Authors

  • Mukhtaram Bobokulova
    Asia International University Assistant of the "General Technical Sciences" department

DOI:

https://doi.org/10.71337/inlibrary.uz.mpttp.58947

Keywords:

hydraulic energy Solar panels wind turbines biomass.

Abstract

In this article, we will focus on the types, advantages, limitations and current status of alternative energy sources. are energy sources that do not require resources. Alternative energy sources reduce emissions, which emit as many pollutants as conventional fuels and increase the risk of global warming. The use of domestic energy sources can reduce countries' dependence on energy imports.


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

282

https://universalpublishings.com

Alternative energy sources and their use
Bobokulova Mukhtaram Khamroyevna

Asia International University

Assistant of the "General Technical Sciences" department

Dear Mr. Boboqulova607@gmail.com

ANNOSTATION.

In this article, we will focus on the types, advantages, limitations and

current status of alternative energy sources. are energy sources that do not require
resources. Alternative energy sources reduce emissions, which emit as many
pollutants as conventional fuels and increase the risk of global warming. The use
of domestic energy sources can reduce countries' dependence on energy imports.

Keywords

:hydraulic energy. Solar panels, wind turbines, biomass.

Enter.

Today, interest and investment in alternative energy sources is

increasing. Many countries are developing alternative energy sources to
diversify their energy mix and ensure environmental sustainability. Advances
in innovative technologies, energy storage and energy efficiency will help
increase the competitiveness of alternative energy sources.

LITERATURE ANALYSIS AND METHODOLOGY.

The role of alternative energy sources is expected to increase in the future.

As a result, there can be positive changes in the energy production and
consumption systems, which will help to solve global warming and other
environmental problems. A wider understanding of alternative energy sources
and the development of effective strategies, in the future, sustainable and It is
important to ensure the supply of clean energy. Alternative energy sources
occupy an important place in the world energy system, and their importance is
manifested in several main directions. Solar energy is energy that reaches the
earth's surface through sunlight. Using solar panels and solar thermal collectors,
this energy can be converted into electricity or heat. Among the advantages of


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

283

https://universalpublishings.com

solar energy are unlimited and renewable, less damage to the ecosystem and
lower costs of energy production. Solar energy is a renewable resource because
the sun continuously produces energy. This allows it to be used as an
inexhaustible natural resource. Solar energy production does not emit carbon
dioxide or other pollutants, which reduces air pollution and helps prevent global
warming. Once installed, solar panels are relatively inexpensive to operate. They
provide long-term service and require low energy production costs. The use of
solar energy provides independence of energy sources to countries and regions.
This is especially important for energy importing countries. Technologies based
on solar energy, such as solar panels and solar thermal systems, promote high-
tech and innovative industries, which contribute to new jobs and economic
growth. Solar energy diversifies the energy mix and has multiple energy sources.
which increases overall energy security. Solar energy can be used in a variety of
settings, including homes, industrial facilities, and agriculture. This allows the
energy source to be adapted to different needs. Solar panels can work efficiently
for a long time. They can typically produce energy for 25-30 years or more.

Wind turbines use the kinetic energy of the wind. Wind energy is a clean and

renewable energy source that reduces emissions during energy production.
However, the efficiency of wind energy depends on the wind resources of the place.
Wind power plants (or wind power plants) are structures that generate electricity
using wind turbines. These stations convert the kinetic energy of the wind into
electrical energy. A wind turbine transmits the movement of the wind through rotors
to a generator that rotates, which produces electricity. Wind energy has the following
advantages. Wind energy is an inexhaustible resource that is always available in
nature. The energy produced by wind turbines is clean and does not emit gases or
dust. Once built, wind farms have relatively low operating costs. However, wind
farms also have some disadvantages. Wind speed and direction can change
constantly, which can make it difficult to maintain power generation. A large area is
required for the placement of wind farms, and in some areas there are restrictions on
compatibility with urban infrastructure. The development of wind energy is very fast
in the world, and many countries are making large investments in this field. For
example, countries such as Denmark, Germany and the USA are the leading
exporters of wind energy. Hydraulic power uses the kinetic energy of water flow.


