Academic literature on the topic 'Моделювання фізичне'
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Journal articles on the topic "Моделювання фізичне"
Міцик, А. В. "Розвиток вібраційної оздоблювально-зачищувальної обробки в середовищі вільних абразивних гранул." ВІСНИК СХІДНОУКРАЇНСЬКОГО НАЦІОНАЛЬНОГО УНІВЕРСИТЕТУ імені Володимира Даля, no. 1(265) (March 16, 2021): 68–74. http://dx.doi.org/10.33216/1998-7927-2021-265-1-68-74.
Full textГоловач, Юрій Васильович. "Ціле є більшим за суму його частин." Visnik Nacional noi academii nauk Ukrai ni, no. 12 (December 15, 2021): 18–26. http://dx.doi.org/10.15407/visn2021.12.018.
Full textКруцевич, Тетяна, Оксана Марченко, and Марина Дєдух. "Сучасні підходи до формування індивідуальної фізичної культури учнівської молоді в процесі фізичного виховання." Теорія і методика фізичного виховання і спорту, no. 2 (January 3, 2022): 66–75. http://dx.doi.org/10.32652/tmfvs.2021.2.66-75.
Full textМарченко, Оксана, Людмила Цикало, Марія Бричук, and Наталія Симоненко. "ГЕНДЕРНА ПРОБЛЕМАТИКА У ФІЗИЧНОМУ ВИХОВАННІ. ІСТОРИКО-ФІЛОСОФСЬКИЙ АНАЛІЗ." Слобожанський науково-спортивний вісник 6, no. 80 (December 21, 2020): 22–31. http://dx.doi.org/10.15391/snsv.2020-6.004.
Full textБялік, Гаррі Абрамович, Станіслав Іванович Адамчук, Владилен Валерійович Наумик, and Ричард Едуардович Мохнач. "ФІЗИЧНЕ МОДЕЛЮВАННЯ ВПЛИВУ НЕМЕТАЛЕВИХ ВКРАПЛЕНЬ НА РУЙНАЦІЮ СТАЛІ." Математичне моделювання, no. 1(38) (March 29, 2018): 156–59. http://dx.doi.org/10.31319/2519-8106.1(38)2018.129643.
Full textКруцевич, Тетяна, and Оксана Марченко. "Сучасний стан фізичного виховання учнівської молоді. Гендерний аспект." Теорія і методика фізичного виховання і спорту, no. 4 (May 4, 2022): 30–36. http://dx.doi.org/10.32652/tmfvs.2021.4.30-36.
Full textБурау, Надія Іванівна, and Ольга Ярославівна Паздрій. "Фізичне моделювання та діагностика попадання сторонніх предметів в обертову систему." Aerospace technic and technology, no. 4sup1 (August 27, 2021): 62–67. http://dx.doi.org/10.32620/aktt.2021.4sup1.09.
Full textБабаченко, Бабаченко Олександр, Ростислав Подольський, Катерина Дьоміна, Анна Кононенко, and Олена Сафронова. "ФІЗИЧНЕ І МАТЕМАТИЧНЕ МОДЕЛЮВАННЯ ГАРЯЧОЇ ПЛАСТИЧНОЇ ДЕФОРМАЦІЇ ЛАБОРАТОРНИХ ЗЛИТКІВ СТАЛЕЙ ДЛЯ ОСЕЙ." Modern Problems of Metalurgy, no. 24 (March 28, 2021): 12–20. http://dx.doi.org/10.34185/1991-7848.2021.01.02.
Full textFomenko, V. V. "EDUCATIONAL PHYSICAL MODELING AS A CONCEPTUAL BASIS OF PHYSICAL EDUCATION FOR NON-PHYSICAL SPECIALTIES." Collection of scientific papers of Kamianets-Podilskyi National Ivan Ohiienko University. Pedagogical series 1, no. 25 (December 10, 2019): 153–57. http://dx.doi.org/10.32626/2307-4507.2019-25.153-157.
Full textГорбик, Юрий. "Моделювання випробувань автомобіля на паливну економічність на дорозі і на стенді з біговими барабанами." Науковий жарнал «Технічний сервіс агропромислового лісового та транспортного комплексів», no. 21 (December 7, 2020): 156–63. http://dx.doi.org/10.37700/ts.2020.21.156-163.
