-Infrared Reflectance Analysis", Anal. Chem. 1986 (58) 379-384. [Pg.195]

Tkachuk, R. et ah. Determination of chlorophyll in ground rapeseed using a modified near infrared reflectance spectrophotometer, J. Am. Oil Chm. Soc., 65, 381, 1988. [Pg.446]

M.A. Dempster, B.F. MacDonald, P.J. Gemperline and N.R. Boyer, A near-infrared reflectance analysis method for the non invasive identification of film-coated and non-film-coated, blister-packed tablets. Anal. Chim. Acta, 310 (1995) 43-51. [Pg.241]

W.R. Hruschka, Data analysis wavelength selection methods, pp. 35-55 in P.C. Williams and K. Norris, eds. Near-infrared Reflectance Spectroscopy. Am. Cereal Assoc., St. Paul MI, 1987. P. Geladi, D. McDougall and H. Martens, Linearization and scatter-correction for near-infrared reflectance spectra of meat. Appl. Spectrosc., 39 (1985) 491-500. [Pg.380]

A method is available, utilising on-line near-infrared reflectance spectroscopy, for controlling the uniform application of poly (vinyl alcohol) size [198]. [Pg.109]

The analysis of near infrared reflectance spectra of foods. [Pg.208]

S. Zhang, B. Soller, and R. Micheels, Partial leastsquares modeling of near infrared reflectance data for noninvasive in-vivo determination of deep tissue pH. Appl. Spectroscopy 52, 400-406 (1998). [Pg.321]

Downey, G., Dublin, I. Authentication of coffee bean variety by near-infrared reflectance spectroscopy of dried extracts. J. Sci. Food Agric. 71 (1), p. 41 —49, 1996... [Pg.248]

Dowell, F.E., Throne, J.E., and Baker, J.E. 1998. Automated nondestructive detection of internal insect infestation of wheat kernels by using near-infrared reflectance spectrscopy. J. Econ. Entomol. 91, 899-904. [Pg.286]

Naes, T., Isaksson, T., Kowalski, B. R. Anal. Chem. 62, 1990, 664—673. Locally weighted regression and scatter correction for near-infrared reflectance data. [Pg.306]

Ren, G., and Chen, F. (1999). Simultaneous quantification of ginsenosides in American ginseng (Panax quinquefolium) root powder by visible/near-infrared reflectance spectroscopy. /. Agric. Food Ghent. 47, 2771-2775. [Pg.93]

R. Gimet and A.T. Luong, Quantitative determination of polymorphic forms in a formulation matrix using the near infrared reflectance analysis technique, J. Pharm. Biomed. Anal., 5, 205-211 (1987). [Pg.278]

P. Geladi, D. MacDougall and H. Martens, Linearization and scatter correction for near-infrared reflectance spectra of meat, Appl. Spectrosc., 39, 491 (1985). [Pg.435]

T. Feam, Misuse of ridge regression in the calibration of near-infrared reflectance instruments, Appl. Statistics, 32, 73-79 (1983). [Pg.436]

R. Tkachuk, F.D. Kuzina and R.D. Reichert, Analysis of protein in ground and whole field peas by near-infrared reflectance. Cereal Chemistry, 64, 418-22 (1987). [Pg.436]

E. Bouveresse, D.L. Massart and P. Dardenne, Calibration transfer across near-infrared spectroscopic instruments using Shenk s algorithm effects of different standardisation samples. Anal. Chim. Acta, 297, 405 16 (1994). B.G. Osborne and T. Feam, Collaborative evaluation of universal cahbrations for the measurement of protein and moisture in flour by near-infrared reflectance, /. Food TechnoL, 18, 453 60 (1983). [Pg.438]

E.W. Ciurczak, R.P. Tourlini and M.P. Demkowicz, Determination of particle size of pharmacentical raw materials using near infrared reflectance spectroscopy. Spectroscopy, 1, 36-39 (1986). [Pg.457]

J.L. Ilari, H. Martens and T. Isaksson, Determination of particle size in powders by scatter correction in diffuse near infrared reflectance, Appl. Spectrosc., 42, 722-728 (1988). [Pg.457]

M. Blanco, J. Coello, H. Iturriaga, S. Maspoch, C. Pezuela and E. Russo, Control analysis of a pharmaceutical preparation by near-infrared reflectance spectroscopy a comparative study of a spinning module and fibre optic probe, Anal. Chim. Acta, 298, 183-191 (1994). [Pg.486]

P.J. Gemperline and L.D. Webber, Raw materials testing using soft independent modeling of class analogy analysis of near infrared reflectance spectra, Anal. Chem., 61, 138-144 (1989). [Pg.486]

