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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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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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Indoor air pollution and the contribution of biosensors

optic gas sensor using clad modified Zn3 (VO4)2. Journal of Alloys and Compounds, 2018; 750: p. 153-163. 103. Manjula M, Karthikeyan B,Sastikumar D, Sensing characteristics of clad-modified (Ho-doped Bi2O3 nanoparticles) fibre optic gas sensor. Optical Fiber Technology, 2018; 45: p. 35-39. 104. Khan MRR, Kang B-H, Yeom S-H, Kwon D-H,Kang S-W, Fiber-optic pulse width modulation sensor for low concentration VOC gas. Sensors and Actuators B: Chemical, 2013; 188: p. 689-696. 105. Renganathan B,Ganesan AR, Fiber optic gas sensor with nanocrystalline ZnO

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Shear strength of compacted Chlef sand: effect of water content, fines content and others parameters

CANOU J. DUPLA J.C. Structure initiale et propriétés de liquéfaction statique d’un sable Compte Rendus Mecanique 2004 332 887 894 [13] BENESSALAH I., ARAB A., VILLARD P., SADEK M., KADRI A., Laboratory study on shear strength behaviour of reinforced sandy soil: effect of glass fiber content and other parameters Arabian Journal for Science and Engineering, 2016, 41, 13431353. BENESSALAH I. ARAB A. VILLARD P. SADEK M. KADRI A. Laboratory study on shear strength behaviour of reinforced sandy soil: effect of glass fiber content

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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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Comparison of Mainstream Smoke Composition from CR20 Resin Filter and Empty-Cavity Filter Cigarettes by Headspace SPME Coupled with GC×GC TOFMS and Chemometric Analysis

Silica Optical Fibers; Anal. Chem. 62 (1990) 2145–2148. DOI: 10.1021/ac00218a019 27. Clark, T.J. and J.E. Bunch: Quantitative Determination of Phenols in Mainstream Smoke with Solid-Phase Microextraction-Gas Chromatography — Selected Ion Monitoring Mass Spectrometry; J. Chromatogr. Sci. 34 (1996) 272–275. DOI: 10.1093/chromsci/34.6.272 28. Clark, T.J. and J.E. Bunch: Qualitative and Quantitative Analysis of Flavor Additives on Tobacco Products Using SPME-GC-Mass Spectroscopy; J. Agric. Food Chem. 45 (1997) 844–849. DOI: 10.1021/jf960522r 29. Stanfill

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Enhanced CAE system for detection of exudates and diagnosis of diabetic retinopathy stages in fundus retinal images using soft computing techniques

Conference and exhibition, November 17-20, Doha, Qatar. IEEE, 2013. [6] Hatanaka Y, Muramatsu C, Sawada A, et al. Glaucoma Risk Assessment Based on Clinical Data and Automated Nerve Fiber Layer Defects Detection. 34th Annual International Conference of the IEEE EMBS San Diego, California USA, 28 August - 1 September, 2012. [7] Osareh A, Shadgar B, Markha R. A Computational Intelligence Based Approach for Detection of Exudates in Diabetic Retinopathy Images. IEEE Transactions on Information Technology in Biomedicine, 2009;13(4):535-545. [8] Youssef D

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Polychlorinated Dibenzodioxins and Dibenzofurans in Cigarette Smoke - Polychlordibenzodioxine und Polychlordibenzofurane in Cigarettenrauch

References 1. Rappe, C.: WHO consultation on organohalogen compounds in human milk and related hazards; Bilthoven, 1985. 2. Fürst, P., H.-A. Meemken und W. Groebel: Bericht fiber die Untersuchung von Frauenmilch auf poly-chlorierte Dibenzodioxine und -furane 1984/85; Chemisches Landesuntersuchungsamt NW, Mfin-ster 1986. 3. Fürst, P., Chr. Krüger, H.-A. Meemken und W. Groebel: Bericht über die Untersuchung von Frauenmilch auf polychlorierte Dibenzodioxine und -furane; Chemisches

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Comparisons of the Composition of Tobacco Smoke and the Smokes from Various Tobacco Substitutes

.A. Vassallo. February 1, 1971, see 501620704 -0723. 63. Browne, C.L.: The design of cigarettes; Celanese Fibers Company, Technical Dept., Charlotte, NC, 1979, pp. 1–73: see pp. 33–34. 64. Lloyd, R.A. Jr. and C.W. Miller: A rapid comparison of the smoke composition of 50% J10 and Winston blend cigarettes; RDM, 1974, No. 12, May 2, see 510691792 -1806; Pyrolysis of J10. Identification of levoglucosenone; RDM, 1974, No. 18, August 8, see 500606631 -6645

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Degradation and detoxification of 2-chlorophenol aqueous solutions using ionizing gamma radiation

photolysis in wastewater effluent. Environ. Sci. Technol. , 47 (22), 13020–13030. DOI: 10.1021/es402472x. 15. Azbar, N., Yonar, T., & Kestioglu, K. (2004). Comparison of various advanced oxidation processes and chemical treatment methods for COD and color removal from a polyester and acetate fiber dyeing effluent. Chemosphere , 55 (1), 35–43. DOI: 10.1016/j.chemosphere.2003.10.046. 16. Esplugas, S., Bila, D. M., Krause, L. G. T., & Dezotti, M. (2007). Ozonation and advanced oxidation technologies to remove endocrine disrupting chemicals (EDCs) and

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