Full textDissertations / Theses on the topic "Моделювання фізичне"
Козлов, Я. Р. "Дослідження властивостей напружень в рухомій рідині." Master's thesis, Сумський державний університет, 2020. https://essuir.sumdu.edu.ua/handle/123456789/82136.
Full textЄвсеєнко, Олег Миколайович. "Моделі та методи енергозберігаючого керування розподіленими тепловими об'єктами з використанням систем з прогнозуючим фільтром." Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/33815.
Full textThesis for granting the Degree of Candidate of Technical sciences (PhD degree) in specialty 05.13.03 «Management systems and processes» (151 – Automation and computer-integrated technologies) National Technical University «Kharkiv Polytechnic Institute» of Ministry of Education and Science of Ukraine, Kharkiv, 2018. The thesis is devoted to the analysis of distributed thermal objects control using prediction systems to determine their disadvantages and development of new energy-efficient heat control methods for administrative and office buildings. The problems of thermal objects energy-saving control development are considered. Distributed thermal objects are analyzed. The author suggests a classification of thermal objects according to the number of used energy sources, structure, working mode of the heating equipment. Existing synthesis methods of control systems for distributed thermal objects and thermal energy control systems are investigated. The main factors affecting temperature in premises are considered. The regulators with prediction are analyzed. The existing tendencies in the development of energy saving control methods applied in heat supply systems are explored. It has been found that existing temperature controllers with prediction maintain temperature in the premises in the range from +19 °C to +22 °C with accuracy ± 1 °C. It has also been demonstrated that regulators based on weather-dependent, PID-, on–off control laws reduce energy consumption by 15%, using regulators with prediction reduces power consumption by 25-35%. Perspective of energy-saving methods control of distributed thermal objects with prediction is substantiated. The author has carried out an analysis of the behavior and properties of distributed thermal control objects. The requirements for the synthesis of energy-saving thermal objects control laws are formulated. Feasible region, initial and boundary conditions at the initial stage of research, modeling of the object for finding an effective solution have been determined. Prerequisites and constraints for the development of methods of energy saving management are theoretically justified. A classification of distributed thermal objects regulators, depending on the ratio of the transport delay time to the time of transient processes, has been carried out. The author developed an algorithm for solving the problem of calculation the heat distribution inside an office premises. A model of the room in the ANSYS environment is created. The method of dividing the structure of the premises into n objects with lumped parameters with the same properties of space is developed. The basic problems of distributed thermal objects control are considered. The control method of thermal object with distributed parameters using a step function have been further developed. Formulas that allow to refuse from an object with lumped parameters control to an object with distributed parameters control has been developed. The author developed a method of thermal object with distributed parameters control using pulse-width modulation with prediction filter, where the target function vector is formed from the control error at the current time and the predicted mismatch error, that is defined as the difference between the given temperature and the temperature of the regulator model. A microcontroller system of heat supply control, that consists of a subsystem of getting information, a subsystem of issuing control influence, central controller and control panel have been developed. It has been established that in order to identify the refusal of the subsystem of information gathering and the issuance of controlling influence, they must be closed in the circle. The algorithms of diagnosing the data linesї efficiency, controlling the temperature of the object and recording the transient characteristics of the control object are developed. It is established that the implementation of control influence in the form of a stepped function can be carried out with the help of a parallel connection of heaters of various power. It is suggested to control the temperature of a thermal object with pulse-width modulation, in which the control element operates in key mode due to the disadvantages of implementing a control effect in the form of a stepped function. On the basis of measurements on a real object, a complete three-dimensional model of the room taking into account external contours and exact internal geometry was constructed. Volumetric netting of hexahedrons was built. Boundary conditions taking into account the heating system, ventilation system, heat conductivity of walls, the temperature of the outside air were specified. Transient curves of influence on the room of external temperature, ventilation with air temperature equal to 20 °C, a 1.75 kW power heater temperature were obtained. A program macro (udf file) on C language in the