An official invitation letter will be provided upon successful registration for your participation in the conference.
학술대회 참가 등록이 정상적으로 완료되면 공식 초청장이 발급됩니다.
Plenary, keynote and parallel sessions.
전체회의, 기조연설 및 분과 세션.
Connect with fellow researchers.
동료 연구자들과의 교류.
Digital certificate of participation.
디지털 참가 증명서 발급.
Official letter after successful registration.
등록 완료 후 공식 초청장 발급.
E-proceedings & resource materials.
전자 논문집 및 참고 자료.
Learn from leading experts & scholars.
저명한 전문가 및 학자들의 강연.
The conference's session tracks effectively support the following SDGs.
본 학술대회의 세션 트랙은 다음의 지속가능발전목표를 효과적으로 지원합니다.
This track focuses on the development and application of quantum algorithms specifically designed to solve complex optimization problems. Participants will explore the advantages of quantum computing in enhancing optimization techniques across various engineering domains.
This session will delve into the principles of quantum information theory and its implications for cryptography. Researchers will present novel approaches to secure communication and data protection using quantum technologies.
This track examines the role of quantum entanglement in advancing quantum computing applications. Discussions will highlight how entanglement can be harnessed to improve computational efficiency and problem-solving capabilities.
This session is dedicated to the latest advancements in quantum hardware technologies. Presentations will cover new materials, architectures, and engineering solutions that enhance the performance and scalability of quantum systems.
This track will explore various simulation techniques that facilitate the understanding and development of quantum algorithms. Participants will share insights on how simulation can bridge the gap between theoretical and practical applications of quantum computing.
This session focuses on the intersection of quantum computing and machine learning, highlighting innovative quantum algorithms that enhance data analysis. Researchers will discuss practical applications and the potential impact of quantum machine learning on engineering tasks.
This track addresses the integration of high-performance computing techniques within quantum computing frameworks. Participants will explore how to leverage existing computational resources to optimize quantum algorithm execution.
This session will showcase cutting-edge technologies that are shaping the future of quantum computing. Discussions will include advancements in quantum devices, software, and methodologies that drive innovation in the field.
This track investigates the applications of quantum mechanics within computational physics. Researchers will present findings on how quantum principles can be applied to solve complex physical problems in engineering.
This session focuses on the development of data analysis techniques tailored for quantum computing environments. Participants will explore how quantum algorithms can enhance data processing and interpretation in various engineering applications.
This track highlights real-world engineering applications of quantum technologies across diverse sectors. Presentations will demonstrate how quantum computing can address engineering challenges and improve system performance.