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Analytical Tools for Economic Research of Small Municipalities and Gaming Techniques for Community Involvement (The Case of Voronezh Region in Russia) M.I
R-ECONOMY, 2020, 6(2), 111–124 doi: 10.15826/recon.2020.6.2.010 Original Paper doi 10.15826/recon.2020.6.2.010 Analytical tools for economic research of small municipalities and gaming techniques for community involvement (the case of Voronezh region in Russia) M.I. Solosina1 , I.N. Shchepina1, 2 1 Voronezh State University, Voronezh, Russia; e-mail: [email protected] 2 CEMIRAS, Moscow, Russia ABSTRACT KEYWORDS Relevance. The article deals with the issues of strategic territorial development in Russian regions and municipalities and the analytical tools for studying them. analytical tools, gaming While there is a diversity of tools for studying large municipalities, the choice of techniques, strategic territorial tools for smaller urban and rural settlements is quite limited. This is the research development, municipality, gap this study seeks to address. Research objective. This study focuses on the systemic approach case of municipal districts and settlements in Voronezh region. The aim is to show how the proposed methodology can be applied for such cases. Data and methods. The study relies on the methods of systemic analysis and synthesis, comparison and generalization, multidimensional statistics as well as on the use of gaming techniques. The data for the analysis were obtained from federal, re- gional and municipal statistics; municipal information systems of settlements of Voronezh region; municipal information system MISS ‘Volost’; and from the executive authorities of Voronezh region. Results. The analysis of the set of in- dicators, including the municipal product to GRP, for the period between 2006 FOR CITATION and 2015 has shown that the town of Liski is one of the leading municipalities in Voronezh district (the municipal product of Liskinsky accounts for over 5% of Solosina, M.I., Shchepina, I.N. -
QUARTERLY REPORT Public Joint-Stock Company of Power Industry and Electrification of Kuban, Публичное Акционе
QUARTERLY REPORT Public Joint-Stock Company of Power Industry and Electrification of Kuban, Публичное акционерное общество энергетики и электрификации Кубани Issuer’s code 00063-A Quarter 3, 2016 Issuer’s address: 2A Stavropolskaya str., Krasnodar, 350033, Russia Information contained in the quarterly report is subject to disclosure in accordance with the legislation of the Russian Federation on securities Director general Date: 11 November 2016 ____________ Gavrilov A.I. signature Chief accountant – Head of Department of Financial Records, Accounts And Tax Returns ____________ Skiba I.V. Date: 11 November 2016 signature Contact person: Kruglova Svetlana Ivanovna, Chief Specialist of Corporate Governance and Shareholders Relations Department Telephone: (861) 212-2510 Fax: (861) 212-2708 E-mail: [email protected] Internet page(s) used for disclosure of information contained in this quarterly report: www.kubanenergo.ru/stockholders/disclosure_of_information/amp_reports/, http://www.e-disclosure.ru/portal/company.aspx?id=2827. 1 Introduction ................................................................................................................................................................... 4 I. Information on bank accounts, auditor (auditing company), appraiser and financial consultant of the Issuer as well as other persons signed the quarterly report .................................................................................................................. 6 1.1. Information on the Issuer's Bank Accounts ....................................................................................................... -
History of Radiation and Nuclear Disasters in the Former USSR