ANSYS environment for the experiment was created. The conditions for the simulation: the external temperature varies from minus 7 °C to plus 5 °C, depending on the time of day, the initial air temperature in the room +18 °C, the speed of intake and exhaust ventilation 0.018 kg/s, the temperature of the intake ventilation + 20 °C were specified. An experiment to maintain a setting daily temperature mode in the room: from 00:00 to 08:00 + 10 °С, from 9:00 to 17:00 + 18 °С, from 18:00 to 00:00 + 15 ° С was conducted. Method of PWM regulation with prediction to the most common: twoposition regulation with hysteresis ± 2 ° C, two-position regulation without hysteresis and PID-regulation were compared. According to the simulation results, the PWM control with prediction the highest accuracy was exhibited. The least effective method was two-position regulation with hysteresis equal to ± 2 °C, which due to the inertia of the thermal object exceeded the given temperature in the room. The total time of the heater operation during the day is obtained. The methods of temperature control with the PID regulation and PWM with prediction control roughly the same time of operation of the heater (39.89% vs. 39.24%) were showed. According to the monthly cost of 1 kW of electricity, the total operating time of t he heater, heater power for the heating costs for rooms with one-shift operating mode without a weekend for day and month modes were calculated. It has been established that the refusal of continuous operation of the heater and using regulator with prediction will reduce the operating time of the heating equipment by 56%: from 24 to 10.5 h. According to the simulation results, the temperature modes of the premises that give the source information in which points of the room it is necessary to place the temperature sensors are obtained. For experimental studies, a hollow steel rod with dimensions: length 35.5 cm, outer diameter 3.2 cm, internal diameter 2.8 cm, wound on one end with a heater length of 8.2 cm from the beginning of the tube with a resistance of 19 Ohms, and sterilizer GP-80 were selected. For a real experiment, an experimental installation based on the ATMega16 microcontroller, sensors DS18B20, microchip memory AT24C256B-PU was used. A program of the object temperature control on the ATMega16 microcontroller is written. For each of the selected control objects transition curves were obtained and experiments of maintaining the specified temperature conditions were carried out. The correctness of the theoretical prerequisites for the development of the hardware and software complex was confirmed by the results of the research. The problem of finding the optimal ratio of heater power parameters and forecasting interval using the least squares method is solved. It was found that to reduce the control error, the control impulse pulse should be made at the beginning of the program control interval, taking into account the amount of overshoot. The results of scientific research were introduced into the practice of designing systems for automatic control of thermal objects, technological processes of the enterprise VO OWEN (Kharkiv). The materials of the dissertation are used in lecture courses "Theory of automatic control" and "Software tools of control systems" at the department automation and control systems NTU "KhPI".
Євсеєнко, Олег Миколайович. "Моделі та методи енергозберігаючого керування розподіленими тепловими об'єктами з використанням систем з прогнозуючим фільтром." Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/33812.
Full textThe thesis on Candidate Degree in Technical Sciences: Specialty 05.13.03 – management systems and processes. – National Technical University «Kharkov Polytechnic Institute», Kharkov, 2018. The thesis is devoted to the development and improvement of energy-efficient control methods of distributed thermal objects for using in heat supply systems. The thesis proposes a control method of thermal objects with distributed parameters with prediction filter, where the PWM signal is used as the control action. The method of controlling thermal objects with distributed parameters with prediction using the step function as control effect has been further developed. The paper presents a formalized description of predictive control methods that allow to control temperature of an object with distributed parameters instead of object with lumped parameters temperature control at n points with p heaters. A simulation room model based on measurements of the room and the finite element method in the ANSYS environment was constructed. Using developed predictive controller, experiments of maintaining the assigned daily temperature mode were carried out. The developed method of PWM predictive control with continuous control, two-position, PID-control was compared. Experiments of maintaining the set temperature of the steel hollow rod and the sterilizer chamber using the developed software and hardware complex, based on the microcontroller AtMega 16 and PWM with prediction control method, were carried out.
Велігоцький, Дмитро Олексійович. "Підвищення ефективності хіміко-технологічного процесу комплексної водневої термобарохімічної технології інтенсифікації видобутку вуглеводнів." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2020. http://repository.kpi.kharkov.ua/handle/KhPI-Press/46018.