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

284

https://universalpublishings.com

Electricity generated by floods or reservoirs can be economically efficient, but has
environmental impacts, such as altering aquatic ecosystems.Hydropower is a method
of generating electricity using the movement or pressure of a fluid. Usually, these
energy systems are called hydroelectric plants (HPP). In the production of hydraulic
energy, the liquid is mainly transferred through rivers or artificial reservoirs and their
potential energy is converted into electrical energy. Water flowing down from a
height converts potential energy into kinetic energy. When the water pressure goes
from top to bottom, it rotates the rotors, which produces electricity through a
generator. Water flows through turbines. Turbines convert the movement of water
into rotating mechanical energy. The rotating parts of the turbine turn the generator,
which produces electricity. Water resources are naturally renewable and
inexhaustible. Waste and pollution are very low during hydropower generation.
Reservoirs provide energy storage because water can be stored and released when
needed. Continuous availability of water flows helps to stabilize the energy
supply.The construction of large reservoirs can significantly affect the natural
environment, for example, fauna and flora, migration, etc. Hydroelectric stations are
only effective in certain locations, such as near large rivers or mountains. Changes
in water resources or drought conditions can affect energy production. Hydropower
has a long history of production worldwide, and it is the main source of renewable
energy in many countries. For example, countries such as China, Canada, and Brazil
are the leading countries in the production of hydraulic energy. Biomass is energy
produced from organic materials such as wood, agricultural waste and other organic
waste. Biomass energy is used to generate heat and electricity, and it emits biogenic
carbon dioxide, but it also allows the recycling of waste. Scientific and technological
research in the field of alternative energy is leading to new innovations. This field
will be enriched by new energy storage technologies, energy-efficient materials and
new methods of energy production. Innovation and technological development make
alternative energy more efficient and affordable. Alternative energy sources play an
important role in combating global warming and climate change. By reducing the
use of conventional energy sources, the emission of carbon dioxide and other gases
that contribute to climate change can be reduced. At the same time, it helps to make
energy production less damaging to the ecosystem. Alternative energy sources are
important in ensuring environmental sustainability, increasing energy independence,
increasing economic benefits, improving social health, and fighting global warming.


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

285

https://universalpublishings.com

In the future, these sources are expected to form the main part of the global energy
system, and they will be an important factor for sustainable and clean energy supply.
Alternative energy sources provide a number of important benefits in meeting
human needs. Pollutants released during conventional energy production are present
in the air, water and soil and can harm human health. Alternative energy sources, on
the other hand, avoid these emissions and improve air quality. As a result, respiratory
systems, cardiovascular systems and other health problems are reduced. Alternative
energy sources can be economically beneficial. New technologies and energy
storage methods create innovation and jobs. The long-term costs of energy
production are lower because solar panels and wind turbines do not require long-
term maintenance.Alternative energy sources allow the use of local resources, which
reduces countries' dependence on energy imports. Energy independence increases
economic stability and improves political security because geopolitical forces
dependent on energy sources are reduced. Development of alternative energy
technologies increases energy efficiency. For example, energy storage technologies
and energy-efficient materials optimize energy consumption. It also ensures the
stability of the energy supply and helps to reduce energy costs. It encourages the
development of the infrastructure needed to install alternative energy sources,
especially solar panels and wind turbines. This, in turn, helps improve local
infrastructure and economic growth. Alternative energy sources can help preserve
local culture and historical values. For example, wind turbines or solar panels located
in rural areas are used as alternatives to traditional energy sources, which are
important for local communities.

Summary.

Alternative energy sources provide a number of key benefits in meeting

human needs, including sustainable and clean energy supply, environmental
protection, health improvement, economic benefits, energy independence,
energy efficiency, infrastructure development, and preservation of social and
cultural values. Therefore, the transition to alternative energy sources is an
important step to make the global energy system more sustainable and
efficient. Alternative energy sources provide a number of key benefits in
meeting human needs, including stable and clean energy supply,
environmental protection, health Sustainable energy resources are energy


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

286

https://universalpublishings.com

sources that help to protect the environment, social and economic stability in
energy production and are available indefinitely or for a long time. These
resources are important for reducing ecological footprints, increasing energy
security and stimulating economic development. Sustainable energy resources
are important in protecting the environment, improving energy security and
supporting economic development. Each of these resources has its own
characteristics, advantages and limitations, so by using and integrating them
effectively, the sustainability of the global energy system can be increased.

Used literature.

1.

Muxtaram Boboqulova Xamroyevna. (2024). GEYZENBERG

NOANIQLIK PRINTSIPINING UMUMIY TUZILISHI . TADQIQOTLAR.UZ,
34(3), 3–12.

2.

Muxtaram Boboqulova Xamroyevna. (2024). THERMODYNAMICS

OF LIVING SYSTEMS. Multidisciplinary Journal of Science and Technology, 4(3),
303–308.

3.

Muxtaram

Boboqulova

Xamroyevna.

(2024).

QUYOSH

ENERGIYASIDAN FOYDALANISH . TADQIQOTLAR.UZ, 34(2), 213–220.

4.

Xamroyevna, M. B. (2024). Klassik fizika rivojlanishida kvant

fizikasining orni. Ta'limning zamonaviy transformatsiyasi, 6(1), 9-19.

5.

Xamroyevna, M. B. (2024). ELEKTRON MIKROSKOPIYA

USULLARINI TIBBIYOTDA AHAMIYATI.

