Main / Chemistry and Chemical Technology / Physical chemistry, catalysis and petroleum chemistry / Оспанова Алья Капановна

Оспанова Алья Капановна

Position Профессоp
Physical chemistry, catalysis and petroleum chemistry
Scopus author ID: 55340038000
      
First higher education
Educational institution Квалификация Expiration date
КазНУ им. аль-Фараби Высшее 1975
Academic degree

Academic rank
Name of academic title Date of assignment
Доцент 06/04/1994
Профессор 29/06/2005
State Prizes
Prize Name Date of award
Государственный грант "Лучший преподаватель вуза" в 2010 году 31/12/2010
Государственный грант "Лучший преподаватель вуза" в 2005 году 01/01/2006


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Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Theoretical and Applied Aspects of Physical Chemistry
Theoretical and Applied Aspects of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory of Solutions
Theory of Solutions
Theory of Solutions
Theory of Solutions
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Physical Chemistry of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Kinetics of Reactions With Participation of Organic Compounds
Applied Aspects Kinetics and Electrochemistry in Chemical
Applied Aspects Kinetics and Electrochemistry in Chemical
Applied Aspects Kinetics and Electrochemistry in Chemical
Applied Aspects Kinetics and Electrochemistry in Chemical
Applied Aspects Kinetics and Electrochemistry in Chemical
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Electrochemistry
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Theory and Problems of Physical Chemistry
Thermodynamics and Kinetics of Electrochemical Processes
Thermodynamics and Kinetics of Electrochemical Processes
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Physical Chemistry, 2
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Modern Problems of Physical Chemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Chemical Kinetics and Electrochemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Theory and Problems of Physical Chemistry
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Modern Consepts of the Theory of Solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Applied aspects of the theory of solutions
Physical chemistry 2
Physical chemistry 2
Physical chemistry 2
Physical chemistry 2
Physical chemistry 2
Physical chemistry 2
Physical chemistry 2
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1

Оспанова Алья Капановна Ерітінділер теориясы " Қазақ университеті " 2015 - г. 71 - стр.

2

Оспанова Алья Капановна Физикалық химия пәні бойынша есептер Алматы Қазақ Университеті 2016 - г. 283 - стр.

3

Оспанова Алья Капановна Физикалық химия пәні бойынша тесттер " Қазақ университеті " 2016 - г. ISBN 978-601-04-1861-5 209 - стр.

4

Оспанова Алья Капановна Савденбекова Б.Е. Ертінділер теориясы " Қазақ университеті " 2016 - г. 114 - стр.

5

Оспанова Алья Капановна Ертінділер теориясы " Қазақ университеті " 2016 - г. 114 - стр.

6

Оспанова Алья Капановна Тестовые вопросы по физической химии "Химическая кинетика и электрохимия" " Қазақ университеті " 2016 - г. ISBN 978-601-04-2051-9 186 - стр.

7

Оспанова Алья Капановна Сейлханова Г.А., Жусупова А.К., Сыздыкова Л.И. " Қазақ университеті " 2016 - г. ISBN 978-601-04-2051-9 186 - стр.

8

Оспанова Алья Капановна Мурзагалиева М.Г., Камысбаев Д.Х., Савденбекова Б.Е. Ерітінділер теориясы бойынша зертханалық жұмыстар " Қазақ университеті " 2016 - г. ISBN 978-601-04-2479-1 9 - стр.

9

Оспанова Алья Капановна Савденбекова Б.Е. Электрохимиялық коррозияның термодинамикасы мен кинетикасы " Қазақ университеті " 2018 - г. ISBN 978-601-04-3580-3 62 - стр.

10

Оспанова Алья Капановна Савденбекова Б.Е. Термодинамика и кинетика электрохимической коррозии " Қазақ университеті " 2018 - г. ISBN 978-601-04-3627-5 67 - стр.

11

Оспанова Алья Капановна Физическая химия, часть 2 " Қазақ университеті " 2019 - г. 110 - стр.

12

Оспанова Алья Капановна Сейлханова Г.А. Fundamentals of chemical kinetics and electrochemistry Unique Service 2019 - г. ISBN 978-601-04-4125-5 116 - стр.

13

Оспанова Алья Капановна Сыздыкова Л.И. " Қазақ университеті " 2021 - г. ISBN 978-601-04-4998-5 12 - стр.