Full textThe thesis for scientific Degree of the Candidate of Technical Sciences in the specialty 05.17.08 – Processes & Equipment of Chemical Technology (16 – Сhemical and bioengineering). – National Technical University "Kharkiv Polytechnic Institute", Ministry of Education and Science of Ukraine, Kharkiv, 2020. Analysis of modern technologies for increasing the production of hydrocarbons has shown that the most effective and promising techniques are those that have an integral effect on the production horizon by combining effective thermal, chemical and mechanical actions. One of the most promising technologies with an integral effect on the reservoir is that of complex hydrogen thermobaric-chemical effect (CHTBCE). Its chemical-technological process (CTP) is based on the effect of hydrogen activation of the processes of diffusion and fluid filtration in the rock porous medium of the production horizon during the complex exothermal reaction in the well. The objective of the dissertation is to improve the effectiveness of the IHTBCA chemical-technological process, in particular, its hydrogen stages by using physical and mathematical simulation. An experimental complex was developed to study the kinetics of thermobaric processes, and for physical simulation of the integral action, including the hydrogen one, on the alteration of rock porosity-permeability properties. The complex recreates the technological features of the chemical-technological process of the CHTBCE technology. The complex ensures its flow in conditions most closely approximating actual reservoir ones. It helps study not only the kinetics of the complex heterogeneous chemical reaction during CTP flow, but also allows determining the thermobaric and chemical effect of liquid and gaseous products of the reactions of combustible-oxidation compositions and hydroreacting substances (COC-HRS), including hydrogen, on the change of the filtration properties of rock core samples. A technique was developed for experimental research into CTP kinetics. It is based on mixing two process fluids in sequence in a reactor, and measuring and registering the basic parameters of the thermobaric-chemical process to recreate it most closely to the actual one in the well. Analysis of the experimental graphs of the key kinetic parameters of the CTP created by the process fluids with the basic chemical composition demonstrated the ineffectiveness of the CTP’s hydrogen stages and the need to conduct follow-up research to solve this problem. Techniques were suggested for influencing the character of the flow of the multistage CTP thermobaric-chemical action, in particular, its hydrogen stages. The continuance of the low-temperature stage was achieved by using a mixture of up to 50 % of passivated granules of the total amount of ammonium nitrate in the base COC-HRS system. The main types of fast-reacting HRS based on alkali metals, aluminium and sodium were determined. With account of the high chemical activity of these HRS, methods were suggested and developed for their practical application with the use of protective sheaths. Experiments confirmed that adding hydroreacting substances based on aluminium and sodium to basic process fluids produces hydrogen at the low-temperature stage of the process. This hydrogen acts as an activator of diffusion and filtration of the fluid in the rock. Using 0,7-0,95 % of polymer nitrile paracyanogen synthesised by a refined technology as an activator of the combustion process increases the temperature and duration of the flow of the high-temperature CTP stage to a level at which, with the presence of activated hydrogen, partial hydrocracking of heavy hydrocarbons occurs directly in the reservoir. A process line was restored for synthesis of paracyanogen from oxamide. Parameters of its synthesis were found that ensure the improvement of the chemical purity and specific amount of the final product. The synthesis process regulations were refined. A CTP effectiveness assessment method was developed. It is based on determining the impact of CHTBCE technologies with different CTP flow on the recovery of porosity and permeability properties of colmataged natural rock core samples. This method helps determine the most effective chemical-technological process for usage in wells whose productivity has dropped due to different reasons. In conditions close to reservoir ones, the experimental complex developed was used to treat core samples, preliminarily colmataged with a decompositionresistant water-petroleum emulsion, with liquid and gaseous reaction products formed in the reactor with different CTP flow profiles. Experiments established that the CHTBCE CTP, with activation by the polymer nitrile paracyanogen and HRS based on aluminium and sodium, is most effective because the return permeability of the treated core for the specific CTP was 1,05. This is indicative not only of permeability recovery, but also of its increase as compared to the initial one. The developed methods and techniques can be used for improving the controllability of CTP hydrogen stages. They can also be used for determining the effectiveness of introducing the CHTBCE technology at wells with different structural and geological-engineering characteristics, and for identifying the causes of production decrease. To increase technology introduction effectiveness, a method was suggested for refining the quality of computer 3D CHTBCE simulation. The model is based on solving a system of Navier-Stokes equations that describe the laws of conservation of momentum, mass and energy. This helps describe complex filtration problems and enables simulating the CHTBCE process in actual objects. The law of conservation of momentum in filtration problems, depending on the character of filtration, is presented as the Darcy law, the Forchheimer law and the Darcy law with account of diffusion (Fick’s law). All the equations of the system