PEDAGOG

,

7

(4), 273-280.

6.

Boboqulova,

M.

X.

(2024).

FIZIKANING

ISTIQBOLLI

TADQIQOTLARI.

PEDAGOG

,

7

(5), 277-283.

7.

Xamroyevna, M. B. (2024). RADIATSION NURLARNING INSON

ORGANIZMIGA TASIRI.

PEDAGOG

,

7

(6), 114-125.

8.

Jalilov, R., Latipov, S., Aslonov, Q., Choriyev, A., & Maxbuba, C.

(2021, January). To the question of the development of servers of real-time
management systems of electrical engineering complexes on the basis of modern
automation systems. In CEUR Workshop Proceedings (Vol. 2843).

9.

To’raqulovich, M. O. (2024). OLIY TA’LIM MUASSASALARIDA

AXBOROT

KOMMUNIKASIYA

TEXNOLOGIYALARI

DARSLARINI

TASHKIL

ETISHDA

ZAMONAVIY

USULLARDAN

FOYDALANISH.

PEDAGOG

,

7

(6), 63-74.


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

287

https://universalpublishings.com

10.

Muradov, O. (2024, January). IN TEACHING INFORMATICS AND

INFORMATION TECHNOLOGIES REQUIREMENTS. In

Международная

конференция академических наук

(Vol. 3, No. 1, pp. 97-102).

11.

To’raqulovich, M. O. (2024). OLIY TA’LIM MUASSASALARIDA

TA’LIMNING

INNOVASION

TEXNOLOGIYALARDAN

FOYDALANISH.

PEDAGOG

,

7

(5), 627-635.

12.

To’raqulovich, M. O. (2024). IMPROVING THE TEACHING

PROCESS OF IT AND INFORMATION TECHNOLOGIES BASED ON AN
INNOVATIVE APPROACH.

Multidisciplinary Journal of Science and

Technology

,

4

(3), 851-859.

13.

Murodov, O. (2024). DEVELOPMENT AND INSTALLATION OF

AN AUTOMATIC TEMPERATURE CONTROL SYSTEM IN ROOMS.

Solution

of social problems in management and economy

,

3

(2), 91-94.

14.

Tursunov, B. J., & Allanazarov, G. O. (2019). Perspektivnye tehnologii

proizvodstva po uluchsheniyu kachestva benzina.

Theory and practice of

contemporary science

,

3

(45), 305-308.

15.

Турсунов, Б. Ж., & Алланазаров, Г. О. (2019). Перспективные

технологии производства по улучшению качества бензина.

Теория и практика

современной науки

, (3 (45)), 305-308.

16.

Tursunov, B. Z. (2023). Analysis of Concepts About the Effect of an

Explosion in Solid Wednesday.

American Journal of Public Diplomacy and

International Studies (2993-2157)

,

1

(10), 296-304.

17.

Tursunov, B. Z. (2023). Methods of Control of Explosion Energy

Distribution in Rocks.

Intersections of Faith and Culture: American Journal of

Religious and Cultural Studies (2993-2599)

,

1

(10), 108-117.

18.

Tursunov, B. Z. (2023). WASTE-FREE TECHNOLOGY FOR

ENRICHMENT OF PURIFIC COPPER-ZINC ORE.

American Journal of Public

Diplomacy and International Studies (2993-2157)

,

1

(9), 288-293.

19.

Tursunov, B. Z. (2023). ANALYSIS OF MODERN METHODS FOR

OIL SLUDGE PROCESSING.

American Journal of Public Diplomacy and

International Studies (2993-2157)

,

1

(9), 280-287.

20.

Jumaev, K., & Tursunov, B. (2022, December). Environmentally

friendly technology for obtaining fuel briquettes from oil waste. In

IOP Conference


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

288

https://universalpublishings.com

Series: Earth and Environmental Science

(Vol. 1112, No. 1, p. 012005). IOP

Publishing.

21.

Ахмедова, О. Б., Турсунов, Б. Ж., & угли Худойбердиев, Н. Н.

(2022). Анализ физико-химических свойств нефтешламов Бухарского НПЗ и
рациональные способы их утилизации.

Science and Education

,

3

(6), 495-507.

22.

Турсунов, Б. Д. (2016). Анализ и выявление путей

совершенствования процессов горного дела.

Молодой ученый

, (23), 105-106.

23.

Djuraevich, A. J. (2021). Zamonaviy ta'lim muhitida raqamli

pedagogikaning o’rni va ahamiyati.

Евразийский журнал академических

исследований

,

1

(9), 103-107.

24.

Ashurov, J. D. R. (2023). OLIY O ‘QUV YURTLARI

TALABALARIGA YADRO TIBBIYOTINI O ‘QITISHDA INNOVATSION
TA’LIM TEXNOLOGIYALAR VA METODLARINI QO ‘LLASHNING
AHAMIYATI.

