Academic literature on the topic 'Динамічний стан'
Create a spot-on reference in APA, MLA, Chicago, Harvard, and other styles
Consult the lists of relevant articles, books, theses, conference reports, and other scholarly sources on the topic 'Динамічний стан.'
Next to every source in the list of references, there is an 'Add to bibliography' button. Press on it, and we will generate automatically the bibliographic reference to the chosen work in the citation style you need: APA, MLA, Harvard, Chicago, Vancouver, etc.
You can also download the full text of the academic publication as pdf and read online its abstract whenever available in the metadata.
Journal articles on the topic "Динамічний стан"
Мисилюк, В. С. "ОЦІНЮВАННЯ ІННОВАЦІЙНОСТІ УКРАЇНСЬКИХ ПІДПРИЄМСТВ В КОНТЕКСТІ ДОСЛІДЖЕННЯ СТАНУ ТА ПРОБЛЕМ РОЗВИТКУ КОРПОРАТИВНОГО ПІДПРИЄМНИЦТВА." Підприємництво і торгівля, no. 26 (July 2, 2020): 60–67. http://dx.doi.org/10.36477/2522-1256-2020-26-09.
Full textБАРАБАШ, М. С., Б. Ю. ПИСАРЕВСЬКИЙ, and А. В. ПІКУЛЬ. "ЧИСЕЛЬНО-АНАЛІТИЧНИЙ МЕТОДОЛОГІЧНИЙ ПІДХІД ДО МОДЕЛЮВАННЯ МАТЕРІАЛЬНОГО ДЕМПФУВАННЯ." Наука та будівництво 21, no. 3 (September 26, 2019): 14–20. http://dx.doi.org/10.33644/scienceandconstruction.v21i3.108.
Full textСитник, Наталія, and Аміна Шутко. "СТАН БОРГОВОЇ БЕЗПЕКИ УКРАЇНИ В УМОВАХ ЕКОНОМІЧНОЇ ТА ПОЛІТИЧНОЇ НЕСТАБІЛЬНОСТІ." Молодий вчений, no. 4 (104) (April 30, 2022): 105–9. http://dx.doi.org/10.32839/2304-5809/2022-4-104-22.
Full textІмас, Євгеній. "Кіберспорт як соціально-спортивне явище в умовах сучасного розвитку інформаційного суспільства." Теорія і методика фізичного виховання і спорту, no. 4 (May 20, 2021): 13–17. http://dx.doi.org/10.32652/tmfvs.2020.4.13-17.
Full textVaskovskyi, М. І. "Динамічний скрут підземного трубопроводу від раптового повоpоту фрагмента основи." Oil and Gas Power Engineering, no. 1(33) (September 3, 2020): 66–72. http://dx.doi.org/10.31471/1993-9868-2020-1(33)-66-72.
Full textKlymnyuk, S. I., G. I. Mуkhailyshyn, and L. M. Malanchuk. "МІКРОБІОЛОГІЧНІ ОСОБЛИВОСТІ БАКТЕРІАЛЬНИХ ВАГІНОЗІВ У ЖІНОК РІЗНИХ ВІКОВИХ КАТЕГОРІЙ ТА ШЛЯХИ ЇХ МІКРОБІОЛОГІЧНОЇ КОРЕКЦІЇ." Здобутки клінічної і експериментальної медицини, no. 3 (June 29, 2019): 21–31. http://dx.doi.org/10.11603/1811-2471.2019.v.i3.10258.
Full textМихайлов, Віктор. "ПОНЯТТЯ «БЕЗПЕКА» І «ЦИВІЛЬНА БЕЗПЕКА» У МІЖДИСЦИПЛІНАРНОМУ НАУКОВОМУ ДИСКУРСІ." ОСВІТА ДОРОСЛИХ: ТЕОРІЯ, ДОСВІД, ПЕРСПЕКТИВИ 17, no. 1 (December 31, 2020): 77–89. http://dx.doi.org/10.35387/od.1(17).2020.77-89.
Full textDivizinyuk, Mykhailo, Volodymyr Mirnenko, Nina Rashkevich, and Olga Shevchenko. "Розробка лабораторно-експериментальної установки для перевірки достовірності математичної моделі та розробленої на її основі методики попередження надзвичайних ситуацій на полігонах твердих побутових відходів." Journal of Scientific Papers "Social development and Security" 10, no. 5 (October 31, 2020): 15–27. http://dx.doi.org/10.33445/sds.2020.10.5.2.
