PsiQuantum, the University of Tokyo, and Mitsubishi Chemical Corporation Announce Partnership to Bolster Quantum Workforce Development in Japan PsiQuantum Graduate School of Engineering, the University of Tokyo Mitsubishi Chemical Corporation PsiQuantum, the University of Tokyo, and the Mitsubishi Chemical Corporation today announced the creation of a new partnership to provide education and training for Japan’s growing quantum workforce. This initiative is supported by the Government of Japan’s New Energy and Industrial Technology Development Organization (NEDO) under the Post-5G Information and Communication Systems program (2025–2027). As fault-tolerant quantum computing emerges as a key technology for future industrial applications, the demand for highly skilled quantum professionals is rapidly increasing worldwide. This new partnership underscores the increasing strength of the quantum ecosystem in Japan, as well as the critical role of a strong workforce in achieving the full promise of utility-scale quantum computing. The program is jointly conducted by PsiQuantum, the University of Tokyo, and Mitsubishi Chemical Corporation, combining academic education, industrial application development, and advanced quantum computing technologies. The University of Tokyo leads the educational curriculum, Mitsubishi Chemical Corporation contributes industrial use cases in chemistry and materials science, and PsiQuantum provides expertise in fault-tolerant quantum computing and related software tools. Together, the three partners have launched a six-month training program for participants from the private sector and academia. More than 80 participants from over 20 companies with operations in Japan have already joined the program. Attendees will learn more about the fundamentals of fault-tolerant quantum computing, explore potential use cases across a range of sectors, and gain experience using advanced tools such as Construct, PsiQuantum’s secure, end-to-end platform for designing, analyzing, and optimizing algorithms for fault-tolerant quantum computing. Subsequent phases over the next two years will focus on joint research and development opportunities in chemistry and materials science applications, with the shared