Results of National Scientific Research International Journal

,

2

(6),

137-144.

25.

Ashurov,

J.

D.

(2024).

TA'LIM

JARAYONIDA

SUN'IY

INTELEKTNI QO'LLASHNING AHAMIYATI.

PEDAGOG

,

7

(5), 698-704.

26.

Djurayevich, A. J. (2021). Education and pedagogy.

Journal of

Pedagogical Inventions and Practices

,

3

, 179-180.

27.

Ashurov, J. (2023). THE IMPORTANCE OF USING INNOVATIVE

EDUCATIONAL TECHNOLOGIES IN TEACHING THE SCIENCE OF
INFORMATION TECHNOLOGY AND MATHEMATICAL MODELING OF
PROCESSES.

Development and innovations in science

,

2

(12), 80-86.

28.

Ashurov, J. D. (2022). Nuclear medicine in higher education

institutions of the republic of uzbekistan: Current status and prospects.

29.

Umarov, S. K., Nuritdinov, I., Ashurov, Z. D., & Khallokov, F. K.

(2017). Single crystals of TlIn 1–x Co x Se 2 (0≤ x≤ 0.5) solid solutions as effective
materials for semiconductor tensometry.

Technical Physics Letters

,

43

, 730-732.

30.

Умаров, С. Х., Нуритдинов, И., Ашуров, Ж. Ж., & Халлоков, Ф. К.

(2019). Удельные сопротивления и тензорезистивные характеристики
кристаллов твердых растворов системы TlInSe _2–CuInSe _2.

Журнал

технической физики

,

89

(2), 214-217.


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

289

https://universalpublishings.com

31.

Umarov, S. K., Nuritdinov, I., Ashurov, Z. Z., & Khallokov, F. K.

(2019). Resistivity and Tensoresistive Characteristics of TlInSe 2–CuInSe 2 Solid
Solutions.

Technical Physics

,

64

, 183-186.

32.

Ашуров, Ж. Д., Нуритдинов, И., & Умаров, С. Х. (2011). Влияние

температуры и примесей элементов I и IV групп на тензорезистивные свойства
монокристаллов TlInSe2.

Перспективные материалы

, (1), 11-.

33.

Ashurov, J. (2023). TA’LIMDA AXBOROT TEXNOLOGIYALARI

FANI O ‘QITISHDA INNOVATSION TA’LIM TEXNOLOGIYALARINING
AHAMIYATI.

Theoretical aspects in the formation of pedagogical sciences

,

3

(4),

105-109.

34.

Djo‘rayevich, A. J. (2024). THE IMPORTANCE OF USING THE

PEDAGOGICAL

METHOD

OF

THE"

INSERT"

STRATEGY

IN

INFORMATION TECHNOLOGY PRACTICAL EXERCISES.

Multidisciplinary

Journal of Science and Technology

,

4

(3), 425-432.

35.

Ashurov, J. D. (2024). AXBOROT TEXNOLOGIYALARI VA

JARAYONLARNI MATEMATIK MODELLASHTIRISH FANINI O ‘QITISHDA
INNOVATSION

YONDASHUVGA

ASOSLANGAN

METODLARNING

AHAMIYATI.

Zamonaviy fan va ta'lim yangiliklari xalqaro ilmiy jurnal

,

2

(1), 72-

78.

36.

Ashurov, J. (2023). OLIY TA’LIM MUASSASALARIDA

“RADIOFARMATSEVTIK PREPARATLARNING GAMMA TERAPIYADA
QO

‘LLANILISHI”

MAVZUSINI

“FIKR,

SABAB,

MISOL,

UMUMLASHTIRISH

(FSMU)”

METODI

YORDAMIDA

YORITISH.

Центральноазиатский журнал образования и инноваций

,

2

(6 Part

4), 175-181.

37.

Djorayevich, A. J. (2022). EXPLANATION OF THE TOPIC" USE OF

RADIOPHARMACEUTICALS IN GAMMA THERAPY" IN HIGHER
EDUCATION

INSTITUTIONS

USING

THE"

THOUGHT,

REASON,

EXAMPLE, GENERALIZATION (THREG)" METHOD.

38.

Ашуров, Ж. Д. (2023). ИННОВАЦИОННЫЕ ТЕХНОЛОГИИ И

МЕТОДЫ ОБУЧЕНИЯ В ПРЕПОДАВАНИИ ЯДЕРНОЙ МЕДИЦИНЫ
СТУДЕНТАМ ВЫСШИХ УЧЕБНЫХ ЗАВЕДЕНИЙ.

Modern Scientific

Research International Scientific Journal

,

1

(4), 29-37.


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

290

https://universalpublishings.com

39.