History of radiation and nuclear disasters in the former USSR M.V.Malko Institute of Power Engineering National Academy of Sciences of Belarus Akademicheskaya Str.15, Minsk, 220 000, Republic of Belarus E-mail: [email protected] Abstracts. The report describes the history of radiation and nuclear accidents in the former USSR. These accidents accompanied development of military and civilian use of nuclear energy. Some of them as testing of the first Soviet nuclear, Kyshtym radiation accident, radiation contamination of the Karachai lake and the Techa river, nuclear accidents at the Soviet submarine on August 10, 1985 in the Chazhma Bay (near Vladivostok) as well as nuclear accidents on April 26, 1986 at the Chernobyl NPP were of large scale causing significant radiological problems for many hundreds thousands of people. There were a number of important reasons of these and other accidents. The most important among them were time pressure by development of nuclear weapon, an absence of required financial and material means for adequate management of problems of nuclear and radiation safety, and inadequate understanding of harmful interaction of ionizing radiation on organism as well as a hypersecrecy by realization of projects of military and civilian use of nuclear energy in the former USSR. Introduction. The first nuclear reactor in the USSR reached the critical state on the 25 December 1946 [1] or 4 years later than reactor constructed by Enrico Fermi [2]. The first Soviet reactor was developed at the Laboratory N2 in Moscow (later I.V.Kurchatov Institute of Atomic Energy). This was a very important step in a realization of the Soviet military atomic program that began in September 1942. -
List of Grain Elevators in Which Grain Will Be Deposited for Subsequent Shipment to China
List of grain elevators in which grain will be deposited for subsequent shipment to China Contact Infromation (phone № Name of elevators Location num. / email) Zabaykalsky Krai Rapeseed 1 ООО «Zabaykalagro» Zabaykalsku krai, Borzya, ul. Matrosova, 2 8-914-120-29-18 2 OOO «Zolotoy Kolosok» Zabaykalsky Krai, Nerchinsk, ul. Octyabrskaya, 128 30242-44948 3 OOO «Priargunskye prostory» Zabaykalsky Krai, Priargunsk ul. Urozhaynaya, 6 (924) 457-30-27 Zabaykalsky Krai, Priargunsky district, village Starotsuruhaytuy, Pertizan 89145160238, 89644638969, 4 LLS "PION" Shestakovich str., 3 [email protected] LLC "ZABAYKALSKYI 89144350888, 5 Zabaykalskyi krai, Chita city, Chkalova street, 149/1 AGROHOLDING" [email protected] Individual entrepreneur head of peasant 6 Zabaykalskyi krai, Chita city, st. Juravleva/home 74, apartment 88 89243877133, [email protected] farming Kalashnikov Uriy Sergeevich 89242727249, 89144700140, 7 OOO "ZABAYKALAGRO" Zabaykalsky krai, Chita city, Chkalova street, 147A, building 15 [email protected] Zabaykalsky krai, Priargunsky district, Staroturukhaitui village, 89245040356, 8 IP GKFH "Mungalov V.A." Tehnicheskaia street, house 4 [email protected] Corn 1 ООО «Zabaykalagro» Zabaykalsku krai, Borzya, ul. Matrosova, 2 8-914-120-29-18 2 OOO «Zolotoy Kolosok» Zabaykalsky Krai, Nerchinsk, ul. Octyabrskaya, 128 30242-44948 3 OOO «Priargunskye prostory» Zabaykalsky Krai, Priargunsk ul. Urozhaynaya, 6 (924) 457-30-27 Individual entrepreneur head of peasant 4 Zabaykalskyi krai, Chita city, st. Juravleva/home 74, apartment 88 89243877133, [email protected] farming Kalashnikov Uriy Sergeevich Rice 1 ООО «Zabaykalagro» Zabaykalsku krai, Borzya, ul. Matrosova, 2 8-914-120-29-18 2 OOO «Zolotoy Kolosok» Zabaykalsky Krai, Nerchinsk, ul. Octyabrskaya, 128 30242-44948 3 OOO «Priargunskye prostory» Zabaykalsky Krai, Priargunsk ul. -
Systemic Criteria for the Evaluation of the Role of Monofunctional Towns in the Formation of Local Urban Agglomerations
ISSN 2007-9737 Systemic Criteria for the Evaluation of the Role of Monofunctional Towns in the Formation of Local Urban Agglomerations Pavel P. Makagonov1, Lyudmila V. Tokun2, Liliana Chanona Hernández3, Edith Adriana Jiménez Contreras4 1 Russian Presidential Academy of National Economy and Public Administration, Russia 2 State University of Management, Finance and Credit Department, Russia 3 Instituto Politécnico Nacional, Escuela Superior de Ingeniería Mecánica y Eléctrica, Mexico 4 Instituto Politécnico Nacional, Escuela Superior de Cómputo, Mexico [email protected], [email protected], [email protected] Abstract. There exist various federal and regional monotowns do not possess any distinguishing self- programs aimed at solving the problem of organization peculiarities in comparison to other monofunctional towns in the periods of economic small towns. stagnation and structural unemployment occurrence. Nevertheless, people living in such towns can find Keywords. Systemic analysis, labor migration, labor solutions to the existing problems with the help of self- market, agglomeration process criterion, self- organization including diurnal labor commuting migration