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Michalowska-Kaczmarczyk, A.M. and Michalowski, T. (2014) Compact Formulation of Redox Systems According to GATES/GEB Principles. Journal of Analytical Sciences, Methods and Instrumentation, 4, 39-45.
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Michalowski, T., Toporek, M., Michalowska-Kaczmarczyk, A.M. and Asuero, A.G. (2013) New Trends in Studies on Electrolytic Redox Systems. Electrochimica Acta, 109, 519-531. http://dx.doi.org/10.1016/j.electacta.2013.07.125
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[3]
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Michalowski, T., Michalowska-Kaczmarczyk, A.M. and Toporek, M. (2013) Formulation of General Criterion Distinguishing between Non-Redox and Redox Systems. Electrochimica Acta, 112, 199-211. http://dx.doi.org/10.1016/j.electacta.2013.08.153
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[4]
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Michalowska-Kaczmarczyk, A.M. and Michalowski, T. (2013) Comparative Balancing of Non-Redox and Redox Electrolytic Systems and Its Consequences. American Journal of Analytical Chemistry, 4, 46-53. http://dx.doi.org/10.4236/ajac.2013.410A1006
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Michalowski, T., Ponikvar-Svet, M., Asuero, A.G. and Kupiec, K. (2012) Thermodynamic and Kinetic Effects Involved with pH Titration of As(III) with Iodine in a Buffered Malonate System. Journal of Solution Chemistry, 41, 436-446. http://dx.doi.org/10.1007/s10953-012-9815-6
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[6]
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Michalowski, T. (2011) Application of GATES and MATLAB for Resolution of Equilibrium, Metastable and Non-Equilibrium Electrolytic Systems, Chapter 1. In: Michalowski, T., Ed., Applications of MATLAB in Science and Engineering, InTech, Rijeka, 1-34. http://www.intechopen.com/books/show/title/applications-of-matlab-in-science-and-engineering.
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[7]
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Michalowski, T. (2010) The Generalized Approach to Electrolytic Systems: I. Physicochemical and Analytical Implications. Critical Reviews in Analytical Chemistry, 40, 2-16. http://dx.doi.org/10.1080/10408340903001292
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Michalowski, T., Pietrzyk, A., Ponikvar-Svet, M. and Rymanowski, M. (2010) The Generalized Approach to Electrolytic Systems: II. The Generalized Equivalent Mass (GEM) Concept. Critical Reviews in Analytical Chemistry, 40, 17-29. http://dx.doi.org/10.1080/10408340903001342
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[9]
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Michalowska-Kaczmarczyk, A.M., Asuero, A.G., Michalowski, T. and Toporek, M. “Why Not Stoichiometry” versus “Stoichiometry—Why Not?” Part I. General Context. Critical Reviews in Analytical Chemistry. (In Print)
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[10]
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Michalowska-Kaczmarczyk, A.M., Asuero, A.G., Toporek, M. and Michalowski, T. “Why Not Stoichiometry” versus “Stoichiometry—Why Not?” Part II. GATES in Context with Redox Systems. Critical Reviews in Analytical Chemistry. (In Print)
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Michalowska-Kaczmarczyk, A.M., Michalowski, T., Toporek, M. and Asuero, A.G. (2014) “Why Not Stoichiometry” versus “Stoichiometry—Why Not?” Part III, Extension of GATES/GEB on Complex Dynamic Redox Systems. Critical Reviews in Analytical Chemistry. (In Print)
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[12]
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Michalowski, T., Pilarski, B., Asuero, A.G. and Michalowska-Kaczmarczyk, A.M. (2014) Chapter 9.4: Modeling of Acid-Base Properties in Binary-Solvent Systems. In: Wypych, G., Ed., Handbook of Solvents, Volume 1, Chem-Tec Publishing, Toronto, 623-648.