Djo‘rayevich, A. J., & Xojiyevich, B. E. (2022). OLIY TA’LIM

MUASSASALARIDA “YADRO TIBBIYOTIDA RADIATSION XAVFSIZLIK”
MAVZUSINI O ‘QITISHDA MUAMMOLI VAZIYAT METODINI QO
‘LLASH.

Farg'ona davlat universiteti

, (5), 69-69.

40.

Behruz Ulugbek og, Q. (2024). ADOBE PHOTOSHOP CC

DASTURIDA ISHLASH.

PEDAGOG

,

7

(4), 390-396.

41.

Behruz Ulugbek og, Q. (2024). FUNDAMENTALS OF ALGORITHM

AND PROGRAMMING IN MATHCAD SOFTWARE.

Multidisciplinary Journal

of Science and Technology

,

4

(3), 410-418.

42.

Babaev, S., Olimov, N., Imomova, S., & Kuvvatov, B. (2024, March).

Construction of natural L spline in W2, σ (2, 1) space. In

AIP Conference

Proceedings

(Vol. 3004, No. 1). AIP Publishing.

43.

Behruz Ulugbek og, Q. (2023). TECHNOLOGY AND MEDICINE: A

DYNAMIC PARTNERSHIP.

International Multidisciplinary Journal for Research

& Development

,

10

(11).

44.

Behruz Ulug‘bek o‘g, Q. (2023). USE OF ARTIFICIAL NERVOUS

SYSTEMS IN MODELING.

Multidisciplinary Journal of Science and

Technology

,

3

(5), 269-273.

45.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN

KVADRATUR

FORMULALAR.

KLASSIK

GAUSS

KVADRATURALARI.

Инновационные исследования в науке

,

3

(2), 94-103.

46.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN

KVADRATUR FORMULALAR. SIMPSON FORMULASI.

Models and methods

in modern science

,

3

(2), 223-228.

47.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN

KVADRATUR

FORMULALAR.

ROMBERG

INTEGRALLASH

FORMULASI.

Центральноазиатский журнал образования и инноваций

,

3

(2

Part 2), 107-112.

48.

Quvvatov, B. (2024, February). TORTBURCHAK ELEMENT

USTIDA GAUSS–LEJANDR FORMULASI. In

Международная конференция

академических наук

(Vol. 3, No. 2, pp. 101-108).

49.

Behruz Ulug‘bek o‘g, Q. li.(2023). Mobil ilovalar yaratish va ularni

bajarish jarayoni.

International journal of scientific researchers

,

2

(2).


background image

МЕДИЦИНА, ПЕДАГОГИКА И ТЕХНОЛОГИЯ:

ТЕОРИЯ И ПРАКТИКА

Researchbib Impact factor: 11.79/2023

SJIF 2024 = 5.444

Том 2, Выпуск 9, 30 Сентябрь

291

https://universalpublishings.com

50.

Quvvatov, B. (2024, February). ALGEBRAIK ANIQLIGI YUQORI

BOLGAN KVADRATUR FORMULALAR. REKURSIV TRAPETSIYALAR
QOIDASI. In

Международная конференция академических наук

(Vol. 3, No. 2,

pp. 41-51).

51.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN

KVADRATUR

FORMULALAR.

ORTOGONAL

KOPHADLAR.

Инновационные исследования в науке

,

3

(2), 47-59.

52.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN

KVADRATUR

FORMULALAR.

GAUSS

KVADRATUR

FORMULALARI.

Models and methods in modern science

,

3

(2), 114-125.

53.

Quvvatov, B. (2024). GLOBAL IN VIRTUAL LEARNING MOBILE

APP CREATION INFORMATION SYSTEMS AND TECHNOLOGIES.

Science

and innovation in the education system

,

3

(1), 95-104.

54.

Quvvatov, B. (2024). WEB FRONT-END AND BACK-END

TECHNOLOGIES IN PROGRAMMING.

Theoretical aspects in the formation of

pedagogical sciences

,

3

(1), 208-215.

55.

Quvvatov, B. (2024). FINDING SOLUTIONS OF SPECIAL

MODELS

BY

INTEGRATING

INTEGRAL

EQUATIONS

AND

MODELS.

Current approaches and new research in modern sciences

,

3

(1), 122-

130.

56.

Quvvatov, B. (2024). CONSTRUCTION OF SPECIAL MODELS

THROUGH

DIFFERENTIAL

EQUATIONS

AND

PRACTICAL

SOLUTIONS.

Solution of social problems in management and economy

,

3

(1), 108-

115.

57.

Karimov,

F.

(2022).

ANIQ

INTEGRALNI

TAQRIBIY

HISOBLASH.

ЦЕНТР НАУЧНЫХ ПУБЛИКАЦИЙ (buxdu. uz)

,

14

(14).

58.

