Main / of Physics and Technology / Solid state physics and nonlinear physics / Приходько Олег Юрьевич
Приходько Олег Юрьевич
Position
First higher education
| Educational institution | Квалификация | Expiration date |
|---|---|---|
| КазНУ им. аль-Фараби | Высшее | 1975 |
Academic degree
| Name of the scientific degree | Branch of science | Graduation Date |
|---|---|---|
| Кандидат | 06/07/1983 | |
| Доктор | 13/01/2012 |
Academic rank
| Name of academic title | Date of assignment |
|---|---|
| Доцент | 12/04/1996 |
| Профессор | 01/01/2001 |
State Prizes
| Prize Name | Date of award |
| Знак "Почетный работник образования Республики Казахстан" | 29/05/2014 |
| Знак "За заслуги в области Образования РК" |
| File name | Headline | Description |
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Fundamentals of Nanotechnology |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Physico-chemical Bases of Nanotechnology |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
Семинары
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Basics of Nanotechnology in Materials Science |
АСМ
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Basics of Nanotechnology in Materials Science |
Силлабус
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Basics of Nanotechnology in Materials Science |
СРМП
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
Тематика экзаменационных воапросов
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Темы семинарских занятий
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Пререквизиты курса
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Темы для докторантов
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Перечень вопросов для подготовки к экзамену
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Учебное пособие
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Литература
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Силлабус
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Семинары
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
СРМП
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Вопросы
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
Силлабус
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The structure and electronic processes in nanomaterials |
Семинары
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The structure and electronic processes in nanomaterials |
Материалы
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Optical Properties of Materials |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Non-crystalline Materials |
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Силлабус
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
Силлабус
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Physico-Chemical Bases of Nanomaterias and Nanostructures |
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The structure and electronic processes in nanomaterials |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Progress in Photonics |
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Technological Principles Fabrication of Semiconductor Nanostructures |
Силлабус
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Technological Principles Fabrication of Semiconductor Nanostructures |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Optical Properties of Materials |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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The structure and electronic processes in nanomaterials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
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Fundamentals of Nanotechnology |
Силлабус ОН
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Physico-chemical Bases of Nanotechnology |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Basics of Nanotechnology in Materials Science |
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Electronic processes in non-crystalline materials |
Монография по курсу ЭПвНМ
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Electronic processes in non-crystalline materials |
Эффект переключения и памяти
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Electronic processes in non-crystalline materials |
Применение АП
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Electronic processes in non-crystalline materials |
Силлабус Электронные процессы
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Electronic processes in non-crystalline materials |
Семинары ЭПНМ
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Electronic processes in non-crystalline materials |
СРДП для курса ЭПНМ
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
Силлабус
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Solid state electronics |
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Solid state electronics |
Семинары
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Solid state electronics |
Программа
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Solid state electronics |
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Solid state electronics |
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Solid state electronics |
Вопросы
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Solid state electronics |
Программа
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Solid state electronics |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Modern state, problems and prospects for the development of smart materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
УМКД
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
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Transfer processes and contact phenomena in semiconductor materials |
Программа
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
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Electronic processes in non-crystalline materials |
Программа
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Technological processes of production semiconductor materials |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
УМКД
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Physical and chemical bases of nanotechnology |
Материал к семинарам
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
Программа
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
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Physical and chemical bases of nanotechnology |
Программа экзамена
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Physical and chemical bases of nanotechnology |
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Optics of nanosystems |
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Optics of nanosystems |
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Optics of nanosystems |
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Optics of nanosystems |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Physics and technology of phase change materials |
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Author Documents
48
Citations
205 по 160
documents
h-index
9
Effect of Bi addition on the switching effect and structure of thin Ge2Sb2Te5 films prepared by ion-plasma RF co-sputtering
Tolepov, Z., Prikhodko, O., Kolobov, A., Ismailova, G., Peshaya, S., Guseinov, N., Mukhametkarimov, Y., Kapanov, A., Maksimova, S.