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Michalowska-Kaczmarczyk, A.M. and Michalowski, T. (2014) Generalized Electron Balance for Dynamic Redox Systems in Mixed-Solvent Media. Journal of Analytical Sciences, Methods and Instrumentation. (In Print)
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[14]
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Michalowski, T., Kupiec, K. and Rymanowski, M. (2008) Numerical Analysis of the Gran Methods: A Comparative Study. Analytica Chimica Acta, 606, 172-183. http://dx.doi.org/10.1016/j.aca.2007.11.020
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Ponikvar, M., Michalowski, T., Kupiec, K., Wybraniec, S. and Rymanowski, M. (2008) Experimental Verification of the Modified Gran Methods Applicable to Redox Systems. Analytica Chimica Acta, 628, 181-189. http://dx.doi.org/10.1016/j.aca.2008.09.012
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Michalowski, T. (2007) Complementarity of Physical and Chemical Laws of Preservation in Aspect of Electrolytic Systems (in Polish). Wiadomosci Chemiczne (Chemical News), 61, 625-640.
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Michalowski, T., Rymanowski, M. and Pietrzyk, A. (2005) Non-Typical Bronsted’s Acids and Bases. Journal of Chemical Education, 82, 470-472. http://dx.doi.org/10.1021/ed082p470
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Michalowski, T., Toporek, M. and Rymanowski, M. (2005) Overview on the Gran and Other Linearization Methods Applied in Titrimetric Analyses. Talanta, 65, 1241-1253. http://dx.doi.org/10.1016/j.talanta.2004.08.053
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Michalowski, T., Baterowicz, A., Madej, A. and Kochana, J. (2001) An Extended Gran Method and Its Applicability for Simultaneous Determination of Fe(II) and Fe(III). Analytica Chimica Acta, 442, 287-293. http://dx.doi.org/10.1016/S0003-2670(01)01172-2
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Michalowski, T. (2001) Calculations in Analytical Chemistry with Elements of Computer Programming (in Polish) PK, Cracow. http://suw.biblos.pk.edu.pl/resourceDetails&rId=3974 http://www.chemia.uj.edu.pl/~ictchem/book.html
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Michalowski, T. (1994) Calculation of pH and Potential E for Bromine Aqueous Solutions. Journal of Chemical Education, 71, 560-562. http://dx.doi.org/10.1021/ed071p560
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Michalowski, T. and Lesiak, A. (1994) Acid-Base Titration Curves in Disproportionating Redox Systems. Journal of Chemical Education, 71, 632-636. http://dx.doi.org/10.1021/ed071p632
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Michalowski, T. and Lesiak, A. (1994) Formulation of Generalized Equations for Redox Titration Curves. Chemia Analityczna (Warsaw), 39, 623-637.
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Hypoiodous Acid. http://en.wikipedia.org/wiki/Hypoiodous_acid
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Wiberg, E. and Wiberg, N., Eds. (2001) Holleman-Wiberg’s Inorganic Chemistry. Academic Press, Waltham, 451.
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Glukhovtsev, M.N., Pross, A. and Radom, L. (1996) Acidities, Proton Affinities and Other Thermochemical Properties of Hypohalous Acids HOX (X = F - I): A High-Level Computational Study. Journal of Physical Chemistry, 100, 3498-3503. http://dx.doi.org/10.1021/jp952561w
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Urbansky, E.T., Cooper, B.T. and Margerum, D.W. (1997) Disproportionation Kinetics of Hypoiodous Acid as Catalyzed and Suppressed by Acetic Acid-Acetate Buffer. Inorganic Chemistry, 36, 1338-1344. http://dx.doi.org/10.1021/ic960745z
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Bichsel, Y. and Von Gunten, U. (2000) Hypoiodous Acid: Kinetics of the Buffer-Catalyzed Disproportionation. Water Research, 34, 3197-3203. http://dx.doi.org/10.1016/S0043-1354(00)00077-4
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Truesdale, V.W., Canosa-Mas, C. and Luther, G.W. (1994) Kinetics of Disproportionation of Hypoiodous Acid. Journal of the Chemical Society, Faraday Transactions, 90, 3639-3643. http://dx.doi.org/10.1039/ft9949003639
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Truesdale, V.W. (1997) Kinetics of Disproportionation of Hypoiodous Acid at High pH, with an Extrapolation to Rainwater. Journal of the Chemical Society, Faraday Transactions, 93, 1909-1914. http://dx.doi.org/10.1039/a700226b
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Lurie, J. (1975) Handbook of Analytical Chemistry. Mir Publishers, Moscow.
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