This book is concerned with the theory of stochastic processes and the theoretical aspects of statistics for stochastic processes. It combines classic topics such as construction of stochastic processes, associated filtrations, processes with independent increments, Gaussian processes, martingales, Markov properties, continuity and related properties of trajectories with contemporary subjects: integration with respect to Gaussian processes, Itȏ integration, stochastic analysis, stochastic differential equations, fractional Brownian motion and parameter estimation in diffusion models.
This account of historical politics in Ukraine, framed in a broader European context, shows how social, political, and cultural groups have used and misused the past from the final years of the Soviet Union to 2020. Georgiy Kasianov details practices relating to history and memory by a variety of actors, including state institutions, non-governmental organizations, political parties, historians, and local governments. He identifies the main political purposes of these practices in the construction of nation and identity, struggles for power, warfare, and international relations. Kasianov considers the Ukrainian case in the context of a global increase in the politics of history and memory, with particular emphasis on a distinctive East-European variety. He pays special attention to the use and abuse of history in relations between Ukraine, Russia, and Poland.
The contributors to this collection explore the multidimensional transformation of independent Ukraine and deal with her politics, society, private sector, identity, arts, religions, media, and democracy. Each chapter reflects the up-to-date research in its sub-discipline, is styled for use in seminars, and includes a bibliography as well as a recommended reading list. These studies illustrate the deep changes, yet, at the same time, staggering continuity in Ukraine’s post-Soviet development as well as various counter-reactions to it. All nine chapters are jointly written by two co-authors, one Ukrainian and one Western, who respond here to recent needs in international higher education. The volume’s contributors include, apart from the editors: Margarita M. Balmaceda (Seton Hall University), Oksana Barshynova (Ukrainian National Arts Museum), Tymofii Brik (Kyiv School of Economics), José Casanova (Georgetown University), Diana Dutsyk (Kyiv-Mohyla Academy), Marta Dyczok (University of Western Ontario), Hennadii Korzhov (Kyiv Polytechnic Institute), Serhiy Kudelia (Baylor University), Pavlo Kutuev (Kyiv Polytechnic Institute), Olena Martynyuk (Columbia University), Oksana Mikheieva (Ukrainian Catholic University), Tymofii Mylovanov (University of Pittsburgh), Andrian Prokip (Ukrainian Institute for the Future), Oxana Shevel (Tufts University), Ilona Sologoub (Kyiv School of Economics), Maksym Yenin (Kyiv Polytechnic Institute), and Yuliya Yurchenko (University of Greenwich).
Properties of Aqueous Solutions of Electrolytes is a handbook that systematizes the information on physico-chemical parameters of multicomponent aqueous electrolyte solutions. This important data collection will be invaluable for developing new methods for more efficient chemical technologies, choosing optimal solutions for more effective methods of using raw materials and energy resources, and other such activities. This edition, the first available in English, has been substantially revised and augmented. Many new tables have been added because of a significantly larger list of electrolytes and their properties (electrical conductivity, boiling and freezing points, pressure of saturated vapors, activity and diffusion coefficients). The book is divided into two sections. The first section provides tables that list the properties of binary aqueous solutions of electrolytes, while the second section deals with the methods for calculating their properties in multicomponent systems. All values are given in PSI units or fractional and multiple units. Metrological characteristics of the experimental methods used for the determination of physico-chemical parameters are indicated as a relative error and those of the computational methods as a relative error or a root-mean square deviation.
This book is concerned with the theory of stochastic processes and the theoretical aspects of statistics for stochastic processes. It combines classic topics such as construction of stochastic processes, associated filtrations, processes with independent increments, Gaussian processes, martingales, Markov properties, continuity and related properties of trajectories with contemporary subjects: integration with respect to Gaussian processes, Itȏ integration, stochastic analysis, stochastic differential equations, fractional Brownian motion and parameter estimation in diffusion models.
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