that describe filtration laws include the permeability coefficient. In contrast to the majority of filtration problems, in which permeability coefficients are constants, a technique was developed for refining the 3D computer model of the process of hydrogen thermobaric-chemical action on the well production horizons. The mathematical model accounts for the results of experimental research into the unsteady process of recovery of rock permeability due to the integral hydrogen thermobaric-chemical action. The computational values or the permeability constants in the mathematical model of filtration are replaced with the return permeability change function depending on the relative volume of CTP reaction products. The refined computer model was verified experimentally by comparative analysis of the following: the results of numerical simulation of the reaction products filtration process at the CHTBCE hydrogen stages; and the results of experimental research conducted with actual rock cores. The verification confirmed a significant increase in simulation accuracy. The refined and verified model describes with high accuracy the flow of filtration-diffusion and heat-andmass transfer processes in the actual CTP during the treatment of production formations, and helps estimating treatment results. The refined mathematical model served as the basis of the computer 3D model for stepwise CHTBCE computer simulation with account of CTP kinetics. Such an approach became especially relevant under the condition when, owing to the developed methods, it became possible to control the stages, especially the hydrogen ones, for duration and temperatures. A procedure was developed for preparing to implement the technology with account of physical and mathematical simulation results. The developed procedure enables determining the quantitative and qualitative indicators of the chemical compositions of process fluids that affect the CHTBCE CTP flow, especially those of its hydrogen stages, and the treatment designs required the treatment of each well with account of its individual structural and geological-engineering characteristics and colmatation causes. The developed procedure was applied to creating the treatment design used for pilot industrial implementation of the technology on wells in Ukraine, India, Georgia, and Turkey. The results have confirmed the high effectiveness of the refined and used CTP in both vertical and horizontal wells.
Велігоцький, Дмитро Олексійович. "Підвищення ефективності хіміко-технологічного процесу комплексної водневої термобарохімічної технології інтенсифікації видобутку вуглеводнів." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2020. http://repository.kpi.kharkov.ua/handle/KhPI-Press/45962.
Full textThe thesis for scientific Degree of the Candidate of Technical Sciences in the specialty 05.17.08 – Processes & Equipment of Chemical Technology. – National Technical University "Kharkov Polytechnic Institute", Ministry of Education and Science of Ukraine, Kharkiv, 2020. The dissertation is dedicated to solving a topical scientific-and-practical problem of increasing the effectiveness of the chemical-technological process for intensifying hydrocarbon production, which is based on an integrated usage of anomalous properties of hydrogen as an activator of diffusion and filtration processes. An experimental complex was developed to study the kinetics of thermobaric-chemical processes and for physical modelling of the integral effect, including the hydrogen one, on the change of flow properties and permeability of the rock. The complex recreates the technological features of the chemical-technological process and ensures its flow in conditions utmost close to those in real formation ones. Methods were suggested for affecting the character of flow of the multistage thermobaric-chemical process and increasing its effectiveness, in particular, its hydrogen stages. Experiments have proved that adding hydroreacting substances based on aluminium and sodium to basic process fluids helps produce hydrogen at the low-temperature stage of the process. Hydrogen acts as an activator of diffusion and filtration of the fluid in the rock. Using 0,7-0,95% of a polymer nitrile paracyanogen synthesised to a refined technology as an activator of the combustion process increases the temperature and duration of the high-temperature stage of the chemical-technological process. This is done to a level at which, with the presence of activated hydrogen, processes of partial hydrocracking of heavy hydrocarbons occur directly in the formation. A technique was developed for determining the most effective chemical-technological process for the technology of integrated hydrogen thermobaric-chemical effect. It is based on a comparative analysis of the results of action of chemical-technological processes, differing in nature, on the recovery of the permeability of colmataged rock cores. The computer 3D model of the multistage process of the hydrogen thermobaric-chemical effect on production horizons of wells was refined. Its refinement method accounted for the results of experimental study of the unsteady process of recovery of rock permeability due to the integrated hydrogen thermobaric-chemical action. The refined and verified model describes with high accuracy the flow of filtration-diffusion and heat-and-mass transfer processes in actual chemical-technological processes during the treatment of productive formations, enabling to make prognostic evaluations about treatment results. The algorithm developed for preparing to implement the technology with account of the results of physical and mathematical simulation was used in exploratory-industrial introductions of the technology at wells in Ukraine, India, Georgia, and Turkey. The results have confirmed the high effectiveness of the refined and used chemical-technological processes in both vertical and horizontal wells.