1

Оспанова Алья Капановна 2012 - г. 6 - стр. 35

2

Оспанова Алья Капановна Мо(IV) және W(IV) металл иондарының полиакриламидпен комплекстүзілу процесі 2011 - г. 6 - стр. 63

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Оспанова Алья Капановна 2012 - г. 4 - стр. 2

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Оспанова Алья Капановна 2012 - г. 6 - стр. 2

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Оспанова Алья Капановна 2011 - г. 5 - стр. 15

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Оспанова Алья Капановна 2011 - г. 5 - стр. 19

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Оспанова Алья Капановна 2013 - г. 6 - стр. 0

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Оспанова Алья Капановна 2013 - г. 6 - стр. 0

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Оспанова Алья Капановна 2012 - г. 7 - стр. 32

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Оспанова Алья Капановна 2012 - г. 5 - стр. 14

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Оспанова Алья КапановнаАшимхан Н.С. 2013 - г. 5 - стр. 0

12

Оспанова Алья Капановна Оспанова А.К., Бердибек Г., Сейлханова Г.А., Ашимхан Н.С., Ментбаева А.A., Тастанов Н., Дергунов М. «Термодинамические характеристики процесса образования полимерметаллических комплексов ионов Сu2+, Fe3+, Ni2+, Pd2+ с полиэлектролитами» // Вестник КазНУ, Серия химическая №2, 2013 2013 - г. 5 - стр. 0

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Оспанова Алья Капановна Исследование химического состояния ионов палладия в мультислоях с каталитической активностью методом РФЭС 2014 - г. 5 - стр. 0

14

Оспанова Алья Капановна ФИЗИКО-ХИМИЧЕСКИЕ ХАРАКТЕРИСТИКИ ПРОЦЕССОВ КОМПЛЕКСООБРАЗОВАНИЯ ИОНОВ ПЕРЕХОДНЫХ МЕТАЛЛОВ С ПОЛИЭЛЕКТРОЛИТАМИ 2014 - г. 5 - стр. 0

15

Оспанова Алья Капановна 3. Оспанова А.К., Ашимхан Н.С., Оспанов Е.А., Исабекова А. ФИЗИКО-ХИМИЧЕСКИЕ ОСНОВЫ ИЗВЛЕЧЕНИЕ ИОНОВ СВИНЦА ИЗ СТОЧНЫХ ВОД ПОЛИАКРИЛОВОЙ КИСЛОТОЙ 2014 - г. 8 - стр. 0

16

Оспанова Алья Капановна 2012 - г. 3 - стр. 65

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Оспанова Алья Капановна ФИЗИКО-ХИМИЧЕСКИЕ ОСНОВЫ ИЗВЛЕЧЕНИЕ ИОНОВ СВИНЦА ИЗ СТОЧНЫХ ВОД ПОЛИАКРИЛОВОЙ КИСЛОТОЙ 2014 - г. 11 - стр. 0

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Оспанова Алья Капановна ФИЗИКО-ХИМИЧЕСКИЕ ОСНОВЫ ИЗВЛЕЧЕНИЕ ИОНОВ СВИНЦА ИЗ СТОЧНЫХ ВОД ПОЛИАКРИЛОВОЙ КИСЛОТОЙ 2014 - г. 11 - стр. 0

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Оспанова Алья Капановна Термодинамические характеристики процесса образования полимерметаллических комплексов ионов Cu2+, Fe3+, Ni2+, Pd2+ с полиэлектролитами. 2013 - г. 4 - стр. 0

20

Оспанова Алья Капановна Некоторые теоретические и прикладные аспекты процессов образования полимерметаллических комплексов 2013 - г. 4 - стр. 0

21

Оспанова Алья Капановна Исследование влияния природы растворителя на процесс каталитического оксигенирования толуола 2014 - г. 6 - стр. 0

22

Оспанова Алья Капановна Металлокомплексные катализаторы жидкофазного окисления алкилбензолов 2014 - г. 4 - стр. 0

23

Оспанова Алья Капановна 2012 - г. 3 - стр. 0

24

Оспанова Алья Капановна ФИЗИКО-ХИМИЧЕСКИЕ ХАРАКТЕРИСТИКИ ПРОЦЕССОВ КОМПЛЕКСООБРАЗОВАНИЯ ИОНОВ ПЕРЕХОДНЫХ МЕТАЛЛОВ С ПОЛИЭЛЕКТРОЛИТАМИ 2014 - г. 6 - стр. 0