Quvvatov, B. (2024). SQL DATABASES AND BIG DATA

ANALYTICS:

NAVIGATING

THE

DATA

MANAGEMENT

LANDSCAPE.

Development of pedagogical technologies in modern sciences

,

3

(1),

117-124.

59.

Quvvatov, B. (2023). ALGEBRAIK ANIQLIGI YUQORI BOLGAN

KVADRATUR

FORMULALAR.

UMUMLASHGAN

TRAPETSIYALAR

QOIDASI.

Академические исследования в современной науке

,

3

(7), 137-142.

References

Muxtaram Boboqulova Xamroyevna. (2024). GEYZENBERG NOANIQLIK PRINTSIPINING UMUMIY TUZILISHI . TADQIQOTLAR.UZ, 34(3), 3–12.

Muxtaram Boboqulova Xamroyevna. (2024). THERMODYNAMICS OF LIVING SYSTEMS. Multidisciplinary Journal of Science and Technology, 4(3), 303–308.

Muxtaram Boboqulova Xamroyevna. (2024). QUYOSH ENERGIYASIDAN FOYDALANISH . TADQIQOTLAR.UZ, 34(2), 213–220.

Xamroyevna, M. B. (2024). Klassik fizika rivojlanishida kvant fizikasining orni. Ta'limning zamonaviy transformatsiyasi, 6(1), 9-19.

Xamroyevna, M. B. (2024). ELEKTRON MIKROSKOPIYA USULLARINI TIBBIYOTDA AHAMIYATI. PEDAGOG, 7(4), 273-280.

Boboqulova, M. X. (2024). FIZIKANING ISTIQBOLLI TADQIQOTLARI. PEDAGOG, 7(5), 277-283.

Xamroyevna, M. B. (2024). RADIATSION NURLARNING INSON ORGANIZMIGA TASIRI. PEDAGOG, 7(6), 114-125.

Jalilov, R., Latipov, S., Aslonov, Q., Choriyev, A., & Maxbuba, C. (2021, January). To the question of the development of servers of real-time management systems of electrical engineering complexes on the basis of modern automation systems. In CEUR Workshop Proceedings (Vol. 2843).

To’raqulovich, M. O. (2024). OLIY TA’LIM MUASSASALARIDA AXBOROT KOMMUNIKASIYA TEXNOLOGIYALARI DARSLARINI TASHKIL ETISHDA ZAMONAVIY USULLARDAN FOYDALANISH. PEDAGOG, 7(6), 63-74.

Muradov, O. (2024, January). IN TEACHING INFORMATICS AND INFORMATION TECHNOLOGIES REQUIREMENTS. In Международная конференция академических наук (Vol. 3, No. 1, pp. 97-102).

To’raqulovich, M. O. (2024). OLIY TA’LIM MUASSASALARIDA TA’LIMNING INNOVASION TEXNOLOGIYALARDAN FOYDALANISH. PEDAGOG, 7(5), 627-635.

To’raqulovich, M. O. (2024). IMPROVING THE TEACHING PROCESS OF IT AND INFORMATION TECHNOLOGIES BASED ON AN INNOVATIVE APPROACH. Multidisciplinary Journal of Science and Technology, 4(3), 851-859.

Murodov, O. (2024). DEVELOPMENT AND INSTALLATION OF AN AUTOMATIC TEMPERATURE CONTROL SYSTEM IN ROOMS. Solution of social problems in management and economy, 3(2), 91-94.

Tursunov, B. J., & Allanazarov, G. O. (2019). Perspektivnye tehnologii proizvodstva po uluchsheniyu kachestva benzina. Theory and practice of contemporary science, 3(45), 305-308.

Турсунов, Б. Ж., & Алланазаров, Г. О. (2019). Перспективные технологии производства по улучшению качества бензина. Теория и практика современной науки, (3 (45)), 305-308.

Tursunov, B. Z. (2023). Analysis of Concepts About the Effect of an Explosion in Solid Wednesday. American Journal of Public Diplomacy and International Studies (2993-2157), 1(10), 296-304.

Tursunov, B. Z. (2023). Methods of Control of Explosion Energy Distribution in Rocks. Intersections of Faith and Culture: American Journal of Religious and Cultural Studies (2993-2599), 1(10), 108-117.

Tursunov, B. Z. (2023). WASTE-FREE TECHNOLOGY FOR ENRICHMENT OF PURIFIC COPPER-ZINC ORE. American Journal of Public Diplomacy and International Studies (2993-2157), 1(9), 288-293.

Tursunov, B. Z. (2023). ANALYSIS OF MODERN METHODS FOR OIL SLUDGE PROCESSING. American Journal of Public Diplomacy and International Studies (2993-2157), 1(9), 280-287.