Full textФедорчук, Світлана, Вікторія Кравченко, Крістіан Фібах, Олена Лисенко, and Оксана Шинкарук. "Стан нейродинамічних функцій і динамічна м’язова витривалість кваліфікованих спортсменів- веслувальників." Спортивна медицина, фізична терапія та ерготерапія, no. 1 (September 18, 2021): 128–33. http://dx.doi.org/10.32652/spmed.2021.1.128-133.
Full textФедорчук, С., О. Шльонська, О. Борисова, І. Когут, В. Маринич, Є. Петрушевський, and М. Ф.К.Хаммуді. "Стан психофізіологічних функцій і динамічна м’язова витривалість у спортсменок в ігрових видах спорту." Спортивна медицина, фізична терапія та ерготерапія, no. 2 (December 20, 2021): 35–40. http://dx.doi.org/10.32652/spmed.2021.2.35-40.
Full textDissertations / Theses on the topic "Динамічний стан"
Мартиненко, Геннадій Юрійович, and О. М. Марусенко. "Розрахунково-експериментальна методика визначення демпфуючих властивостей роторних систем." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/45346.
Full textОхота, Богдан Леонідович. "Засоби динамічного розподілу ресурсів для розподіленої обробки потоків." Бакалаврська робота, Хмельницький національний університет, 2021. http://elar.khnu.km.ua/jspui/handle/123456789/10431.
Full textКасіян, Ю. А., and М. С. Барабаш. "НАПРУЖЕНО ДЕФОРМОВАНИЙ СТАН ФУНДАМЕНТІВ ПРИ ДИНАМІЧНИХ НАВАНТАЖЕННЯХ." Thesis, НАУ, 2015. http://er.nau.edu.ua/handle/NAU/17026.
Full textЯнчик, Галина Володимирівна, Галина Владимировна Янчик, Halyna Volodymyrivna Yanchyk, and С. А. Галинська. "Функціонально-динамічний підхід до оцінки стану вегетативної нервової системи." Thesis, Видавництво СумДУ, 2004. http://essuir.sumdu.edu.ua/handle/123456789/8581.
Full textКоржов, Ігор Михайлович. "Пристрій контролю та діагностування стану промислових динамічних об’єктів." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/43360.
Full textThe thesis is submitted to obtain a scientific degree of Doctor of Philosophy, specialty 152 – Metrology and information-measuring technique (15 – Automation and instrument-making). – National Technical University “Kharkiv Polytechnic Institute”, Kharkiv, 2019. The object of research is the process of conducting analysis in primary and secondary system transformations of information, which creates a problem situation with the improvement of hardware, algorithmic and software devices for control and diagnostics of complex industrial objects. The subject of research is a device for control and diagnostics of the state industrial dynamic objects. The scientific and practical task of increasing the efficiency of devices for control and diagnostics of the state of complex industrial objects with uncertain dynamic properties is solved in the dissertation. The solution is found using both classical and fundamentally new modern methods of probability theory, random processes, multivariate statistical analysis, information theory of measurement and control. The introduction substantiates the relevance of research tasks showing connection between the work and scientific programs, plans, themes, the scientific novelty is stated and practical value of the obtained results is formulated. The first chapter deals with analytical review and evaluation of questions in the field of control and diagnostics of the state of industrial objects. The object of diagnostics is selected; its structure, technical characteristics and area of use are considered. The analysis of methodical, algorithmic and equipment-specific devices for measuring temperature and mechanical vibration is carried out. A review of the existing devices for control and diagnostics of the state of complex industrial objects is made, their technical and economic characteristics are analyzed, and the optimal structure of the control and diagnostic system is selected. Some aspects of hardware, software and algorithmic programming when creating devices for control and diagnostics of the state of complex industrial objects are emphasized. The areas of research are selected; the main tasks of the dissertation are stated. The second chapter studies probabilistic models of parametrization of spectral changes of stationary measurement signals. The formalization of the probabilistic properties of non-stationary random signals is made, the correlation models of the spectral non-stationary of these signals are investigated, the dispersion analysis of frequency and time models of auto-coherence is carried out, the sensitivity of the correlation spectral model for the auto-coherence indicator of the multidimensional thermodynamic process is estimated, the discriminating properties of the indicators of auto-coherence are assessed regarding the classification of vibrational processes, diagnostic properties of components of the auto-coherence index are investigated, the choice of indicators for non-stationary control of dynamic processes is conducted. The research results have allowed obtaining a number of scientific results: - the theory of auto-coherence for spectrally non-stationary measurement signals has been developed. The conditions of the choice of the number of scales and displacements are determined regarding the estimation of the auto-coherence coefficients for monitoring the stationary disturbances of the measuring signal; - the conditions of calibration of auto-coherence index, which correspond to the absence of stationary violation, are obtained. A probabilistic model of the autocoherence index taking into account the minimum value (scale) of the spectral wavelet transform is developed; - the possibility of dispersion expansion of the basic auto-coherence index in paired independent components is shown, allowing to receive independent information on stationary violation, taking into account functional and random changes of the spectrum; - the example of thermal dynamic processes shows the efficiency of the developed autocorrelation index for controlling the dynamic properties of inertial multidimensional industrial objects. Also the possibility of automatic