organization of monotown population. to the nearest towns with a more stable economic situation. This accounts for the initial reason for agglomeration processes in regions with a large number 1 Introduction of monotowns. Experimental models of the rank distribution of towns in a system (region) and evolution In this paper, we discuss the problems of criteria of such systems from basic ones to agglomerations are explored in order to assess the monotown population using as an example several intensity of agglomeration processes in the systems of monotowns located in Siberia (Russia). In 2014 the towns in the Middle and Southern Urals (the Sverdlovsk Government of the Russian Federation issued two and Chelyabinsk regions of Russia). -
The Ecological State of the Raw Material Zone of the Enterprises Supplying Beef for Baby Food
E3S Web of Conferences 210, 06004 (2020) https://doi.org/10.1051/e3sconf/202021006004 ITSE-2020 The ecological state of the raw material zone of the enterprises supplying beef for baby food Nikolay Zabashta1,*, Elena Golovko1, Irina Sinelshchikova1, and Anastasia Androsova 1Department of Toxicology and Feed Quality, Federal State Budgetary Scientific Institution Krasnodar Research Centre for Animal Husbandry and Veterinary Medicine, 4, Pervomayskaya Street, 350055, Krasnodar, Russian Federation Abstract. Subjects of the research: soils, pasture and cultivated plants, vegetable raw materials, prepared feed of the raw material zone of the Branch of the Tikhoretsky Children's Meat Canning Plant of DANON- RUSSIA JSC. The quantitative content of mobile forms of heavy metals in soils under the main feed crops and their accumulation in finished feeds was determined. The a soil with a high humus content cover in the area of the surveyed farms is mainly represented by carbonate weakly humus heavy-duty “chernozem”, which occupies 82.5 % of all land. Fodder raw materials in the autumn-winter season 2019-2020 is safe in quantitative content regulated by standards of elements of heavy metals. Their contents were established: mercury ≤ 0.01 mg / kg, cadmium ≤ 0.2 mg / kg, lead ≤ 2.0 mg / kg and arsenic ≤ 0.5 mg / kg. However, there was an insignificant (1-2%) increase in the zinc content in the silage from the green mass of corn and haylage from the green mass of alfalfa. It was established that the remains of the prohibited pesticides are in trace amounts or practically absent in the feed of the raw material zone. -
Nuclear Status Report Additional Nonproliferation Resources
NUCLEAR NUCLEAR WEAPONS, FISSILE MATERIAL, AND STATUS EXPORT CONTROLS IN THE FORMER SOVIET UNION REPORT NUMBER 6 JUNE 2001 RUSSIA BELARUS RUSSIA UKRAINE KAZAKHSTAN JON BROOK WOLFSTHAL, CRISTINA-ASTRID CHUEN, EMILY EWELL DAUGHTRY EDITORS NUCLEAR STATUS REPORT ADDITIONAL NONPROLIFERATION RESOURCES From the Non-Proliferation Project Carnegie Endowment for International Peace Russia’s Nuclear and Missile Complex: The Human Factor in Proliferation Valentin Tikhonov Repairing the Regime: Preventing the Spread of Weapons of Mass Destruction with Routledge Joseph Cirincione, editor The Next Wave: Urgently Needed Steps to Control Warheads and Fissile Materials with Harvard University’s Project on Managing the Atom Matthew Bunn The Rise and Fall of START II: The Russian View Alexander A. Pikayev From the Center for Nonproliferation Studies Monterey Institute of International Studies The Chemical Weapons Convention: Implementation Challenges and Solutions Jonathan Tucker, editor International Perspectives on Ballistic Missile Proliferation and Defenses Scott Parish, editor Tactical Nuclear Weapons: Options for Control UN Institute for Disarmament Research William Potter, Nikolai Sokov, Harald Müller, and Annette Schaper Inventory of International Nonproliferation Organizations and Regimes Updated by Tariq Rauf, Mary Beth Nikitin, and Jenni Rissanen Russian Strategic Modernization: Past and Future Rowman & Littlefield Nikolai Sokov NUCLEAR NUCLEAR WEAPONS, FISSILE MATERIAL, AND STATUS EXPORT CONTROLS IN THE FORMER SOVIET UNION REPORT NUMBER 6 JUNE -
Chelyabinsk Airburst, Damage Assessment, Meteorite Recovery and Characterization