Jumaev, K., & Tursunov, B. (2022, December). Environmentally friendly technology for obtaining fuel briquettes from oil waste. In IOP Conference Series: Earth and Environmental Science (Vol. 1112, No. 1, p. 012005). IOP Publishing.

Ахмедова, О. Б., Турсунов, Б. Ж., & угли Худойбердиев, Н. Н. (2022). Анализ физико-химических свойств нефтешламов Бухарского НПЗ и рациональные способы их утилизации. Science and Education, 3(6), 495-507.

Турсунов, Б. Д. (2016). Анализ и выявление путей совершенствования процессов горного дела. Молодой ученый, (23), 105-106.

Djuraevich, A. J. (2021). Zamonaviy ta'lim muhitida raqamli pedagogikaning o’rni va ahamiyati. Евразийский журнал академических исследований, 1(9), 103-107.

Ashurov, J. D. R. (2023). OLIY O ‘QUV YURTLARI TALABALARIGA YADRO TIBBIYOTINI O ‘QITISHDA INNOVATSION TA’LIM TEXNOLOGIYALAR VA METODLARINI QO ‘LLASHNING AHAMIYATI. Results of National Scientific Research International Journal, 2(6), 137-144.

Ashurov, J. D. (2024). TA'LIM JARAYONIDA SUN'IY INTELEKTNI QO'LLASHNING AHAMIYATI. PEDAGOG, 7(5), 698-704.

Djurayevich, A. J. (2021). Education and pedagogy. Journal of Pedagogical Inventions and Practices, 3, 179-180.

Ashurov, J. (2023). THE IMPORTANCE OF USING INNOVATIVE EDUCATIONAL TECHNOLOGIES IN TEACHING THE SCIENCE OF INFORMATION TECHNOLOGY AND MATHEMATICAL MODELING OF PROCESSES. Development and innovations in science, 2(12), 80-86.

Ashurov, J. D. (2022). Nuclear medicine in higher education institutions of the republic of uzbekistan: Current status and prospects.

Umarov, S. K., Nuritdinov, I., Ashurov, Z. D., & Khallokov, F. K. (2017). Single crystals of TlIn 1–x Co x Se 2 (0≤ x≤ 0.5) solid solutions as effective materials for semiconductor tensometry. Technical Physics Letters, 43, 730-732.

Умаров, С. Х., Нуритдинов, И., Ашуров, Ж. Ж., & Халлоков, Ф. К. (2019). Удельные сопротивления и тензорезистивные характеристики кристаллов твердых растворов системы TlInSe _2–CuInSe _2. Журнал технической физики, 89(2), 214-217.

Umarov, S. K., Nuritdinov, I., Ashurov, Z. Z., & Khallokov, F. K. (2019). Resistivity and Tensoresistive Characteristics of TlInSe 2–CuInSe 2 Solid Solutions. Technical Physics, 64, 183-186.

Ашуров, Ж. Д., Нуритдинов, И., & Умаров, С. Х. (2011). Влияние температуры и примесей элементов I и IV групп на тензорезистивные свойства монокристаллов TlInSe2. Перспективные материалы, (1), 11-.

Ashurov, J. (2023). TA’LIMDA AXBOROT TEXNOLOGIYALARI FANI O ‘QITISHDA INNOVATSION TA’LIM TEXNOLOGIYALARINING AHAMIYATI. Theoretical aspects in the formation of pedagogical sciences, 3(4), 105-109.

Djo‘rayevich, A. J. (2024). THE IMPORTANCE OF USING THE PEDAGOGICAL METHOD OF THE" INSERT" STRATEGY IN INFORMATION TECHNOLOGY PRACTICAL EXERCISES. Multidisciplinary Journal of Science and Technology, 4(3), 425-432.

Ashurov, J. D. (2024). AXBOROT TEXNOLOGIYALARI VA JARAYONLARNI MATEMATIK MODELLASHTIRISH FANINI O ‘QITISHDA INNOVATSION YONDASHUVGA ASOSLANGAN METODLARNING AHAMIYATI. Zamonaviy fan va ta'lim yangiliklari xalqaro ilmiy jurnal, 2(1), 72-78.

Ashurov, J. (2023). OLIY TA’LIM MUASSASALARIDA “RADIOFARMATSEVTIK PREPARATLARNING GAMMA TERAPIYADA QO ‘LLANILISHI” MAVZUSINI “FIKR, SABAB, MISOL, UMUMLASHTIRISH (FSMU)” METODI YORDAMIDA YORITISH. Центральноазиатский журнал образования и инноваций, 2(6 Part 4), 175-181.

Djorayevich, A. J. (2022). EXPLANATION OF THE TOPIC" USE OF RADIOPHARMACEUTICALS IN GAMMA THERAPY" IN HIGHER EDUCATION INSTITUTIONS USING THE" THOUGHT, REASON, EXAMPLE, GENERALIZATION (THREG)" METHOD.

