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Minimum solar tracking system for a Fresnel lens-based LCPV
Renewable Energy
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842
Болатбек А. Б.
Minimum solar tracking system for a Fresnel lens-based LCPV
Renewable Energy
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843
Каппарова А. А.
Minimum solar tracking system for a Fresnel lens-based LCPV
Renewable Energy
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844
Орынбасар С. О.
Minimum solar tracking system for a Fresnel lens-based LCPV
Renewable Energy
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845
Габитов Т. Х.
Исследование проблем этнических меньшинств в Казахстане с точки зрения современной философии и экзистенциализма
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Досжанов Е. О.
БИОСОРБЦИЯ: ЭФФЕКТИВНЫЙ МЕТОД ОЧИСТКИ ПОЧВЫ И ЕГО ПРЕИМУЩЕСТВА
«ЗЕЛЕНЫЙ МОСТ ЧЕРЕЗ ПОКОЛЕНИЯ» X Юбилейный Международный молодежный Форум
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Тургумбаева А. А. ҚАЗАҚСТАНДЫҚ МАҚСАРЫНЫҢ «АҚ МАЙ» ТҮРІНЕН АЛЫНҒАН
ЭКСТРАКТТАРДЫ САЛЫСТЫРМАЛЫ ТАЛДАУ
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135-ЛЕТИЮ С.Д. АСФЕНДИЯРОВА
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Саймбетов А. К.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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849
Құттыбай Н. Б.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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Нұрғалиев М. К.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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851
Досымбетова Г. Б.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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852
Жоламанов Б. Н.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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853
Қошқарбай Н. Ж.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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854
Болатбек А. Б.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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855
Каппарова А. А.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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856
Орынбасар С. О.
Machine Learning Based Localization of LoRa Mobile Wireless Nodes Using a Novel Sectorization Method
Future Internet
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857
Саймбетов А. К.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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858
Құттыбай Н. Б.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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859
Нұрғалиев М. К.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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860
Досымбетова Г. Б.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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861
Әлмен Д. Б.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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862
Жоламанов Б. Н.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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863
Қошқарбай Н. Ж.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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864
Болатбек А. Б.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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865
Каппарова А. А.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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866
Орынбасар С. О.
Output power analysis of low concentrated solar cells with fresnel lens optics
Optik
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867
Саймбетов А. К.
MODELLING П-SHAPED CONCENTRATING OPTICS FOR LCPV SOLAR CELLS USING FRESNEL LENS
Latvian Journal of Physics and Technical Sciences
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868
Нұрғалиев М. К.
MODELLING П-SHAPED CONCENTRATING OPTICS FOR LCPV SOLAR CELLS USING FRESNEL LENS
Latvian Journal of Physics and Technical Sciences
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869
Досымбетова Г. Б.
MODELLING П-SHAPED CONCENTRATING OPTICS FOR LCPV SOLAR CELLS USING FRESNEL LENS
Latvian Journal of Physics and Technical Sciences
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870
Әлмен Д. Б.
MODELLING П-SHAPED CONCENTRATING OPTICS FOR LCPV SOLAR CELLS USING FRESNEL LENS
Latvian Journal of Physics and Technical Sciences
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871
Каппарова А. А.
MODELLING П-SHAPED CONCENTRATING OPTICS FOR LCPV SOLAR CELLS USING FRESNEL LENS
Latvian Journal of Physics and Technical Sciences
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872
Орынбасар С. О.
MODELLING П-SHAPED CONCENTRATING OPTICS FOR LCPV SOLAR CELLS USING FRESNEL LENS
Latvian Journal of Physics and Technical Sciences
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873
Саймбетов А. К.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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874
Құттыбай Н. Б.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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875
Нұрғалиев М. К.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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876
Досымбетова Г. Б.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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877
Жоламанов Б. Н.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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878
Қошқарбай Н. Ж.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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879
Болатбек А. Б.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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880
Каппарова А. А.
Enhanced Reinforcement Learning Algorithm Based-Transmission Parameter Selection for Optimization of Energy Consumption and Packet Delivery Ratio in LoRa Wireless Networks
Journal of Sensor and Actuator Networks
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