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Statistical Method Based on Confidence and Prediction Regions for Analysis of Volatile Organic Compounds in Human Breath Gas

Statistical Method Based on Confidence and Prediction Regions for Analysis of Volatile Organic Compounds in Human Breath Gas

In this paper we introduce two confidence and two prediction regions for statistical characterization of concentration measurements of product ions in order to discriminate various groups of persons for prospective better detection of primary lung cancer. Two MATLAB algorithms have been created for more adequate description of concentration measurements of volatile organic compounds in human breath gas for potential detection of primary lung cancer and for evaluation of the appropriate confidence and prediction regions.

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Iodine Molecules Differential Absorption Cross section Lidar Studies

Iodine Molecules Differential Absorption Cross section Lidar Studies

Lidar monitoring of the gaseous molecules in atmosphere can be used for concentration measurements of the toxic pollutants in air of the urban and industrial regions. Such a concentration study in the multi-components gaseous mixture by lidar technique is a complex problem in atmospheric pollution monitoring. The differential absorption lidar (DA-lidar) is the most preferable for the detection of iodine molecules at very low concentration levels. The iodine molecules absorption cross section in the laboratory lidar studies and lidar equation simulation in this lidar variant corresponds with earlier data.

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Experimental investigation of internal structure of open-channel flow with intense transport of sediment

of the error on the mean velocity and on the Reynolds stress due to a misoriented ADV probe in the horizontal plane: Case of experiments in a compound open-channel. Flow Measurement and Instrumentation, 34, 34–41. Pugh, F.J., Wilson, K.C. 1999. Velocity and concentration distributions in sheet flow above plane beds. Journal of Hydraulic Engineering, 125, 2, 117–125. Revil-Baudard, T., Chauchat, J., Hurther, D., Barraud, P.A., 2015. Investigation of sheet-flow processes based on novel acoustic high-resolution velocity and concentration measurements

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Natural Radionuclides in the Building Materials From the Region of The Small Carpathians

-50. PHELIPE, P. Radon. International Radon Project. World Health Organisation, 2007. 428 p. PLAŠIENKA, D., MICHALÍK, J., KOVÁČ, M., GROSS, P., PUTIŠ, M. Paleotectonic evolution of the Malé Karpaty Mts. Geologica Carpathica 42, 4, 1991, pp. 195-208. POLANSKI, A., SMULIKOWSKI, K. Geochámia. Bratislava: SPN, 1978, pp. 496-497. RAMLI, A. T., HUSSEIN, A. W. M. A., WOOD, A. K. Environmental 238 U and 232 Th concentration measurements in an area of high level natural background radiation at Palong

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Semi-Autonomous Drone for Agriculture on the Tractor Base

. 5, pp. 236–236. HORODIAN, V. P. 2004. Cultivator for processing plants or soil. Patent no. 64750 Ukraine. IPC6 A01M 7/00, A01M 9/00, B05B 17/00. Printed 15.03.2004. HRISTOV, G. V. – ZAHARIEV, P. Z. – BELOEV, I. H. P. 2016. A review of the characteristics of modern unmanned aerial vehicles. In Acta Technologica Agriculturale, vol. 19, no. 2, pp. 33–38. JAMES, M. B. – STOKES, D. M. – JIMBONNARDEL, T. H. B. 2016. Characterization of a quadrotor unmanned aircraft system for aerosol-particle-concentration measurements. In Environmental Science

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An approximate method for 1-D simulation of pollution transport in streams with dead zones

-Resources Investigations 3-A9 [version 2]. US Geological Survey, Washington D.C. Kimura, I., Hosoda, T., 1997. Fundamental properties of flows in open channels with dead zone. Journal of Hydraulic Engineering, 123, 2, 322–347. Kurzke, M., Weitbrecht, V., Jirka, G.H.J., 2002. Laboratory concentration measurements for determination of mass exchange between groin fields and main stream. In: Proceedings of 1st International Conference on Fluvial Hydraulics (River Flow 2002), 1, pp. 369–376. Limerinos, J.T., 1970. Determination of the Manning coefficient for measured bed

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Fluid Mechanics
Review on the Instability and Optics of Capillary Jets and Glass Fibres: A Fruitfull Collaboration Between Institute of Mechanics and Iusti

. [38] Lenoble, A. Caract´erisation optique d’une fibre de verre en cours de fibrage : contribution `a l’´etude de la stabilit´e du proc´ed´e, PhD thesis (in French), Univer- sity of Provence, France, 2004. [39] Onofri, F., L. Bergounoux, J.-L. Firpo, J. Mesguish-Ripault. Velocity, Size and Concentration Measurements of Optically Inhomogeneous Cylindrical and Spherical Particles. Appl.Opt., 38 (1999), No. 21, 4681-4690. [40] Onofri, F., G. Gr´ehan, G. Gouesbet. Electromagnetic Scattering from a Multilayered Sphere Located in an

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