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Results of radon CR-39 detectors exposed in schools due two different long-term periods

of integrating radon detectors in the NIRS radon chamber. Appl. Radiat. Isot., 67 (9), 1691–1696. 10.1016/j.apradiso.2009.03.006 . Janik M. Tokonami S. Kovács T. Kávási N. Kranrod C. Sorimachi A. Takahashi H. Miyahara N. Ishikawa T. 2009 International intercomparisons of integrating radon detectors in the NIRS radon chamber Appl. Radiat. Isot. 67 9 1691 1696 10.1016/j.apradiso.2009.03.006 6. Clouvas, A., Takoudis, G., Xanthos, S., Potiriadis, C., & Kolovou, M. (2009). Indoor radon measurements in areas of northern

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Thermodynamic properties of dilute Co-Fe solid solutions studied by 57Fe Mössbauer spectroscopy

). Hyperfi ne fi eld and atomic moment of iron in ferromagnetic alloys. Phys. Rev. Lett., 6, 450-451. DOI: 10.1103/PhysRevLett.6.450. 23. Rao, G. N. (1985). Table of hyperfi ne fi elds for impurities in Fe, Co, Ni, Gd and Cr. Hyperfi ne Interact., 24/26, 1119-1194. DOI: 10.1007/BF02354655. 24. Rodriguez, J. E., & Matson, D. M. (2015). Thermodynamic modeling of the solidifi cation path of levitated Fe-Co alloys. Calphad-Comput. Coupling Ph. Diagrams Thermochem., 49, 87-100. DOI: 10.1016/j.calphad.2015.03.001. 25. Chojcan, J

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Influence of OASL gene polymorphisms on host response to interferon therapy in chronic hepatitis C virus patients

, Antonelli G, Antonaci S. MxA and PKR expression in chronic hepatitis C. J Interferon Cytokine Res. 2004 Nov;24(11):659-63. PubMed PMID: 15684819. Epub2005/02/03. eng. 24. Chen L, Borozan I, Feld J, Sun J, Tannis LL, Coltescu C, et al. Hepatic gene expression discriminates responders and nonresponders in treatment of chronic hepatitis C viral infection. Gastroenterology. 2005 May;128(5):1437-44. PubMed PMID: 15887125. Epub 2005/05/12. eng. 25. Marie I, Rebouillat D, Hovanessian AG. The expression of both domains of the 69/71 kDa 2’,5

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Studies on hydrometallurgical processes using nuclear techniques to be applied in copper industry. II. Application of radiotracers in copper leaching from flotation tailings

-Au (-Zn) deposit, Carlin trend, Nevada. Hydrometallurgy, 176, 176-191. DOI: 10.1016/j.hydromet.2018.01.022. 11. Bulut, G. (2006). Recovery of copper and cobalt from ancient slag. Waste Manage. Res., 24(2), 118-124. DOI: 10.1177/0734242X06063350. 12. Muravyov, M. I., Fomchenko, N. V., Usoltsev, A. V., Vasilyev, E. A., & Kondrat’eva, T. F. (2012). Leaching of copper and zinc from copper converter slag fl otation tailings using H2SO4 and biologically generated Fe2(SO4)3. Hydrometallurgy, 119/120, 40-46. DOI: 10.1016/j.hydromet.2012.03

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Static Load Test on Instrumented Pile – Field Data and Numerical Simulations

(2), 35–38 and 20(3) 25–29. [6] F ellenius B.H., Determining the true distributions of load in instrumented piles , ASCE International Deep Foundation Congress, Orlando, Florida, 2002. [7] F ellenius B.H., Unified design of piled foundations with emphasis on settlement , ASCE, Current Practice and Future Trends in Deep Foundations, GSP No. 125, Los Angeles, California, 2004, 253–275. [8] F ellenius B.H., K im S.R., C hung S.G., Long-term monitoring of strain in strain-gage instrumented piles , ASCE Journal of Geotechnical and Geoenvironmental

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Computing topological indices of the line graphs of Banana tree graph and Firecracker graph

edges of G . Line graphs are very useful in mathematical chemistry, but in recent years they were considered very little in chemical graph theory. For further facts about the applications of line graphs in chemistry, we mention the articles [ 6 , 25 , 32 ]. Topological indices are the arithmetical numbers which depends upon the construction of any simple graph. Topological indices are generally classified into three kinds: degree-based indices (see [ 2 , 5 , 7 , 8 , 28 , 29 ]), distance-based indices (see [ 3 , 16 ]), and spectrum-based indices (see [ 11

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Electromagnetic pulses produced by expanding laser-produced Au plasma

References 1. Dubois, J. -L., Lubrano-Lavaderci, F., Raffestin, D., Ribolzi, J., Gazave, J., Compant La Fontaine, A., d’Humières, E., Hulin, S., Nicolaï, Ph., Poyé, A., & Tikhonchuk, V. T. (2014). Target charging in short-pulse-laser–plasma experiments. Phys. Rev. E , 89 , 013102. DOI: 10.1103/PhysRevE.89.013102. 2. Benjamin, R. F., McCall, G. H., & Ehler, A. W. (1979). Measurement of return current in a laser-produced plasma. Phys. Rev. Lett ., 42 , 890–893. DOI: 10.1103/PhysRevLett.42.890. 3. Mead, M. J., Neely, D., Gauoin, J., Heathcote

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Modified Wavelet Full-Approximation Scheme for the Numerical Solution of Nonlinear Volterra integral and integro-differential Equations

refinement relation of scaling function ϕ ( t ) is given by, ϕ ( t ) = 2 ∑ k = 0 L − 1 h k ϕ ( 2 t − k ) $$\begin{array}{} \displaystyle \phi (t) = \sqrt 2 \mathop \Sigma \limits_{k = 0}^{L - 1} {h_k}\phi (2t - k) \end{array}$$ (1) where ϕ ( t ) is normalized: ∫ − ∞ ∞ ϕ ( t ) d t = 1 $\begin{array}{} \displaystyle \int_{-\infty}^{\infty} \phi(t) dt =1 \end{array}$ . Based on the scaling function ϕ ( t ) , the wavelet function can be written as, The refinement relation of wavelet function ψ ( t ) is given by, ψ ( t ) = 2 ∑ k = 0 L − 1 g k ϕ ( 2 t − k

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Physico chemical properties of irradiated i-SANEX diluents

References 1. Mincher, B. J., Modolo, G., & Mezyk, S. P. (2009). The effects of radiation chemistry on solvent extraction: 1. Conditions in acidic solution and a review of TBP radiolysis. Solvent Extr. Ion Exch., 27, 1-25. DOI: 10.1080/07366290802544767. 2. Tripathi, S. C., & Ramanujam, A. (2003). Effect of radiation-induced physicochemical transformations on density and viscosity of 30% TBP-n-dodecane- -HNO3 system. Separ. Sci. Technol., 38, 2307-2326. DOI: 10.1081/SS-120021626. 3. Bourg, S., Poinssot, C

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Gamma radiolytic stability of CyMe4BTBP and the effect of nitric acid

References 1. OECD-NEA. (2011). Potential benefi ts and impacts of advanced nuclear fuel cycles with actinide partitioning and transmutation. Issy-les-Moulineaux, France: O. Publishing OECD-NEA. (NEA no. 6894). 2. González-Romero, E. M. (2011). Impact of partitioning and transmutation on the high level waste management. Nucl. Eng. Des., 241, 3436-3444. DOI: 10.1016/j.nucengdes.2011.03.030. 3. Modolo, G., Geist, A., & Miguirditchian, M. (2015). Minor actinide separations in the reprocessing of spent nuclear fuels

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