G42 and the Government of India formalized a commercial framework for the deployment of Condor Galaxy India, an 8-exaflop AI supercomputing cluster comprising 64 Cerebras CS-3 systems. This agreement, witnessed by the UAE President and Indian Prime Minister, positions G42 to partner with India's Centre for Development of Advanced Computing (C-DAC) for installation and operations. The supercomputer is intended to be a foundational asset for India's sovereign AI ambitions and underpin joint R&D across health, genomics, energy, and geospatial analytics. Why it matters: This major infrastructure partnership significantly advances AI capabilities in India, deepens strategic ties between the UAE and India, and expands G42's global footprint in high-performance computing.
G42 and Cerebras, in partnership with MBZUAI and C-DAC, will deploy an 8 exaflop AI supercomputer in India. The system will operate under India's governance and security frameworks as part of the India AI Mission. It will provide access to compute for researchers, startups, and government entities. Why it matters: This deployment represents a major boost to India's AI infrastructure and sovereign AI capabilities, expanding access to advanced compute resources in the region.
G42 and Cerebras, in partnership with MBZUAI and C-DAC, will deploy an 8 exaflop AI supercomputer in India. The system will operate under India's governance frameworks, with all data remaining within national jurisdiction to meet sovereign security and compliance requirements. The supercomputer will be accessible to Indian researchers, startups, and government entities under the India AI Mission.
KAUST professors Roberto Di Pietro and Marc Dacier co-authored a paper on cybersecurity strategies for Saudi Arabia and the Arab world, published in Communications of the ACM. The paper outlines a multidisciplinary framework for digitization aligned with Saudi Vision 2030, emphasizing global best practices, cultural adaptation, and capacity building. KAUST is positioned to advise on national cybersecurity policy in cooperation with the Saudi National Cybersecurity Authority. Why it matters: The framework addresses the critical need for advanced cybersecurity to support Saudi Arabia's rapidly growing digital economy and infrastructure.
KAUST and Partanna have launched a 12-month R&D partnership to enhance CO2 removal in concrete manufacturing. The collaboration will integrate Partanna’s formula with KAUST’s Direct Air Capture (DAC) technology. Partanna's patented concrete avoids Portland Cement and uses a binder made from natural and recycled materials, enabling CO2 absorption. Why it matters: This partnership highlights Saudi Arabia's commitment to sustainable construction and carbon-negative technologies, potentially revolutionizing building practices in the region and beyond.
G42 and Cerebras, in partnership with MBZUAI and C-DAC, will deploy an 8 exaflop AI supercomputer in India. The system will operate under India's governance frameworks, ensuring data sovereignty and security. It aims to democratize access to AI innovation for researchers, startups, and government entities. Why it matters: This initiative significantly enhances India's AI infrastructure and promotes sovereign AI capabilities for local innovation while strengthening UAE-India strategic ties.
KAUST Professor Carlos M. Duarte received a Frontiers of Knowledge Award for Ecology and Conservation Biology from Fundación BBVA in Spain. Duarte's research focuses on global marine science problems and his contributions to Saudi Vision 2030. The award recognizes his leadership and dedication to expanding knowledge of ocean flora, fauna, and their carbon sequestering capacities. Why it matters: Recognition of KAUST faculty highlights the university's growing prominence in environmental research and its alignment with Saudi Arabia's sustainability goals.
KAUST researchers synthesized a novel copper-based metal-organic framework (MOF) called SIFSIX-3-Cu for selective CO2 adsorption. The new MOF is porous, moisture-resistant, inexpensive, and reusable, offering advantages over existing materials. Testing showed SIFSIX-3-Cu can efficiently remove CO2 from air, which is relevant for direct air capture (DAC) to reduce greenhouse gas emissions. Why it matters: This new MOF could significantly improve the efficiency and cost-effectiveness of CO2 capture technologies, contributing to global efforts to mitigate climate change.