A.C. Moffat, A.D. Trafford, R.D. fee and P. Graham, Meeting of the International Conference on Harmonisation s guidelines on vahdation of analytical procednres Qnantiflcation as exemplified by a near-infrared reflectance assay of paracetamol in intact tablets. Analyst, 125, 1341-1351 (2000). [Pg.488]

Y. Ren, W. Li, Y. Guo, R. Ren, L. Zhang, D. Jin and C. Hui, Study on quality control of metronidazole powder pharmaceuticals using near infrared reflectance first-derivative spectroscopy and multivariate statistical classification technique, Jisuanji Yu Ymgyong Huaxue, 14, 105-109 (1997). [Pg.488]

Y. Woo, H. Kim and J. Cho, Identification of herbal medicines nsing pattern recognition techniques with near-infrared reflectance spectra, Microchem. J., 63, 61-70 (1999). [Pg.488]

S. Lonardi, R. Viviani, L. Mosconi, et al., Dmg analysis by near-infrared reflectance spectroscopy. Determination of the active ingredient and water content in antibiotic powders, J. Pharm. Biomed. Anal., 7, 303-308 (1989). [Pg.488]

E. Dreassi, G. Ceramelh, P. Corti, PS. Lonardi and P. Permccio, Near-infrared reflectance spectrometry in the determination of the physical state of primary materials in pharmacentical production. Analyst, 120, 1005-1008 (1995). [Pg.488]

P. Corti, E. Dreassi, G. Ceramelli, S. Lonardi, R. Viviani and S. Gravina, Near Infrared Reflectance Spectroscopy applied to pharmaceutical quality control. Identification and assay of cephalosporins, Analusis 19, 198-204 (1991). J.K. Drennen and R.A. Lodder, Pharmaceutical applications of near-infrared spectrometry, in Advances in Near Infrared Measurements, vol. 1, G. Patonay (ed.), JAI Press, Greenwich, CT, pp. 93-112, 1993. [Pg.489]

A.J. O Neil, R.D. Jee and A.C. Moffat, Measurement of the cumulative particle size distribution of microcrystalline cellulose using near infrared reflectance spectroscopy. Analyst, 124, 33-36 (1999). [Pg.490]

P.E. Luner, S. Majuru, J.J. Seyer and M.S. Kemper, Quantifying crystalline form composition in binary powder mixtures using near-infrared reflectance spectroscopy, Pharm. Dev. Tech., 5, 231-246 (2000). [Pg.491]

A.D. Patel, P.E. Luner and M.S. Kemper, Quantitative analysis of polymorphs in binary and multi-component powder mixtures by near-infrared reflectance spectroscopy, Int. J. Pharm. 206, 63-74. Erratum in Int. J. Pharm., 212, 295 (2000). [Pg.491]

M. Blanco, J. Coello, A. Eustaquio, H. Itturriaga and S. Maspoch, Development and validation of methods for the determination of miokamycin in various pharmaceutical preparations by use of near infrared reflectance spectroscopy, Analyst, 124, 1089-1092 (1999). [Pg.491]

Berardo, N. (1992) Measuring Italian ryegrass quality by near infrared reflectance spectroscopy (NIRS). In Murray, I. and Cowe, LA. (eds) Making Light Work Advances in Near Infrared Spectroscopy. VCH, Weinheim, Germany, pp. 272-276. [Pg.207]

Reeves, J.B. Ill and McCarty, G.W. (2001) Quantitative analysis of agricultural soils using near infrared reflectance spectroscopy and a fibre-optic probe. Journal of Near Infrared Spectroscopy 9, 25-34. [Pg.217]

Williams, P.C. (1991) Application of near-infrared reflectance and transmittance... [Pg.220]


See other pages where Near infrared reflectance is mentioned: [Pg.663]    [Pg.394]    [Pg.757]    [Pg.258]    [Pg.68]    [Pg.210]    [Pg.210]   
See also in sourсe #XX -- [ Pg.738 ]




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Applications of Near-Infrared Diffuse Reflection Spectrometry

Diffuse reflectance near-infrared spectra

Infrared reflective

Near infrared reflectance spectroscop

Near infrared reflectance spectroscopy

Near infrared reflection spectrum

Near-infrared diffuse reflectance spectroscopy

Near-infrared diffuse reflectance spectroscopy NIRS)

Near-infrared diffuse reflection

Near-infrared diffuse reflection spectroscopy

Near-infrared reflectance analysis

Near-infrared reflectance analysis NIRA)

Near-infrared reflectance spectroscopy NIRS)

Near-infrared spectroscopy diffuse reflectance mode

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