Journal of Non Crystalline Solids
642, с.
0
ЦитированийEffects of thermal and laser annealing on the structure of Ge2Sb2Te5 thin films
Turmanova, K., Prikhodko, O., Tolepov, Z., Maksimova, S., Manabaev, N., Almas, N.
Chalcogenide Letters
21, с. 575-581
0
ЦитированийStructural Transformation of Thin Ge2Sb2Te5<Ag> Films Produced by Ion-Plasma Co-Sputtering Under Laser Irradiation
Prikhodko, O.Y., Ismailova, G.A., Zhakypov, A.S., Kolobov, A.V., Turmanova, K.N., Nemkaeva, R.R., Maksimova, S.Y., Tolepov, Z.K., Peshaya, S.L.
Journal of Electronic Materials
52, с. 2492-2498
2
ЦитированийStructure and electronic properties of thin Ge2Sb2 Te5 films produced by DC ion-plasma spattering
Sultanbekov, S., Prikhodko, O., Almas, N.
Chalcogenide Letters
20, с. 487-496
2
ЦитированийInfluence of bismuth on optical and electrical properties of thin Ge2Sb2Te5 films prepared by DC ion plasma sputtering
Sultanbekov, S., Prikhodko, O., Muratov, D., Almas, N.
Journal of Non Crystalline Solids
619, с.
3
ЦитированийSynthesis and optical properties of Ag/Au-TiO2 plasmonic composite thin films
Yergaliyeva, S., Nemkayeva, R., Guseinov, N., Prikhodko, O., Arbuz, A., Orynbay, B., Sagidolda, Y., Aitzhanov, M., Ismailova, G., Mukhametkarimov, Y.
Optical Materials Express
13, с. 2726-2736
5
ЦитированийPeculiarities of the Structure of Au-TiO2 and Au-WO3 Plasmonic Nanocomposites
Sagidolda, Y., Yergaliyeva, S., Tolepov, Z., Ismailova, G., Orynbay, B., Nemkayeva, R., Prikhodko, O., Peshaya, S., Maksimova, S., Guseinov, N., Mukhametkarimov, Y.
Materials
16, с.
4
ЦитированийFeatures of determining the optical bandgap of amorphous nanosized composite TiO2:Ag films
Peshaya, S.L., Prikhodko, O.Y., Mukhametkarimov, Y.S., Doseke, U., Maksimova, S.Y., Ismailova, G.A., Tarapeeva, A.Y., Turmanova, K.N., Kudryashov, V.V.
Journal of Optical Technology A Translation of Opticheskii Zhurnal
89, с. 52-57
0
ЦитированийLocalized surface plasmon resonance phenomenon in Ag/Au-WO3-x nanocomposite thin films
Prikhodko, O., Dosseke, U., Nemkayeva, R., Rofman, O., Guseinov, N., Mukhametkarimov, Y.
Thin Solid Films
757, с.
4
ЦитированийGrowth and Liquid-Phase Exfoliation of GaSe1−xSx Crystals
Aitzhanov, M., Guseinov, N., Nemkayeva, R., Sagidolda, Y., Tolepov, Z., Prikhodko, O., Mukhametkarimov, Y.
Materials
15, с.
7
ЦитированийThermal Stability of the Structure and Optical Properties of Nanostructured TIO2 Films
Mikhailova, S.L., Prikhodko, O.Y., Mukhametkarimov, Y.S., Dautkhan, K., Doseke, U.A., Kozyukhin, S.A., Kozik, V.V., Ismailova, G.A., Maksimova, S.Y., Tarapeyeva, A.Y., Zhakypov, A.S.
Russian Physics Journal
63, с. 2045-2051
4
ЦитированийPhotocatalytic activity of liquid-phase exfoliated gallium selenide flakes
Prikhodko, O.Y., Aitzhanov, M.B., Gusseinov, N.R., Kalkozova, Z.K., Dikhanbaev, K.K., Markhabayeva, A., Myrzabekova, M.M., Nemkayeva, R.R., Mukhametkarimov, Y.S.