25

Оспанова Алья Капановна ИССЛЕДОВАНИЕ ХИМИЧЕСКОГО СОСТОЯНИЯ ИОНОВ ПАЛЛАДИЯ В МУЛЬТИСЛОЯХ С КАТАЛИТИЧЕСКОЙ АКТИВНОСТЬЮ МЕТОДОМ РФЭС 2014 - г. 9 - стр. 0

26

Оспанова Алья Капановна ЗАКОНОМЕРНОСТИ ПРОЦЕССОВ КОМПЛЕКСООБРАЗОВАНИЯ ИОНОВ Cu2+ и Co2+ С ПОЛИЭТИЛЕНИМИНОМ И ПОЛИВИНИЛПИРИДИНОМ 2012 - г. 6 - стр. 0

27

Оспанова Алья Капановна Квантово-химическое обоснование применения триклозана и его йодпроизводных в качестве антибактериальных покрытий для медико-биологических имплантатов 2015 - г. 13 - стр. 0

28

Оспанова Алья Капановна Метод мультислойной сборки как альтернатива получения антибактериальных покрытий для медико-биологических имплантатов 2015 - г. 11 - стр. 0

29

Оспанова Алья Капановна ФИЗИКО-ХИМИЧЕСКИЕ ОСНОВЫ ИЗВЛЕЧЕНИЕ ИОНОВ СВИНЦА ИЗ СТОЧНЫХ ВОД ПОЛИАКРИЛОВОЙ КИСЛОТОЙ 2014 - г. 6 - стр. 84

30

Оспанова Алья Капановна Метод мультислойной сборки как альтернатива антибактериальным покрытиям медико-билогических имплантатов 2016 - г. 5 - стр. 95

31

Оспанова Алья Капановна Физико-химические основы получения нано пленок с антибактериальными свойствами 2015 - г. 5 - стр. 0

32

Оспанова Алья Капановна Получение полиадсорбента на основе диатомита 2015 - г. 4 - стр. 89

33

Оспанова Алья Капановна ПОЛУЧЕНИЕ ПОРИСТОЙ ПЛАТФОРМЫ НА ОСНОВЕ ДИАТОМИТА С КАТАЛИТИЧЕСКИМИ И СОРБЦИОННЫМИ СВОЙСТВАМИ 2017 - г. 9 - стр. 2

34

Оспанова Алья Капановна Obtaining Thin-Films Based on Chitosan and Carboxymethylcellulose with Antibacterial Properties for Biomedical Devices 2017 - г. 7 - стр. 230

35

Оспанова Алья Капановна APPLICATION OF THE MULTILAYER ASSEMBLY (LBL) METHOD IN ENGINEERING TECHNOLOGIES FOR OBTAINING PERSPECTIVE COMPOSITE MATERIALS WITH PURPOSE PROPERTIES 2018 - г. 6 - стр. 427

36

Оспанова Алья Капановна APPLICATION OF THE MULTILAYER ASSEMBLY (LBL) METHOD IN ENGINEERING TECHNOLOGIES FOR OBTAINING PERSPECTIVE COMPOSITE MATERIALS WITH PURPOSE PROPERTIES 2018 - г. 6 - стр. 427

37

Оспанова Алья Капановна QUANTUM-CHEMICAL SUBSTANTIATION OF THE STRUCTURE AND PROPERTIES OF CHLORHEXIDINE AND ITS BORON DERIVATIVES AS ANTIBACTERIAL ADDITIVES FOR NANOFILMS OF MEDICAL PURPOSES 2019 - г. 7 - стр. 54

38

Оспанова Алья Капановна STUDY OF THE CHEMICAL STATE OF PALLADIUM IONS IN MULTILAYERS OF A CATALYTIC ACTIVITY 2019 - г. 9 - стр. 54

39

Оспанова Алья КапановнаСавденбекова Б.Е. ФИЗИКО-ХИМИЧЕСКИЕ ОСНОВЫ МОДИФИКАЦИИ ДИАТОМИТА ФОСФОРНОЙ КИСЛОТОЙ 2019 - г. 5 - стр. 0