O. P. Popova, et al., Chelyabinsk Airburst, Damage Assessment, Meteorite Recovery and Characterization. Science 342 (2013). Chelyabinsk Airburst, Damage Assessment, Meteorite Recovery, and Characterization Olga P. Popova1, Peter Jenniskens2,3,*, Vacheslav Emel'yanenko4, Anna Kartashova4, Eugeny Biryukov5, Sergey Khaibrakhmanov6, Valery Shuvalov1, Yurij Rybnov1, Alexandr Dudorov6, Victor I. Grokhovsky7, Dmitry D. Badyukov8, Qing-Zhu Yin9, Peter S. Gural2, Jim Albers2, Mikael Granvik10, Läslo G. Evers11,12, Jacob Kuiper11, Vladimir Kharlamov1, Andrey Solovyov13, Yuri S. Rusakov14, Stanislav Korotkiy15, Ilya Serdyuk16, Alexander V. Korochantsev8, Michail Yu. Larionov7, Dmitry Glazachev1, Alexander E. Mayer6, Galen Gisler17, Sergei V. Gladkovsky18, Josh Wimpenny9, Matthew E. Sanborn9, Akane Yamakawa9, Kenneth L. Verosub9, Douglas J. Rowland19, Sarah Roeske9, Nicholas W. Botto9, Jon M. Friedrich20,21, Michael E. Zolensky22, Loan Le23,22, Daniel Ross23,22, Karen Ziegler24, Tomoki Nakamura25, Insu Ahn25, Jong Ik Lee26, Qin Zhou27, 28, Xian-Hua Li28, Qiu-Li Li28, Yu Liu28, Guo-Qiang Tang28, Takahiro Hiroi29, Derek Sears3, Ilya A. Weinstein7, Alexander S. Vokhmintsev7, Alexei V. Ishchenko7, Phillipe Schmitt-Kopplin30,31, Norbert Hertkorn30, Keisuke Nagao32, Makiko K. Haba32, Mutsumi Komatsu33, and Takashi Mikouchi34 (The Chelyabinsk Airburst Consortium). 1Institute for Dynamics of Geospheres of the Russian Academy of Sciences, Leninsky Prospect 38, Building 1, Moscow, 119334, Russia. 2SETI Institute, 189 Bernardo Avenue, Mountain View, CA 94043, USA. 3NASA Ames Research Center, Moffett Field, Mail Stop 245-1, CA 94035, USA. 4Institute of Astronomy of the Russian Academy of Sciences, Pyatnitskaya 48, Moscow, 119017, Russia. 5Department of Theoretical Mechanics, South Ural State University, Lenin Avenue 76, Chelyabinsk, 454080, Russia. 6Chelyabinsk State University, Bratyev Kashirinyh Street 129, Chelyabinsk, 454001, Russia. -
Bronze Age Human Communities in the Southern Urals Steppe: Sintashta-Petrovka Social and Subsistence Organization
BRONZE AGE HUMAN COMMUNITIES IN THE SOUTHERN URALS STEPPE: SINTASHTA-PETROVKA SOCIAL AND SUBSISTENCE ORGANIZATION by Igor V. Chechushkov B.A. (History), South Ural State University, 2005 Candidate of Sciences (History), Institute of Archaeology of the Russian Academy of Sciences, 2013 Submitted to the Graduate Faculty of The Dietrich School of Arts and Sciences in partial fulfillment of the requirements for the degree of Doctor of Philosophy University of Pittsburgh 2018 UNIVERSITY OF PITTSBURGH KENNETH P. DIETRICH SCHOOL OF ARTS AND SCIENCES This dissertation was presented by Igor V. Chechushkov It was defended on April 4, 2018 and approved by Dr. Francis Allard, Professor, Department of Anthropology, Indiana University of Pennsylvania Dr. Loukas Barton, Assistant Professor, Department of Anthropology, University of Pittsburgh Dr. Marc Bermann, Associate Professor, Department of Anthropology, University of Pittsburgh Dissertation Advisor: Dr. Robert D. Drennan, Distinguished Professor, Department of Anthropology, University of Pittsburgh ii Copyright © by Igor V. Chechushkov 2018 iii BRONZE AGE HUMAN COMMUNITIES IN THE SOUTHERN URALS STEPPE: SINTASHTA-PETROVKA SOCIAL AND SUBSISTENCE ORGANIZATION Igor V. Chechushkov, Ph.D. University of Pittsburgh, 2018 Why and how exactly social complexity develops through time from small-scale groups to the level of large and complex institutions is an essential social science question. Through studying the Late Bronze Age Sintashta-Petrovka chiefdoms of the southern Urals (cal. 2050–1750 BC), this research aims to contribute to an understanding of variation in the organization of local com- munities in chiefdoms. It set out to document a segment of the Sintashta-Petrovka population not previously recognized in the archaeological record and learn about how this segment of the population related to the rest of the society. -
Assessment of the Renewable Energy Potential in the Republic of Adygeya