correction of the measurement error of temperature, if you control the whole heat process, and not its individual values, is shown; - the example of vibration signals shows the possibility of a qualitative classification of technical states, as well as quantitative classification of individual frequency-time components of the auto-coherence index is shown. It is proved that the best diagnostic properties are characterized by random (noise) components of the auto-coherence index. The third chapter presents studies on the diagnostic properties of autocoherence indices with restrictions on the measurement information volume. The general task of functional diagnostics of dynamic industrial objects is formulated, the model of parametric discrimination is chosen, the influence of the study sample size on the average risk of diagnosing is investigated, and mathematical and computer models of optimization of the space of informative signs by the criterion of maximum likelihood were created and their research was conducted. The researches in this chapter have allowed obtaining the following results: - experimental studies of the auto-coherence indices of vibration signals show that it is possible to use a linear solving function for controlling and diagnosing the technical state of vibrational objects, for which it is possible to use dispersion tables of auto-coherence indices and a normalized covariance matrix, which allow to generate, by multiplication, a total covariance matrix; - equations for the average risk and diagnostics probability are obtained allowing to model the influence of the training sample volume and informative features number on the performance indicators of the technical condition; - the existence of minimal extreme values of average risk for thermal and vibrational objects has been proved, allowing to use average risk as a target function for optimizing informative features space; - the complex influence of three parameters (geometric distance between diagnosed states, number of informative parameters, training sample volume) on the probability of control and diagnostics of the technical state of both thermal and vibration objects is studied. Such research has proven the ability to form an optimal, maximum control probability, system of informational features. The fourth chapter is devoted to the development of algorithmic and software device for monitoring and diagnosing the state of industrial objects. The methods of primary and secondary statistical transformations based on regression, spectral, dispersion and covariance analyses of the control and diagnostic device, have allowed to form the structure and the principle of algorithmic support functioning while limiting the volumes of measuring information by the diagnosed functional states. In this chapter the software aimed at implementation of the developed algorithms is chosen, programs fragments of devices for control and diagnostics of the state of industrial objects on the platform LabView are developed. According to researches of this chapter the following results are obtained: - the algorithmic structure of control devices and diagnostics of dynamic objects is developed, which consists of primary and secondary statistical transformation and contains the implementation of sampling processes of measurement signals, discrete analog wavelet transformation, differentiation and integration procedures; - an adaptive wavelet transform process with a flexible choice of the Gaussian parent wavelet is implemented, which minimizes the errors of control and diagnostics. - computer components of algorithmic and software procedures of primary and secondary statistical transformation in the synthesis of computerized diagnostic systems are formed, simulation modeling is conducted, the effects of destabilizing factors when controlling parameters of dynamic objects nodes are analyzed and their states are diagnosed; - the device software for controlling and diagnosing the state of industrial objects on the LabView platform with the use of object-oriented programming language, which allows to carry out the necessary control procedures in batch mode and in real-time, is developed.The fifth chapter presents engineering applications for the control and diagnostics of complex industrial objects. The research is provided for the development and patenting of primary transformers, selecting and patenting the structure of measuring channels of primary transformers, the development and creation of electronic blocks of primary and secondary transformation of information. The method of calibration of vibration test stands for metrological provision of primary vibration transducers is proposed, the verification of qualification of calibration laboratories in Ukraine and the influence of metrological support on the creation of systems of control and diagnosis of complex industrial objects are considered. According to researches of this chapter the following results are obtained: - primary temperature transducers for monitoring infra-low frequency processes in the investigated industrial object when evaluating thermal regimes, as well as primary transducers of mechanical vibration for monitoring high-frequency processes when evaluating rolling bearings condition of gear reducers are developed and patented; - on the basis of the Arduino microcontroller, a device for monitoring and diagnosing the condition of the extruder heating zones for manufacturing thermoplastics and the rolling bearings condition of gear reducers is created; - metrological researches of devices for measurement of infra-low frequency and high-frequency measuring signals are conducted, the vibration testing devices are implemented, and calibration methods of these devices are developed. - prospects for development of the theory and practice of control and diagnostics of processes characterized by different frequency indices in the specialized metrological laboratories are presented.