Chalcogenide Letters
18, с. 777-781
5
ЦитированийInSe Crystals Obtained by Stoichiometric Fusion for Optoelectronic Device Application
Aitzhanov, M., Guseinov, N., Nemkayeva, R., Tolepov, Z., Prikhodko, O., Mukhametkarimov, Y.
Journal of Nano and Electronic Physics
13, с. 1-5
2
ЦитированийPreface: 11th International Conference on High-Performance Computing Systems and Technologies in Scientific Research, Automation of Control and Production (HPCST-2021). May 21-22, 2021, Barnaul, Russia
Jordan, V.I., Shurina, E., Tarasov, I., Filimonov, N., Belozerskih, V., Faerman, V., Kalachev, A., Kalachev, A., Pashnev, V., Sedalischev, V., Sedalischev, V., Sergeeva, Y., Shmakov, I., Ulanov, P., Abanin, V., Alontseva, D., Avramchuk, V., Beznosyuk, S., Filimonov, A., Gulyaev, P., Kadyrov, I., Khmelev, V., Fazilov, S., Kosarev, V., Mirzaev, N., Kveglis, L., Mescheryakov, R., Nikitin, A., Polyakov, V., Mikhailov, L., Prikhodko, O., Pronin, S., Saliev, A., Titov, V., do Prado, P.F., Yakunin, A.
Journal of Physics Conference Series
2142, с.
0
ЦитированийInfluence of substrate temperature on the formation of titanium carbide film
Kaipoldayev, O.E., Baigarinova, G.A., Nemkayeva, R.R., Guseinov, N.R., Mukhametkarimov, Y.S., Tauasarov, K., Prikhodko, O.Y.
Journal of Nano and Electronic Physics
11, с.
4
ЦитированийMultiple thermal cycling and phase transitions in Ge-Sb-Te materials
Sherchenkov, A., Kozyukhin, S., Borgardt, N., Babich, A., Lazarenko, P., Sybina, Y., Tolepov, Z., Prikhodko, O.
Journal of Non Crystalline Solids
501, с. 101-105
1
ЦитированийThermal Stability of Surface Plasmon Resonance Absorption in а-С:Н〈Ag + TiО 2 〉 Nanocomposite Films
Prikhod’ko, O.Y., Mikhailova, S.L., Mukhametkarimov, E.S., Dautkhan, K., Maksimova, S.Y., Ismailova, G.A., Tauasarov, K.A., Mikhailov, L.V.
Optics and Spectroscopy
125, с. 864-869
0
ЦитированийStructure and phase composition of thin a-C:H films modified by Ag and Ti
Prikhodko, O.Y., Mikhailova, S.L., Mukhametkarimov, Y.S., Dauthan, K., Maksimova, S.Y.
Optics and Spectroscopy English Translation of Optika I Spektroskopiya
123, с. 383-387
2
ЦитированийVoltage oscillations in the case of the switching effect in thin layers of Ge–Sb–Te chalcogenides in the current mode
Fefelov, S.A., Kazakova, L.P., Arsova, D., Kozyukhin, S.A., Tsendin, K.D., Prikhodko, O.Y.
Semiconductors
50, с. 941-946
0
ЦитированийSize effect influence on the electronic properties of Ge2Sb2Te5 films prepared by ion plasma sputtering
Korobova, N., Timoshenkov, S., Dyussembayev, S., Prikhodko, O., Tolepov, Z., Guseinov, N.
2016 IEEE 36th International Conference on Electronics and Nanotechnology Elnano 2016 Conference Proceedings
0, с. 90-93
1
ЦитированийOptical properties of a-C:H thin films modified by Ti and Ag
Prikhodko, O.Y., Mikhailova, S.L., Mukhametkarimov, E.C., Maksimova, S.Y., Manabaev, N.K., Dauthan, K.
Proceedings of SPIE the International Society for Optical Engineering
9929, с.