40

Оспанова Алья Капановна 2 Kubasheva, Z., Sprynskyy, M., Railean-Plugaru, V., Pomastowski, P., Ospanova, A., & Buszewski, B. (2020). Synthesis and Antibacterial Activity of (AgCl, Ag) NPs/Diatomite Hybrid Composite. Materials, 13(15), 3409. Процентиль 62% (Q2). https://doi:10.3390/ma13153409 2020 - г. 12 - стр. 13

41

Оспанова Алья Капановна 1 Ospanova, A., Savdenbekova, B., Kubasheva, Z., Baltabayeva, B., & Uvarov, N. (2020). Several features of producing polyelectrolyte-based nanolayers by the multi-layer assembly. Materials Today: Proceedings. 31, 2020, 584-587. Процентиль 39% (Q3). https://doi.org/10.1016/j.matpr.2020.07.070 2020 - г. 4 - стр. 31

1

Оспанова Алья Капановна Ашимхан Н.С. Исабекова А.Ә., Бекмуратова Ж.С., Шохтаева Л.А., Оспанова А.К.,Ашимхан Н.С. Сулы және сулы-органикалық ортада бериллий (II) және стронций (II) иондарының полиэтиленгликольмен комплекстүзілу процесін зерттеу//Тезисы доклада на Международной научной конференции «Мир науки». – Алматы, 2013. – С. 166. 2013 - г. 1 - стр. Казахский национальный университет имени аль-Фараби, факультет химии и химической технологии

2

Оспанова Алья Капановна Ашимхан Н.С. Дүйсенова М., Оспанова А.К., Ашимхан Н.С. Сулы және сулы-органикалық ортада кадмий (II) ионының полиэтиленгликольмен комплекстүзілу процесін зерттеу /// Тезисы доклада на Международной научной конференции «Мир науки». – Алматы, 2013. – С. 168. 2013 - г. 1 - стр. КазНУ имени аль-Фараби, факультет химии и химической технологии

3

Оспанова Алья Капановна Ашимхан Н.С. Карагуланова А.С., Калимжанова И.Т., Оспанова А.К., Ашимхан Н.С. Мырыш (II) ионының полиакрилқышқылымен комплекстүзілу процесін зерттеу 2013 - г. 1 - стр. КазНУ имени аль-Фараби, факультетт химии и химической технологии

4

Оспанова Алья Капановна Тастанов Н., Кубжанова Г., Бердібек Г., Ментбаева А. Pd және Ni иондарының комплекстүзілу қабілетін және мультиқабаттарға байланыстыру жағдайларын зерттеу / Тезисы доклада на Международной научной конференции «Мир науки». – Алматы, 2013. – С. 227. 2013 - г. 1 - стр. КазНУ имени аль-Фараби, факультет химии и химической технологии

5

Оспанова Алья Капановна 2013 - г. 1 - стр. КазНУ имени аль-Фараби, факультет химии и химической технологии

6

Оспанова Алья Капановна Ашимхан Н.С. 2013 - г. 1 - стр.

7

Оспанова Алья Капановна Ескалиева Б.К., Сыздыкова Л.И., Онгарбаев Е.К. 2013 - г. 4 - стр.

8

Оспанова Алья Капановна Сейлханова Г.А., Ашимхан Н.С. 1. АШИМХАН Н.С., ОСПАНОВА А.К., СЕИЛХАНОВА Г.А. Be2+, Cd2+, Hg2+ металл иондарының полимерметалды комплекстерінің түзілу ерекшеліктері мен оларды қолдану аспектілері 2014 - г. 7 - стр. Усть-Каменогорс

9

Оспанова Алья Капановна Сейлханова Г.А., Ашимхан Н.С. 2. Оспанова А.К., Сейлханова Г.А., Ашимхан Н.С., Дуйсенова М.Ү. Кадмий ионның полимерметалды комплекс түрінде бөліп алу процесін зерттеу 2014 - г. 4 - стр. факультет химии и химической технологии

10

Оспанова Алья Капановна 6. Сыдық М., Қарағұланова А.С. Мырыш ионының кейбір еритін полилиганттармен әрекеттесу процесінің ерекшеліктері 2014 - г. 1 - стр. факультет химии и химической технологии

11

Оспанова Алья Капановна 7. Тастанов Н., Бердібек Г. Мультиқабатты палладий катализаторының беттік қабатын зерттеу және анализдеу 2014 - г. 1 - стр. факультет химии и химической технологии

