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FORMATION OF INTERDISCIPLINARY COMPETENCIES IN THE TEACHING OF NANOELECTRONICS

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This article examines the formation of interdisciplinary competencies among students within the framework of the nanoelectronics course. Nanoelectronics is closely related to physics, chemistry, materials science, and information technology; therefore, its effective teaching requires an integrative and interactive approach. In teaching this course, it is essential to combine theoretical knowledge with practical training, virtual laboratories, and project-based learning. As a result, students develop analytical thinking, problem-solving abilities, and teamwork skills. These competencies, in turn, enhance their professional preparedness and equip them for future activity in modern high-technology fields.

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