5
ЦитированийElectro-optical and physic-mechanical properties of colored alicyclic polyimide
Kravtsova, V., Umerzakova, M., Korobova, N., Timoshenkov, S., Timoshenkov, V., Orlov, S., Iskakov, R., Prikhodko, O.
Proceedings of SPIE the International Society for Optical Engineering
9939, с.
0
ЦитированийOptical and electric properties of composite films based on alicyclic polyimide and polyaniline
Zhubanov, B.A., Matnishyan, A.A., Kravtsova, V.D., Umerzakova, M.B., Iskakov, R.M., Prikhod’ko, O.Y., Alpysbaeva, B.E.
Optics and Spectroscopy English Translation of Optika I Spektroskopiya
118, с. 537-541
4
ЦитированийPeculiarities of Bi doping of Ge-Sb-Te thin films for PCM devices 1
Kozyukhin, S., Sherchenkov, A., Babich, A., Lazarenko, P., Nguyen, H.P., Prikhodko, O.
Canadian Journal of Physics
92, с. 684-689
22
ЦитированийPlasmon resonance in a-C: H films modified with platinum nanoclusters
Prikhodko, O., Manabaev, N., Guseinov, N., Maksimova, S., Muhametkarimov, E., Mikhailova, S., Daineko, E.
Journal of Nano and Electronic Physics
6, с.
3
ЦитированийEnhanced stability of Bi-doped Ge2Sb2Te 5 amorphous films
Dyussembayev, S., Prikhodko, O., Tsendin, K., Timoshenkov, S., Korobova, N.
Proceedings of SPIE the International Society for Optical Engineering
9200, с.
2
ЦитированийOptically transparent fluoro-containing polyimide films with low dielectric permeability
Kravtsova, V., Umersakova, M., Iskakov, R., Prikhodko, O., Korobova, N.
Proceedings of SPIE the International Society for Optical Engineering
9440, с.
0
ЦитированийEfficient method of structural and electronic properties modification of amorphous As-S-Se chalcogenide films
Korobova, N., Almasov, N., Prikhodko, O., Timoshenkov, S., Tsendin, K.
Materials Science and Technology Conference and Exhibition 2014 MS and T 2014
2, с. 753-758
0
ЦитированийStructure and electronic properties features of amorphous chalhogenide semiconductor films prepared by ion-plasma spraying
Korobova, N., Almasov, N., Prikhodko, O., Timoshenkov, S., Tsendin, K.
Aip Conference Proceedings
1624, с. 69-74
1
ЦитированийOptical properties of diamond-like carbon films modified by platinum
Prikhodko, O., Manabaev, N., Guseynov, N., Maksimova, S., Mikhailova, S., Assanov, G.
Advanced Materials Research
660, с. 47-50
4
ЦитированийBismuth impurity influence on electronic properties of amorphous As40Se30S30 films
Prkhodko, O., Almasov, N., Dyussembayev, S., Maksimova, S., Ushanov, V., Tsendin, K., Nesterov, S.
Chalcogenide Letters
10, с. 519-523
3
ЦитированийInversion of the impurity conductivity sign in As 2Se 3:Bi films deposited by two different methods
Almasov, N.G., Prikhodko, O.Y., Tsendin, K.D.
Semiconductors
46, с. 1296-1298
2
ЦитированийElectronic properties of diamond-like carbon films modified by silver nanoclusters
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y., Daineko, Y.A., Mahmoud, F.A.
Physica Status Solidi C Current Topics in Solid State Physics
7, с. 805-807
11
ЦитированийOn nanoheteromorphous structure in amorphous As2S3 films prepared by different methods
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y., Daineko, E.A., Iskakov, R.M., Ushanov, V.Z.
Physica Status Solidi C Current Topics in Solid State Physics
7, с. 897-900
0
ЦитированийPhoto-structural transformations in amorphous chalcogenide glassy semiconductor films
Prikhodko, O., Almasov, N., Korobova, N., Duysembaev, S., Turmanova, K., Tsendin, K.