Башинський, Ярослав Володимирович, Ярослав Владимирович Башинский, and Yaroslav Volodymyrovych Bashynskyi. "Вплив динамічних навантажень метрополітену на напружено-деформований стан конструкцій будівель та споруд." Thesis, Національний Авіаційний Університет, 2019. http://er.nau.edu.ua/handle/NAU/40445.
Full textЦель диссертационной работы заключается в определении напряженно-деформированного состояния ответственных конструкций зданий и сооружений при воздействии вибродинамических нагрузок от метрополитена, которые могут привести к частичному или полному разрушению несущих конструкций здания. Автором предложено: − при новом строительстве гражданских зданий в зоне влияния метрополитена рекомендуется использовать методику расчета на вибродинамические нагрузки с учетом фактора времени, а также проводить мероприятия по защите конструкций или зданий в виде демпфирующих устройств, или использовать демпфирующие свойства почвы; − при проведении реконструкции зданий, рекомендуется устанавливать защитные экраны в почве для предотвращения негативного влияния метрополитена на несущие конструкции зданий и сооружений.
The purpose of the thesis is to determine the stress-strain state of responsible constructions of buildings under the vibrodynamic influences from the subway, that can lead to partial or complete destruction of load-bearing structures. On the basis of the experimental and theoretical researches, the scientific problem was solved. It consists in the development of methodology for estimation vibrodynamic influence from the subway, that is used for the retrospective nonlinear analysis of the building to which this influence applies. The practical value of the work consists in: take into account the factors that can influence the formation of stress-strain state of load-bearing structures under vibrodynamic impacts; provide recommendations for modeling the process of subway impact on load-bearing structures for future consideration in the design. Forecast of stress-strain state in process of designing and reconstructing of buildings allows us to estimate the possible adaptability of buildings and structures to vibrodynamic effects, in addition to traditional methods for determination of the constructive safety by the boundary states. The results of the work were used to provide recommendations in the buildings design in zone of negative impact from subway vibration on bearing structures and for the development of basic methods for protection of structures. The author suggested: − for new construction of civil buildings in zone of influence from the subway it is recommended: to use the methodology for calculating vibrodynamic loads with taking into account the time factor; to protect load-bearing structures of buildings with damping devices, or to use the damping properties of the soil; − for buildings under reconstruction, it is recommended to install protective shields in the soil to prevent the negative impact from the subway on the load-bearing structures of buildings.
Сергієнко, Олена Андріанівна, and Ольга Євгенівна Гапоненко. "Дослідження стану внутрішнього та зовнішнього середовища комерційного банку: системно-динамічний дворівневий аспект." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/42714.
Full textМисловська, М. С. "Розрахунок статичних і динамічних характеристик модифікованої конструкції пристрою автоматичного врівноважуючого пристрою." Master's thesis, Сумський державний університет, 2018. http://essuir.sumdu.edu.ua/handle/123456789/71740.
Full textЗалога, Вільям Олександрович, Вильям Александрович Залога, Viliam Oleksandrovych Zaloha, Юрій Володимирович Шаповал, Юрий Владимирович Шаповал, and Yurii Volodymyrovych Shapoval. "Вплив стану динамічної системи на шорсткість обробленої поверхні при точінні." Thesis, Сумський державний університет, 2016. http://essuir.sumdu.edu.ua/handle/123456789/45860.
Full textДем`яненко, Марина Миколаївна, Марина Николаевна Демьяненко, and Maryna Mykolaivna Demianenko. "Гідродинаміка та гідроаеропружність динамічних сепараційних пристроїв." Thesis, Сумський державний університет, 2021. https://essuir.sumdu.edu.ua/handle/123456789/86273.