12

Оспанова Алья Капановна 8. Исабекова А.Ә. Ағынды сулардан және өндіріс қалдықтарынан физика-химиялық негізі бойынша қорғасын иондарын бөліп алу 2014 - г. 1 - стр. факультет химии и химической технологии

13

Оспанова Алья Капановна 9. Ибрагимова Г. Қазақстаннның табиғи шикізатынан полиадсорбент алудың оптимальды жағдайлары 2014 - г. 1 - стр. факультет химии и химической технологии

14

Оспанова Алья Капановна Джанкарашева Г. Медико-биологиялық имплантаттар үшін антимикробты қабат алу шарттары 2014 - г. 1 - стр. факультет химии и химической технологии

15

Оспанова Алья Капановна 11. Zhumat A.A. Development of optimum conditions for obtaining universal polyadsorbent 2014 - г. 1 - стр. факультет химии и химической технологии

16

Оспанова Алья Капановна Оспанова А.К., Ташмухамбетова Ж.Х., Ашимхан Н.С., Каирбеков Ж.К., Тастанов Н. Бердибек Г.Получение катализаторов методом мультислойной сборки и исследование химической природы металлов в бислоях таких композитных материалов 2014 - г. 1 - стр. г. Самара

17

Оспанова Алья Капановна Alia K. Ospanova, Svetlana Sukhishvili, Almagul Mentbaeva, Maxim A. Dergunov, Sergey A. Dergunov Preparation of Polyelectrolyte Multilayer Nanocatalysts 2014 - г. 1 - стр.

18

Оспанова Алья Капановна Условия получения антибактериальных покрытиий на медико- биологические изделия 2015 - г. 2 - стр. Алматы. КазНМУ им.С.Ж. Асфендирова

19

Оспанова Алья Капановна Микробиологическая оценка антибактериальных покрытий для медико-биологических имплантатов 2016 - г. 5 - стр.

20

Оспанова Алья Капановна Кванто-химическое исследование хлоргексидина как антибактериального препарата 2016 - г. 7 - стр. Северный Чарльстон

21

Оспанова Алья Капановна Квантово-химическое обонование антибактериальной активности триклозана 2016 - г. 2 - стр. Новосибирск

22

Оспанова Алья Капановна Квантовохимическое исследование структуры и прогноз участия функциональных групп хлоргексидина при получении антибактериальных нанопокрытий в мультислоях 2016 - г. 6 - стр. Алматы

23

Оспанова Алья Капановна Исследование антибактериальной активности триклозана и хлоргексидина в мультислоях на основе хитозана и карбоксиметилцеллюлозы 2016 - г. 10 - стр. Алматы

24

Оспанова Алья Капановна Получение пористой платформы на основе диатомита с каталитическими и сорбционными свойствами. 2016 - г. 10 - стр. Алматы

25

Оспанова Алья Капановна ФИЗИКО-ХИМИЧЕСКОЕ ОБОСНОВАНИЕ ПРИМЕНЕНИЯ ТРИКЛОЗАНА И ХЛОРГЕКСИДИНА ДЛЯ ПОЛУЧЕНИЯ АНТИБАКТЕРИАЛЬНЫХ ПОКРЫТИЙ НА ОСНОВЕ ХИТОЗАНА И КАРБОКСИМЕТИЛЦЕЛЛЮЛОЗЫ 2016 - г. 8 - стр. Алматы

26

Оспанова Алья Капановна The method of multilayer assemblies as an alternative for obtaining of new materiaks with bioactive properties 2016 - г. 5 - стр. Елените

27

Оспанова Алья Капановна Obtaining thin-films based on chitosan and carboxymethylcellulose with antibacterial properties for biomedical devices 2017 - г. 4 - стр. Барселона

28

Оспанова Алья Капановна Obtaining of nanofilms based on Ag-Chitosan /Na-Carboxymethylcellulose on the surface of titanium implants 2018 - г. 1 - стр.

29

Оспанова Алья Капановна Obtaining of nanofilms based on Ag-Chitosan /Na-Carboxymethylcellulose on the surface of titanium implants 2018 - г. 1 - стр.