Eurasian Chemico Technological Journal
12, с. 279-283
1
ЦитированийPhotoelectric properties in amorphous chalcogenide glassy semiconductor As40Se30S30 films
Prikhodko, O., Almasov, N., Korobova, N., Duysembaev, S., Turmanova, K., Tsendin, K.
Eurasian Chemico Technological Journal
12, с. 285-290
0
ЦитированийCharacterization of new metallized polyimide films with high electrooptical performances
Kudaikulova, S.K., Iskakov, R.M., Razumovskaja, I.V., Bazhenov, S.L., Koptsev, V.N., Prikhodko, O.Y., Kurbatov, A.P., Akhmetov, T.Z., Zhubanov, B.A., Abadie, M.J.M.
Proceedings of SPIE the International Society for Optical Engineering
7009, с.
1
ЦитированийAtomic structure and short- and medium-range order parameters in amorphous chalcogenide films prepared by different methods
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y., Ushanov, V.Z.
Journal of Non Crystalline Solids
353, с. 2057-2061
9
ЦитированийThe structure and properties of new metallized polyimide films with high electrooptical performances
Kudaikulova, S.K., Iskakov, R.M., Razumovskaja, I.V., Bazhenov, S.L., Prikhodko, O.Y., Kurbatov, A.P., Akhmetov, T.Z., Zhubanov, B.A., Abadie, M.J.M.
Proceedings of Caol 2005 2nd International Conference on Advanced Optoelectronics and Lasers
2, с. 93-96
1
ЦитированийLocal structure and electronic properties of amorphous As2S 3 films prepared by different methods
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y., Ushanov, V.Z.
Semiconductor Science and Technology
19, с. 787-791
10
ЦитированийDifferences in local structure between amorphous As-Se films prepared by different methods
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y., Ushanov, V.Z.
Semiconductor Science and Technology
17, с. 1072-1074
11
ЦитированийCorrelation between medium-range order in atomic structure and optical properties of amorphous AsSe films
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y.
Semiconductor Science and Technology
16, с. L44-L46
9
ЦитированийComparison of atomic structures and electronic properties of amorphous AsSe films
Sarsembinov, S.S., Prikhodko, O.Y., Ryaguzov, A.P., Maksimova, S.Y.
Semiconductor Science and Technology
16, с. 872-876
12
ЦитированийElectrical and photoelectrical properties of crystalline semiconductor-ChVS heterojunction controlled by ChVS modification
Sarsembinov, S.S., Prikhodko, O.Y., Maksimova, S.Y., Dzalekov, S.A., Averyanov, V.L.
Journal of Non Crystalline Solids
-1, с. 987-990
3
ЦитированийMechanism of extrinsic conductivity in modified vitreous semiconductors
Averyanov, V.L., Gelmont, B.L., Kolomiets, B.T., Lyubin, V.M., Prikhodko, O.Y., Tsendin, K.D.
Journal of Non Crystalline Solids
64, с. 279-282
10
ЦитированийMECHANISM OF EXTRINSIC CONDUCTION IN IRON-MODIFIED GLASSY ARSENIC SELENIDE.
Aver'yanov, V.L., Lyubin, V.M., Nasredinov, F.S., Nistiryuk, P.V., Prikhod'ko, O.Y., Seregin, P.P.
Soviet Physics Semiconductors
17, с. 223-225
0
ЦитированийCARRIER TRANSPORT IN GLASSY As2Se3 FILMS MODIFIED BY NICKEL AND IRON.
Aver'yanov, V.L., Kazakova, L.P., Lantratova, S.S., Lebedev, E.A., Prikhod'ko, O.Y.
Soviet Physics Semiconductors
17, с. 582-583
1
ЦитированийModification of vitreous As2Se3
Kolomiets, B.T., Averyanov, V.L., Lyubin, V.M., Prikhodko, O.J.
Solar Energy Materials
8, с. 1-8