1. Hollas, J. M., Modern Spectroscopy, 1-482, Wiley, New York, 2004. Google Scholar
2. Ferraro, J. R., Introductory Raman Spectroscopy, 1-434, Academic Press, Waltham, 2002. Google Scholar
3. Adar, F., "Entering Raman's realm," Spectroscopy, http://www.spectroscopyonline.com/entering-ramans-realm, 2011. Google Scholar
4. Pitner, T. P., J. D. Glickson, J. Dadok, and G. R. Marshall, "Solvent exposure of specific nuclei of angiotensin. II. Determined by NMR solvent saturation method," Nature, Vol. 250, 582-584, 1974.
doi:10.1038/250582a0 Google Scholar
5. Dadok, J. and R. F. Spencer, "Correlation NNW spectroscopy," Journal of Magnetic Resonance, Vol. 13, No. 2, 243-248, 1974.
doi:10.1016/0022-2364(74)90013-4 Google Scholar
6. Dadok, J., High-field NMR Instrumentation, 1-55, Willey Online, New York, 2007. Google Scholar
7. Steinbauer, M., B. Král, I. Fiala, M. Staněk, M. Procházka, P. Fiala, J. Segiň'ak, and P. Drexler, "Detection of selected chemical substances by means of nuclear quadrupole resonance," PIERS Proceedings, 1036-1040, Guangzhou, 2014. Google Scholar
8. Gujar, S. K., S. Maheshwari, I. Björkman-Burtscher, and P. C. Sundgren, "Magnetic resonance spectroscopy," Journal of Neuro-Ophthalmology, Vol. 25, No. 3, 217-226, 2005.
doi:10.1097/01.wno.0000177307.21081.81 Google Scholar
9. Kufner, A. and J. Kadlec, Fourier Series, 1-207, Academia, Praha, 1969. Google Scholar
10. Uhlı́ř, J. and P. Sovka, Digital Signal Processing, 1-100, ČVUT, Praha, 1995. Google Scholar
11. Misiti, M., Y. Misiti, G. Oppenheim, and J. M. Poggi, Wavelet Toolbox, Users Guide, The Mathworks Inc., 2006. Google Scholar
12. Addison, P. S., The Illustrated Wavelet Transform Handbook, 1-368, CRC Press, Bosto, 2002. Google Scholar
13. Ferus, M., "High resolution FT spectroscopy," Laboratory of FT and Laser Spectroscopy, http://www.jh-inst.cas.cz/~ftirlab/bruker, 2013. Google Scholar
14. Měcháček, R., "Spectral impulse signal analysis," 1-110, Bachelor Work, Brno University of Technology, 2008. Google Scholar
15. Mallat, S., A Wavelet Tour of Signal Processing, 1-637, Acadmic Press, New York, 1999. Google Scholar
16. Šikula, J., B. Koktavý, P. Vašina, Z. Chobola, and V. Juránková, "Noise reliability indicators," Proc. European Symposium on Reliability of Electron Devices, 341-346, 1993. Google Scholar
17. Bertoni, H. L., L. H. Cheo, and T. Tamir, "Frequency-selective reflection and transmission by a periodic dielectric layer," IEEE Transactions on Antennas and Propagation, Vol. 37, No. 1, 78-83, 1989.
doi:10.1109/8.192167 Google Scholar
18. Casse, B. D. F., O. Wilhelmi, and B. T. Saw, "Singapore synchrotron light source," National University of Singapore Research Link, 2005. Google Scholar
19. Stanley, C. and S. A. Douglas, Principles of Instrumental Analysis, 1-1039, Thomson Brooks/Cole, Sydney, 2007. Google Scholar
20. Herrmann, R. and C. Onkelinx, "Quantities and units in clinical chemistry: Nebulizer and flame properties in flame emission and absorption spectrometry," Pure and Applied Chemistry, Vol. 58, No. 12, 1737-1742, 1986.
doi:10.1351/pac198658121737 Google Scholar