Full textIn this regard, an important scientific and technical task is an intensification of the separation processes of heterogeneous multicomponent mixtures. The development of new, as well as improvement of existing separation methods is mandatory, since the most of the existing separation methods, such as settling, filtration and centrifugation, prevent obtaining a purified product that would comply to modern requirements, norms, and quality standards. An analysis of the gas-liquid separation methods and corresponding equipment design that was based on a literature review was conducted. It was concluded that today, from the perspective of specific energy consumption and separation efficiency, the most optimal separation devices are the devices with inertial separation force as the main operating force. Louver separation devices are such as widely used. The features of the gas-liquid separation process, the separation devices' design features, and the calculation methods were analyzed. Their main advantages and disadvantages, as well as ways to avoid them, are indicated. The new gas-liquid separation method by using dynamic separation devices is proposed based on conducted analysis. These devices allow the adjustment of the hydraulic resistance. Since the operation of these dynamic separation devices, the flow causes deformation of the elastic baffle elements, which in turn causes flow parameters to change, it is necessary to solve the hydroaeroelasticity problem. In this regard, the mathematical modeling methods of the process of hydroaeroelasticy interaction of a gas or gas-liquid flow with elastic elements were analyzed. Eventually, it was concluded that it is expedient to carry out a parameters identification of the mathematical models of hydroaeroelastic phenomena accompanying the heterogeneous systems separation processes by the vibration inertial separation method. The vibration-inertial separation method of the heterogeneous mixtures is currently almost not explored and widespread devices designs or equipment designs do not exist. In this regard, new designs of dynamic separation devices were developed and protected by Ukraine patents on a useful model. Operation principle and the physical processes essence, which take place in those devices are described. One of these processes is the hydroaeroelasticy interaction between gas-liquid flow and elastic elements of dynamic separation devices. Based on the operation peculiarities of dynamic separation devices, a general methodology for conducting dissertation research has been developed. The technique consists of successive stages, in turn, they contain physical and numerical experiments. That methodology allows determining hydrodynamic parameters and hydroaeroelastic characteristics, such as critical speeds leading to the static and dynamic stability loss of elastic elements, the vibrations frequencies, and amplitudes, as well as studying the effect of the mechanical vibrations on the gas-liquid flow. The experimental installation for physical research that considers the theory of similarity was developed. That installation makes it possible to recreate conditions close to the real operating modes of separation equipment and dynamic separation devices, namely, the gas-liquid mixture flow with speed range from 2 to 12 m/s (Re: 17,6•103 - 105,9•103), as well as to conduct experimental samples of the tests of the elastic elements of those devices, to determine their features operation. To solve the hydroaeroelasticity problems by numerical methods, the ANSYS software package was used, which makes it possible to solve related problems of fluid mechanics and a deformable body. In this software, using the System Coupling module, it is possible to combine the Fluent Flow and Transient Structural modules used to study the fluid flow hydrodynamic and the stress-strain state of structures, respectively. During theoretical studies of the operation process of dynamic separation devices, mathematical models of the gas-liquid flow and the interaction of the elastic elements of these devices were developed. The finite element method and its main dependencies were used to define the deformations of elastic elements caused by the flow. From the previously-deformed state static calculation, dependencies were obtained to determine the elastic elements' maximum deformations of the dynamic separation devices. Based on the previously-deformed state calculation of the plates, a stationary calculation of the hydroaeroelasticy interaction between gas-liquid flow and elastic baffle elements was carried out using the finite element method, namely, matrix equations. In these equations, the stiffness matrix of the elastic baffle element is determined using numerical and physical experiments. The vector of generalized nodal forces, which includes the stationary component of generalized external forces, is also determined using numerical and physical experiments. The critical divergence speed was determined, and the critical flutter speed was determined using the complex amplitudes method. The mathematical model