Войтешенко, І. С. "Фізичні чинники спіральності 2" - дезоксирибополінуклеотидів: квантово-механічне моделювання." Diss. of Candidate of Physical and Mathematical Sciences, КНУТШ, 2011.
Find full textОлефір, Л. А., and В. М. Базурін. "Застосування ІКТ для моделювання фізичних явищ." Thesis, Видавництво СумДУ, 2011. http://essuir.sumdu.edu.ua/handle/123456789/22561.
Full textЛобко, Андрій Валерійович. "Енергозберігаючі напівпровідникові перетворювачі для перспективних систем електропостачання." Thesis, НТУ "ХПІ", 2016. http://repository.kpi.kharkov.ua/handle/KhPI-Press/22721.
Full textDissertation on competition degree of candidate of technical sciences of speсiality 05.09.12 – Semiconductor converters of electric energy. – National Technical University "Kharkov Politechnical Institute", Kharkov, 2016. Dissertation is devoted to development of high-performance and energy-saving semiconductor converters for applications in new and perspective power systems. Developed semiconductor converter with phase control method for forwardlooking FREEDM electrical system is presented. It is shown that that converter performs the same functions available in the converter of this system and allows to obtain the best energy performance by reducing switching loss using soft switching at the fundamental frequency 50 Hz. It is demonstrated that the proposed phase control method is based on the symmetric detuning of the resonance and the introduction of a controlled phase shift between the voltages at the input of the power semiconductor switch and the AC mains. In the dissertation a method of calculating the basic converter settings is proposed. The quality of his work is analyzed. With the help of computer simulations single and three phase converter circuit in different operating modes are studied. The methods of protection from emergency modes are proposed. Experimental studies on the physical model confirmed the accuracy of the theoretical results.
Лобко, Андрій Валерійович. "Енергозберігаючі напівпровідникові перетворювачі для перспективних систем електропостачання." Thesis, НТУ "ХПІ", 2016. http://repository.kpi.kharkov.ua/handle/KhPI-Press/22720.
Full textDissertation on competition degree of candidate of technical sciences of speсiality 05.09.12 – Semiconductor converters of electric energy. – National Technical University "Kharkov Politechnical Institute", Kharkov, 2016. Dissertation is devoted to development of high-performance and energy-saving semiconductor converters for applications in new and perspective power systems. Developed semiconductor converter with phase control method for forwardlooking FREEDM electrical system is presented. It is shown that that converter performs the same functions available in the converter of this system and allows to obtain the best energy performance by reducing switching loss using soft switching at the fundamental frequency 50 Hz. It is demonstrated that the proposed phase control method is based on the symmetric detuning of the resonance and the introduction of a controlled phase shift between the voltages at the input of the power semiconductor switch and the AC mains. In the dissertation a method of calculating the basic converter settings is proposed. The quality of his work is analyzed. With the help of computer simulations single and three phase converter circuit in different operating modes are studied. The methods of protection from emergency modes are proposed. Experimental studies on the physical model confirmed the accuracy of the theoretical results.
Коробов, Є. А. "Моделювання фізичних процесів в електронних LR-фільтрах." Master's thesis, Сумський державний університет, 2019. http://essuir.sumdu.edu.ua/handle/123456789/76628.
Full textBooks on the topic "Моделювання фізичне"
Трохимчук, П. П. Поліметричне моделювання інформаційних та фізичних процесів. Луцьк: Вежа, 1999.
Find full textBook chapters on the topic "Моделювання фізичне"
Русин, Людмила. "ПРОГРАМА ФОРМУВАННЯ ГОТОВНОСТІ ТРЕНЕРІВ З ОДНОБОРСТВ ДО ЗАСТОСУВАННЯ ЗАСОБІВ ФІЗИЧНОЇ ТЕРАПІЇ В СИСТЕМІ САМООСВІТИ." In Імплементація нововведень до правових та воєнних наук та підвищення ролі спорту на державному рівні (1st ed.). Європейська наукова платформа, 2020. http://dx.doi.org/10.36074/indpvnprsdr.ed-1.05.
