Check out more about MPI 👇
MPI: the backbone of High-Performance Computing #HPC From crash simulations to #weather forecasting, modern #science and engineering rely on supercomputers — machines that solve complex problems by distributing tasks across thousands of processors. Here, Message Passing Interface (MPI) is essential. It lets you run #code across many nodes at once, improving efficiency & enabling the solution of problems that are too large for a single machine. Where is MPI used? ✅ Aerospace MPI is used to coordinate thermal & fluid simulations across hundreds of nodes to model spacecraft re-entry — where temperatures, forces and timing matter down to the millisecond. ✅ Climate science MPI enables communication between modules of the ocean, atmosphere, land, and ice in unified Earth system models, allowing scientists to simulate #climatechange decades into the future. ✅ Material science Quantum-level simulations are compute-heavy. MPI helps split them across processors accelerating discovery of batteries, semiconductors or carbon capture materials. ✅ Bioinformatics MPI helps align millions of #DNA or protein sequences in parallel — accelerating virus tracking, drug discovery and genome analysis. ✅ Automotive design MPI powers virtual #crashtests using solvers like LS-DYNA. Engineers simulate vehicle impacts using millions of elements — improving safety without building physical prototypes. ____________________________________________________________ Want to apply MPI for your use-case? Join our free online courses: 𝗣𝗮𝗿𝗮𝗹𝗹𝗲𝗹𝗶𝘇𝗮𝘁𝗶𝗼𝗻 𝘄𝗶𝘁𝗵 𝗠𝗣𝗜 (𝗕𝗲𝗴𝗶𝗻𝗻𝗲𝗿) 🗓️ 28-29 April 𝗣𝗮𝗿𝗮𝗹𝗹𝗲𝗹𝗶𝘇𝗮𝘁𝗶𝗼𝗻 𝘄𝗶𝘁𝗵 𝗠𝗣𝗜 (𝗜𝗻𝘁𝗲𝗿𝗺𝗲𝗱𝗶𝗮𝘁𝗲 – 𝗔𝗱𝘃𝗮𝗻𝗰𝗲𝗱) 🗓️ 5-6 May ➡️ https://lnkd.in/dZeFsY4U ____________________________________________________________ EuroCC 2 and EuroCC4SEE INiTS | Vienna's High-Tech Incubator Simeon Harrison Thomas Mayerhofer Natascha Trzepizur FFG Austrian Research Promotion Agency Peter Tschuchnig Markus Stöhr Mark Dokter OpenMP Architecture Review Board Central European Chapter of Women in HPC