Ecologica Montenegrina 14: 143-151 (2017) This journal is available online at: www.biotaxa.org/em Assessment of the Renewable Energy Potential in the Republic of Adygeya SOFYA V. KISELEVA1, LENINA A. KORINEVICH2, SERGEY A. LEBEDEV3,4,5 1Lomonosov Moscow State University, Russia 2Department of Mineral Resources of the Southern Federal District, Geology and Licensing Department of the Republic of Adygeya, Russia 3Geophysics Center of the Russian Academy of Sciences, Russia 4Space Research Institute of the Russian Academy of Sciences, Russia 5Maykop State Technological University, Russia Received 2 September 2017 │ Accepted: 7 October 2017 │ Published online 30 October 2017. Abstract The paper presents assessment of the renewable energy potential in the Republic of Adygeya. The territory of the Republic of Adygeya, thanks to its geographical location, natural characteristics, economic specialization, has significant gross and technical potentials of renewable energy resources. It is the most preferable region for the development of solar energy. The gross potential of solar energy for the territory of the Republic of Adygeya is 1.3 billion TOE (Tons of Oil Equivalent) and the technical potential is 6.4 million TOE for the production of heat and 0.5 billion TOE for electricity production. The gross potential of wind energy in the Republic of Adygeya is 1862 billion kWh/yr, or 633 million TOE per year. The gross potential of hydraulic energy of small rivers is 7–9.65 billion kWh and the technical potential is 2.2–3.15 billion kWh. The analysis of geothermal conditions on the territory close to Maykop confirmed the possibility of the usage of thermal water for the city’s public and industrial heat supply. -
Subject of the Russian Federation)
How to use the Atlas The Atlas has two map sections The Main Section shows the location of Russia’s intact forest landscapes. The Thematic Section shows their tree species composition in two different ways. The legend is placed at the beginning of each set of maps. If you are looking for an area near a town or village Go to the Index on page 153 and find the alphabetical list of settlements by English name. The Cyrillic name is also given along with the map page number and coordinates (latitude and longitude) where it can be found. Capitals of regions and districts (raiony) are listed along with many other settlements, but only in the vicinity of intact forest landscapes. The reader should not expect to see a city like Moscow listed. Villages that are insufficiently known or very small are not listed and appear on the map only as nameless dots. If you are looking for an administrative region Go to the Index on page 185 and find the list of administrative regions. The numbers refer to the map on the inside back cover. Having found the region on this map, the reader will know which index map to use to search further. If you are looking for the big picture Go to the overview map on page 35. This map shows all of Russia’s Intact Forest Landscapes, along with the borders and Roman numerals of the five index maps. If you are looking for a certain part of Russia Find the appropriate index map. These show the borders of the detailed maps for different parts of the country. -
Seismic Characterization of the Chelyabinsk Meteords Terminal
○E Seismic Characterization of the Chelyabinsk Meteor’s Terminal Explosion by Sebastian Heimann, Álvaro González, Rongjiang Wang, Simone Cesca, and Torsten Dahm Online Material: Figures of waveform fit, apparent source time explosion (airburst) of the meteor southwest of Chelyabinsk functions, and video of impact of shock wave at factory. city, and had an equivalent moment magnitude of 3.60. This implies that this is the second largest meteor explosion ever INTRODUCTION seismically recorded, only surpassed by the 1908 Tunguska event (Ben-Menahem, 1975). Impacts with our planet cause seismic shaking by a variety of mechanisms. Catastrophic ground motion, even at antipodal DESCRIPTION OF THE GROUND SHAKING distances, can be generated by the extremely infrequent, hyper- sonic collisions with large asteroids or comets (Meschede et al., The seismic ground shaking caused by the Chelyabinsk meteor 2011). Fortunately, the atmosphere effectively shields the was exceptionally well registered at planetary scale. It can be smaller (and far more common) meteoroids, greatly reducing observed in more than 70 digital, broadband seismic recordings their initial kinetic energy at high altitude, causing them to from stations located at least up to 4000 km away, sampling slow down, break up, and even vaporize, producing a meteor most azimuths. At further distances, the identification of the (Ceplecha and Revelle, 2005). In most instances, the ground meteor signal is hampered by the coincidental interference shaking is triggered by the atmospheric shock wave of a meteor, with wave arrivals from a tectonic earthquake with magnitude M not by the impact of the surviving meteorites (Edwards w 5.7, originated in Tonga at 03:02:23 UTC.