Full textЧудик, Андрій, and Дар'я Ванюк. "УНІФІКАЦІЯ МОДЕЛІ ФОРМУВАННЯ ГОТОВНОСТІ МАЙБУТНІХ ОФІЦЕРІВ-ПРАВООХОРОНЦІВ ДО ЗАСТОСУВАННЯ ЗАХОДІВ ФІЗИЧНОГО ВПЛИВУ (СИЛИ) У РІЗНИХ УМОВАХ СЛУЖБОВО-ОПЕРАТИВНОЇ ДІЯЛЬНОСТІ ІЗ УРАХУВАННЯМ КАРАНТИННИХ ОБМЕЖЕНЬ." In Імплементація нововведень до правових та воєнних наук та підвищення ролі спорту на державному рівні (1st ed.). Європейська наукова платформа, 2020. http://dx.doi.org/10.36074/indpvnprsdr.ed-1.04.
Full textReports on the topic "Моделювання фізичне"
Турінов, А. М., and О. М. Галдіна. Використання комп’ютерного моделювання при розв’язанні квантовомеханічних задач. Сумський державний педагогічний університет імені А.С. Макаренка, 2017. http://dx.doi.org/10.31812/0564/2320.
Full textТеплицький, Ілля Олександрович, and Сергій Олексійович Семеріков. Комп’ютерне моделювання визначальних фізичних експериментів. КЕІ ДВНЗ «КНЕУ ім. В. Гетьмана», 2007. http://dx.doi.org/10.31812/0564/878.
Full textЄчкало, Ю. В. Вибір середовища моделювання фізичних процесів. Видавничий відділ НМетАУ, 2008. http://dx.doi.org/10.31812/0564/845.
Full textМоісеєнко, Наталя Володимирівна, Євген Вадимович Чернов, and Сергій Олексійович Семеріков. Фізичні моделі в курсі «Основи комп’ютерного моделювання». УНІВЕРСУМ-Вінниця, 1998. http://dx.doi.org/10.31812/0564/688.
Full textПоліщук, Олександр Павлович, Ілля Олександрович Теплицький, and Сергій Олексійович Семеріков. GlowScript – хмарний засіб навчання комп’ютерного моделювання фізичних процесів. Видавничий відділ КМІ, December 2012. http://dx.doi.org/10.31812/0564/969.
Full textТеплицький, Ілля Олександрович, and Сергій Олексійович Семеріков. Комп’ютерна навчальна фізична гра «М’яка посадка». НПУ ім. М. П. Драгоманова, 2003. http://dx.doi.org/10.31812/0564/780.
Full textСоловйов, В. М. Теоретичні проблеми моделювання складних економічних систем. [б. в.], 2010. http://dx.doi.org/10.31812/0564/1323.
Full textЖалдак, М. І., В. М. Соловйов, І. О. Теплицький, Ю. С. Рамський, С. А. Раков, Л. І. Білоусова, О. Г. Колгатін, et al., eds. Комп’ютерне моделювання в освіті : матеріали V Всеукраїнського науково-методичного семінару (Кривий Ріг, 6 квітня 2012 р.). Видавничий відділ НМетАУ, 2012. http://dx.doi.org/10.31812/0564/598.
Full textЖалдак, М. І., В. М. Соловйов, І. О. Теплицький, Л. І. Білоусова, В. Й. Засельський, О. Г. Колгатін, Н. В. Моісеєнко, et al., eds. Комп’ютерне моделювання в освіті : матеріали VІ Всеукраїнського науково-методичного семінару (Кривий Ріг, 12 квітня 2013 р.). Видавничий відділ КМІ, 2013. http://dx.doi.org/10.31812/0564/597.
Full textЖалдак, М. І., Ю. В. Триус, С. А. Раков, В. М. Соловйов, В. Й. Засельський, Ю. С. Рамський, Л. І. Білоусова, et al., eds. Комп’ютерне моделювання в освіті : матеріали IV Всеукраїнського науково-методичного семінару (Кривий Ріг, 12 травня 2011 р.). Видавничий відділ НМетАУ, 2011. http://dx.doi.org/10.31812/0564/599.
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