Ашуров, Ж. Д. (2023). ИННОВАЦИОННЫЕ ТЕХНОЛОГИИ И МЕТОДЫ ОБУЧЕНИЯ В ПРЕПОДАВАНИИ ЯДЕРНОЙ МЕДИЦИНЫ СТУДЕНТАМ ВЫСШИХ УЧЕБНЫХ ЗАВЕДЕНИЙ. Modern Scientific Research International Scientific Journal, 1(4), 29-37.

Djo‘rayevich, A. J., & Xojiyevich, B. E. (2022). OLIY TA’LIM MUASSASALARIDA “YADRO TIBBIYOTIDA RADIATSION XAVFSIZLIK” MAVZUSINI O ‘QITISHDA MUAMMOLI VAZIYAT METODINI QO ‘LLASH. Farg'ona davlat universiteti, (5), 69-69.

Behruz Ulugbek og, Q. (2024). ADOBE PHOTOSHOP CC DASTURIDA ISHLASH. PEDAGOG, 7(4), 390-396.

Behruz Ulugbek og, Q. (2024). FUNDAMENTALS OF ALGORITHM AND PROGRAMMING IN MATHCAD SOFTWARE. Multidisciplinary Journal of Science and Technology, 4(3), 410-418.

Babaev, S., Olimov, N., Imomova, S., & Kuvvatov, B. (2024, March). Construction of natural L spline in W2, σ (2, 1) space. In AIP Conference Proceedings (Vol. 3004, No. 1). AIP Publishing.

Behruz Ulugbek og, Q. (2023). TECHNOLOGY AND MEDICINE: A DYNAMIC PARTNERSHIP. International Multidisciplinary Journal for Research & Development, 10(11).

Behruz Ulug‘bek o‘g, Q. (2023). USE OF ARTIFICIAL NERVOUS SYSTEMS IN MODELING. Multidisciplinary Journal of Science and Technology, 3(5), 269-273.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. KLASSIK GAUSS KVADRATURALARI. Инновационные исследования в науке, 3(2), 94-103.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. SIMPSON FORMULASI. Models and methods in modern science, 3(2), 223-228.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. ROMBERG INTEGRALLASH FORMULASI. Центральноазиатский журнал образования и инноваций, 3(2 Part 2), 107-112.

Quvvatov, B. (2024, February). TORTBURCHAK ELEMENT USTIDA GAUSS–LEJANDR FORMULASI. In Международная конференция академических наук (Vol. 3, No. 2, pp. 101-108).

Behruz Ulug‘bek o‘g, Q. li.(2023). Mobil ilovalar yaratish va ularni bajarish jarayoni. International journal of scientific researchers, 2(2).

Quvvatov, B. (2024, February). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. REKURSIV TRAPETSIYALAR QOIDASI. In Международная конференция академических наук (Vol. 3, No. 2, pp. 41-51).

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. ORTOGONAL KOPHADLAR. Инновационные исследования в науке, 3(2), 47-59.

Quvvatov, B. (2024). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. GAUSS KVADRATUR FORMULALARI. Models and methods in modern science, 3(2), 114-125.

Quvvatov, B. (2024). GLOBAL IN VIRTUAL LEARNING MOBILE APP CREATION INFORMATION SYSTEMS AND TECHNOLOGIES. Science and innovation in the education system, 3(1), 95-104.

Quvvatov, B. (2024). WEB FRONT-END AND BACK-END TECHNOLOGIES IN PROGRAMMING. Theoretical aspects in the formation of pedagogical sciences, 3(1), 208-215.

Quvvatov, B. (2024). FINDING SOLUTIONS OF SPECIAL MODELS BY INTEGRATING INTEGRAL EQUATIONS AND MODELS. Current approaches and new research in modern sciences, 3(1), 122-130.

Quvvatov, B. (2024). CONSTRUCTION OF SPECIAL MODELS THROUGH DIFFERENTIAL EQUATIONS AND PRACTICAL SOLUTIONS. Solution of social problems in management and economy, 3(1), 108-115.

Karimov, F. (2022). ANIQ INTEGRALNI TAQRIBIY HISOBLASH. ЦЕНТР НАУЧНЫХ ПУБЛИКАЦИЙ (buxdu. uz), 14(14).

Quvvatov, B. (2024). SQL DATABASES AND BIG DATA ANALYTICS: NAVIGATING THE DATA MANAGEMENT LANDSCAPE. Development of pedagogical technologies in modern sciences, 3(1), 117-124.

Quvvatov, B. (2023). ALGEBRAIK ANIQLIGI YUQORI BOLGAN KVADRATUR FORMULALAR. UMUMLASHGAN TRAPETSIYALAR QOIDASI. Академические исследования в современной науке, 3(7), 137-142.