THE ROLE OF COMPUTER GRAPHICS IN MODERN ENGINEERING DESIGN AND VISUALIZATION
Main Article Content
Abstract
Computer graphics has become an essential component of modern engineering, significantly transforming the way engineers design, analyze, and visualize complex systems. With the rapid development of computational power and graphical algorithms, computer graphics now plays a critical role in engineering fields such as mechanical design, civil engineering, architecture, aerospace, and manufacturing. This paper explores the importance of computer graphics in engineering applications, emphasizing its contribution to design accuracy, simulation, visualization, and decision-making processes. The integration of computer graphics with computer-aided design (CAD), computer-aided engineering (CAE), and virtual reality (VR) technologies has enabled engineers to model real-world objects with high precision and realism. Furthermore, computer graphics enhances communication between engineers and stakeholders by providing intuitive visual representations of technical concepts. The study highlights the evolution of computer graphics in engineering, its current applications, and its future potential in improving efficiency, reducing costs, and increasing innovation in engineering practices.
Downloads
Article Details
Section

This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors retain the copyright of their manuscripts, and all Open Access articles are disseminated under the terms of the Creative Commons Attribution License 4.0 (CC-BY), which licenses unrestricted use, distribution, and reproduction in any medium, provided that the original work is appropriately cited. The use of general descriptive names, trade names, trademarks, and so forth in this publication, even if not specifically identified, does not imply that these names are not protected by the relevant laws and regulations.
How to Cite
References
1.French, T. E., Vierck, C. J., & Foster, R. J. (2019). Engineering Drawing and Graphic Technology (15th ed.). McGraw-Hill Education.
2.Bertoline, G. R., Wiebe, E. N., Hartman, N. W., & Ross, W. A. (2021). Fundamentals of Graphics Communication (8th ed.). McGraw-Hill Education.
3.Rustamov, E., & Rayimova, D. (2024). CHARACTERISTICS OF THE DEVELOPMENT OF TECHNICAL CREATIVITY IN STUDENTS. Medicine, pedagogy and technology: theory and practice, 2(9), 397-405.
4.Rustamov, E. (2024). TIKUVCHILIK BUYUMLARINI KONSTRUKSIYALASHDA GRAFIK DASTURLARIDAN FOYDALANISHNING AHAMIYATI. Medicine, pedagogy and technology: theory and practice, 2(9), 707-715.
5.Tohirovich, R. E., Dilmurodovna, R. D., & Muminovna, R. D. Z. (2023). The Importance of Using Graphics Programs in The Design of Sewing Items. Web of Teachers: Inderscience Research, 1(3), 5-8.
6.Tohirovich, R. E., & Dilmuradovna, R. D. (2021, March). TYPICAL MISTAKES MADE BY STUDENTS WHEN MAKING DRAWINGS IN THE ENGINEERING GRAPHICS DISCIPLINE. In E-Conference Globe (pp. 339-343).
7.Toxirovich, R. E. (2024). OLIY TALIMDA TALABALARNI MUSTAQIL TALIMINI TASHKIL ETISHNING AHAMIYATI VA DOLZARBLIGI. PEDAGOG, 7(5), 507-510.
8.Tohirovich, R. E. (2024). ТИПИЧНЫЕ ОШИБКИ, ДОПУСКАЕМЫЕ УЧАЩИМИСЯ ПРИ ВЫПОЛНЕНИИ ЧЕРТЕЖЕЙ ПО ДИСЦИПЛИНЕ ИНЖЕНЕРНАЯ ГРАФИКА. ВОДОЕМА. THE THEORY OF RECENT SCIENTIFIC RESEARCH IN THE FIELD OF PEDAGOGY, 2(21), 192-197.
9.Tohirovich, R. E., Dilmurodovna, R. D., & Muminovna, R. D. Z. (2023). The Importance of Using Graphics Programs in The Design of Sewing Items. Web of Teachers: Inderscience Research, 1(3), 5-8.
10.Rustamov, E. T., & Idiyev, N. Q. (2018). CHIZMA BAJARISHDA OQUVCHILAR YOL QOYADIGAN TIPIK ХATОLAR. Интернаука, (20-2), 58-60.
11.Рустамов, Э. Т., & Мирханова, М. А. (2016). Создание динамических изображений при помощи программы Power Рoint при проведении занятий по теме" Топографическое черчение. Проекции с числовыми отметками". Молодой ученый, (2), 835-838.