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Textile Fiber Identification Using Near-Infrared Spectroscopy and Pattern Recognition

References [1] Houck, M. M. (2010). Introduction to textile fiber identification - identification of textile fibers - 1. Australian Journal of Forensic Sciences, 42(2), 153-154. [2] Gray, F. M., Smith, M. J., Silva, M. B. (2011). Identification and characterization of textile fibers by thermal analysis. Journal of Chemical Education, 88(4), 476-479. [3] Stoeffler, S. F. (1996). A flowchart system for the identification of common synthetic fibers by polarized light microscopy. Journal of Forensic Sciences, 41, 297-299. [4] Liu, C. (2002

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High Performance Computing Applications
High Performance Computing in Micromechanics with an Application

. Basu. Stochastic Multiscale Characterization of Short-Fiber Reinforced Composites. - Technische Mechanik, Vol. 36, 2016, No 1-2, pp. 13-31. 7. Guan, X., X. Liu, X. Jia, Y. Yuan, J. Cui, H. A. Mang. A Stochastic Multiscale Model for Predicting Mechanical Properties of Fiber Reinforced Concrete. - International Journal of Solids and Structures, Vol. 56-57, 2015, pp. 280-289. 8. Haslinger, J., R. Blaheta, R. Hrtus. Identification Problems with Given Material Interfaces. - Journal of Computational and Applied Mathematics, Early View, June

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Reliability monitoring of broadband access networks

.: Physical Layer Monitoring Techniques for TDM-Passive Optical Networks: A Survey, IEEE Communications Surveys & Tutorials, 2/2013, 943-958. [5] ITU-T L. 41: Maintenance wavelength on fibres carrying signals, Genewa, 2000. [6] ITU-T L. 66: Optical fibre cable maintenance criteria for in-service fibre testing in access networks, Genewa, 2007. [7] ITU-T L. 85: Optical fibre identification for the maintenance of optical access networks, Genewa, 2010. [8] Bentz C. M., Fritzsche D.: Field Trial of a Novel FTTH/PON Monitoring Technique Based on Unique

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Identification of Cellulose Fibers Isolated from Reconstituted Tobacco

,:125,098 (:1964). : 11. Light, H.J., and R. J. Osborne: Reconstituted sheet manufacture; U.S. Patent No. 3,464,422 (:1969). 12. Christy, .M. G., and M. Samfield: The average degree of polymerization (D.P.) of cellulose in various tobacco types, Part1.: Experimental; Tobacco Science 4 (1.960) 33. 13. Image analysis data furnished through the courtesy of Image Analysing Computers, Inc. (Imanco), of Monsey, New York. 14. Richards, G. N.: A fiber analysis of tobacco stem and stalk; Tobacco Science 8 (1964) 27.

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Regulation of Cough by Voltage-Gated Sodium Channels in Airway Sensory Nerves

. Nassenstein C, Taylor-Clark TE, Myers AC, Ru F, Nandigama R, Bettner W, Undem BJ. Phenotypic distinctions between neural crest and placodal derived vagal C-fibres in mouse lungs. J Physiol 2010; 588 (Pt 23): 4769-4783. 8. Hodes R. Linear relationship between fiber diameter and velocity of conduction in giant axon of squid. J Neurophysiol 1953; 16 (2): 145-154. 9. Canning BJ, Undem BJ. Evidence that distinct neural pathways mediate parasympathetic contractions and relaxations of guinea-pig trachealis. J Physiol 1993; 471: 25-40. 10. Canning BJ, Mazzone SB

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Identification of Volatile Compounds from a Brewery with SPME Technique

References [1] Ranau R, Steinhart H. Identification and evaluation of volatile odor-active pollutants from different odor emission sources in the food industry. Eur Food Res Technol. 2005;220:226-231. DOI: 10.1007/s00217-004-1073-4. [2] Rappert S, Müller R. Odor compounds in waste gas emissions from agricultural operations and food industries. Waste Manage. 2005;25(9):887-907. DOI: 10.1016/j.wasman.2005.07.008. [3] Schlegelmilch M, Streese J, Stegmann R. Odour management and treatment technologies: An overview. Waste Manage. 2005

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Some Approaches to the Rolling Wheels’ Dynamics Modelling in the Weight-in-Motion Problem

References 1. Jacob B., Feypell-de la Beaumelle, V. (2010). Improving truck safety: Potential of weigh-in-motion technology. IATSS Research , 34, 9-15. 2. Shengyao Jia et al. (2010). Signal acquisition and processing of the moving vehicle weighting system. WSEAS Trans. on Signal Proc. , 3(6), 113-122. 3. Dorleus J. et al. (2009). A fibre optic seismic sensor for unattended ground sensing applications. ITEA Journ. , 30, 455-460. 4. Mimbela, L. E. Y., Klein, L. A. (2005). Summary of

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Electrooxidation of phenol on carbon fibre-based anodes through continuous electrolysis of synthetic wastewater

92, 20–30. DOI: 10.1016/j.electacta.2013.01.020. 17. Jin, P., Chang, R., Liu, D., Zhao, K., Zhang, L. & Ouyang, Y. (2014). Phenol degradation in an electrochemical system with TiO 2 /activated carbon fiber as electrode. J. Environ. Chem. Eng . 2, 1040–1047. DOI: 10.1016/j.jece.2014.03.023. 18. Duan, F., Li, Y., Cao H., Wang, Y., Crittenden, J.C. & Zhang, Y. (2015). Activated carbon electrodes: Electrochemical oxidation coupled with desalination for wastewater treatment. Chemosphere 125, 205–211. DOI: 10.1016/j.chemosphere.2014.12.065. 19

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Effect of randomly distributed polypropylene fiber reinforcement on the shear behavior of sandy soil

. Sheikhzadeh M. 2008 On the use of textile fibers to achieve mechanical soil stabilization 4th Inttex cloth des conf Dubrovnik, Croatia; 5 – 8 [2] Ahmad, F., Mujah, D., Hazarika, H., and Safari, A. (2012). Assessing the potential reuse of recycled glass fibre in problematic soil applications, Journal of Cleaner Production, 35, 102–107. Ahmad F. Mujah D. Hazarika H. Safari A. 2012 Assessing the potential reuse of recycled glass fibre in problematic soil applications, Journal of Cleaner Production 35 102 – 107 [3] Al Refeai, O

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A Laboratory Investigation on Shear Strength Behavior of Sandy Soil: Effect of Glass Fiber and Clinker Residue Content

prefabricated vertical drains , Geotextiles and Geomembranes, 2006, 24(6), 339–348. [13] C onsoli N.C., C asagrande M.D., C oop M.R., Effect of fiber reinforcement on the isotropic compression behavior of sand , Journal of Geotechnical and Geoenvironmental Engineering, 2005, 131(11), 1434–1436. [14] C onsoli N.C., M ontardo J.P., D onato M., P rietto P.D.M., Effect of material properties on the behaviour of sand-cement-fibre composites , Ground Improvement, 2004, 8(2), 77–90. [15] C onsoli N.C., M ontardo J.P., P rietto P.D.M., P asa G

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