30

Оспанова Алья Капановна Изучение влияния толщины мультислоев на рост и морфологию пленок на основе Na-КМЦ/Хитозан 2018 - г. 1 - стр. Москва, Россия
Author Documents

14

Citations

108 по 104
documents

h-index

5

Synthesis and Antimicrobial Activity of 3D Micro–Nanostructured Diatom Biosilica Coated by Epitaxially Growing Ag-AgCl Hybrid Nanoparticles

Bekissanova, Z., Railean, V., Wojtczak, I., Brzozowska, W., Trykowski, G., Ospanova, A., Sprynskyy, M.

2024

Biomimetics
9, с.

1

Цитирований
Development and characterization of antibacterial coatings on surgical sutures based on sodium carboxymethyl cellulose/chitosan/chlorhexidine

Rakhmatullayeva, D., Ospanova, A., Bekissanova, Z., Jumagaziyeva, A., Savdenbekova, B., Seidulayeva, A., Sailau, A.

2023

International Journal of Biological Macromolecules
236, с.

16

Цитирований
Synthesis, characterization of silver/kaolinite nanocomposite and studying its antibacterial activity

Bekissanova, Z., Railean, V., Brzozowska, W., Wojtczak, I., Ospanova, A., Buszewski, B., Sprynskyy, M.

2022

Colloids and Surfaces B: Biointerfaces
220, с.

9

Цитирований
Synthesis and antibacterial activity of (AgCl, Ag)NPs/diatomite hybrid composite

Kubasheva, Z., Sprynskyy, M., Railean-Plugaru, V., Pomastowski, P., Ospanova, A., Buszewski, B.

2020

Materials
13, с. 1-12

22

Цитирований
Several features of producing polyelectrolyte-based nanolayers by the multi-layer assembly

Ospanova, A., Savdenbekova, B., Kubasheva, Z., Baltabayeva, B., Uvarov, N.

2020

Materials Today: Proceedings
31, с. 584-587

1

Цитирований
Study of the chemical state of palladium ions in multilayers of a catalytic activity

Ospanova, A., Tashmukhambetova, Z., Kairbekov, Z., Ashimkhan, N., Zhussupova, A.

2019

Journal of Chemical Technology and Metallurgy
54, с. 555-563

1

Цитирований
2019

Journal of Chemical Technology and Metallurgy
54, с. 496-502

0

Цитирований
Obtaining Thin-Films Based on Chitosan and Carboxymethylcellulose with Antibacterial Properties for Biomedical Devices

Ospanova, A.K., Savdenbekova, B.E., Iskakova, M.K., Omarova, R.A., Zhartybaev, R.N., Nussip, B.Z., Abdikadyr, A.S.

2017

IOP Conference Series: Materials Science and Engineering
230, с.

5

Цитирований
Method of multilayer assembly as alternative to antibacterial coverings of medicobiological implants

Ospanova, A.K., Omarova, R.A., Abdurazakov, U.A., Jartybaev, R.N., Iskakova, M.K., Savdenbekova, B.E., Amkhadova, M.A.

2016

Stomatologii︠a︡
95, с. 9-13

2

Цитирований
Polarization and finite size effects in correlation functions of dusty plasmas

Davletov, A.E., Yerimbetova, L.T., Mukhametkarimov, Y.S., Ospanova, A.K.

2015

Contributions to Plasma Physics
55, с. 180-185

3

Цитирований
Finite size effects in the static structure factor of dusty plasmas

Davletov, A.E., Yerimbetova, L.T., Mukhametkarimov, Y.S., Ospanova, A.K.

2014

Physics of Plasmas
21, с.

6

Цитирований
Polymer-metal complexes in polyelectrolyte multilayer films as catalysts for oxidation of toluene

Mentbayeva, A., Ospanova, A., Tashmuhambetova, Z., Sokolova, V., Sukhishvili, S.

2012

Langmuir
28, с. 11948-11955

42

Цитирований
2012

Eurasian Chemico-Technological Journal
14, с. 169-176

0

Цитирований
Evaluating general and occupational morbidity on mining enterprises of Kazakhstan

Battakova, Z.E., Ismailova, A.A., Sultanbekov, Z.K., Onaev, S.T., Ospanova, A.K., Suleǐmenova, A.I., Shametekov, I.M., Suleǐmenov, G.K.

2008

Meditsina truda i promyshlennaia ekologiia
0, с. 1-5

0

Цитирований