of the hydroaeroelastic interaction between flow with sinusoidal elastic elements has been developed. The results of solving this model allow determining such characteristics as the channel curvature shape in amplitude values and the channel elongation under the hydrodynamic pressure action. During the process of gas-liquid stream separation, the liquid film draining process is occurring, which significantly affects the separation efficiency. By introducing simplifications and assumptions into the Navier-Stokes equations system, which are closed by the continuity equations, the dependences of the three-dimensional liquid film averaged thickness on the size of the settling surface and the velocity averaged values were obtained. The deviation angle of the velocity vector from the vertical direction is also determined. As a result of the performed numerical and physical experiments, the main characteristics and operating modes of dynamic separation devices were determined. Thus, during the physical modeling of the flow with elastic elements hydroaeroelastic interaction, natural frequencies and vibration amplitudes were determined at different flow velocities (2,6 – 11,6 m/s, Re: 22,9•103 - 102,4•103) and various element thicknesses (0,4•10-3 – 0,6•10-3 m). The operating modes of elastic elements, which arise at different flow rates and differ in oscillations frequency and amplitude have been determined. Numerical experiments made it possible to determine the maximum deformations and forces applied to the surface of the elastic element from the flow side. Based on the simulation results, the derived dependencies that allow calculating the range of fluctuations on the flow rate, the adequacy of which was assessed using the Fisher criterion. The data obtained in the course of the numerical experiment made it possible to identify the unknown parameters of the developed mathematical model of the interaction of the flow with a sinusoidal elastic element. As a result of the obtained results analysis of the theoretical and experimental studies, an engineering methodology for calculating dynamic separation devices was developed. The methodology includes sequential stages of technological and constructive calculations and makes it possible to determine the main hydrodynamic parameters and hydroaeroelastic characteristics of the gas-liquid flow and elastic baffle elements interaction process. Based on the devices' design features, given are recommendations for their rational layout in multiphase separators. Their design-technological classification has been developed, which allows simplifying the process of design, manufacture, and operation of dynamic separation devices. In the manufacturing process of the experimental installation and elastic elements, as well as conducting physical studies of the hydroaeroelastic interaction process, practical recommendations for layout, coding, and assembly were developed. These recommendations will allow reproduction of the operating parameters of dynamic separation devices and ensure the efficient passing of the working process.
Conference papers on the topic "Динамічний стан"
Софійський, К., and В. Зберовський. "Основні напрями досліджень стану системи «вугілля – газ» при динамічних режимах нагнітання рідини." In Ukrainian School of Mining Engineering. Dnipro University of Technology, 2019. http://dx.doi.org/10.33271/usme13.039.
Full textReports on the topic "Динамічний стан"
Словак, Катерина Іванівна, Сергій Олексійович Семеріков, and Юрій Васильович Триус. Мобільні математичні середовища: сучасний стан та перспективи розвитку. НПУ імені М.П. Драгоманова, 2012. http://dx.doi.org/10.31812/0564/962.
Full textСавосько, Василь Миколайович, and Наталія Вікторівна Товстоляк. Розвиток і сучасний стан садів та парків колишніх залізних рудників Криворіжжя. Видавництво ДНУ, 2018. http://dx.doi.org/10.31812/123456789/3634.
Full textМантуленко, Світлана Вікторівна, and Ольга Володимирівна Бондаренко. Структурно-динамічні зміни адміністративно-територіального поділу Дніпропетровської області: історико-географічний аспект. Чернівецький національний університет, 2017. http://dx.doi.org/10.31812/0564/1771.
Full textСоловйов, Володимир Миколайович, Д. М. Чабаненко, and І. О. Стратійчук. Використання масштабно-залежного показника Ляпунова у якості міри складності. ЧІБС УБС НБУ, October 2012. http://dx.doi.org/10.31812/0564/1197.
Full textПерерва, Вікторія Вікторівна. Використання засобів електронного навчання у професійній підготовці майбутнього вчителя біології. Дніпро, 2019. http://dx.doi.org/10.31812/123456789/4231.
Full textУдріс, Ірина Миколаївна, and Наталя Сергіївна Удріс-Бородавко. Модний образ у фешн-ілюстрації Ар-нуво та Ар-деко: сюжет «жінка і авто». ЛНАМ, 2018. http://dx.doi.org/10.31812/123456789/5100.
Full textСоловйов, В. М. Мультиплексні мережі у моделюванні соціально-економічних систем. ЧДТУ, May 2016. http://dx.doi.org/10.31812/0564/1285.
Full textСоловйов, Володимир Миколайович. Мережні міри складності соціально-економічних систем. ЧНУ ім. Б. Хмельницького, 2015. http://dx.doi.org/10.31812/0564/1158.
Full text