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In this incredible demonstration from the Maritime Technical and Safety Institute in Japan, a large wave tank uses many synchronized wave-generating devices to create visible symbols and patterns on the surface of the water. Each paddle produces a small wave, but when many waves are emitted at specific timings, amplitudes, and phases, they begin to overlap. Where the wave crests reinforce one another, the water rises. Where a crest meets a trough, the motion cancels out. This is called interference, and it is one of the most fundamental principles of wave physics. By controlling the phase relationship between many individual wave sources, researchers can shape the surface of the water into temporary patterns, symbols, and directional flows. In other words, the visible image is not “drawn” onto the water. It emerges from the mathematics of waves interacting with one another. This is the same underlying principle behind acoustics, cymatics, ocean modeling, signal processing, holography, and even the way complex field patterns arise throughout nature. A single wave carries motion, but many waves, when organized in relationship, create structure. This is why water is such a powerful medium for understanding resonance. It makes invisible dynamics visible and shows us that form can emerge from rhythm, timing, frequency, and relational coherence. At a deeper level, this demonstration reveals something profound about reality itself… Patterns appear when many small movements become synchronized enough to behave as one field. The ocean, sound, light, and even the nervous system all do this, because life is vibrational in nature… Did this expand your perception?

🧬Maxpein🧬

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D-Wave announced a scientific breakthrough published in the esteemed journal Science Magazine, confirming that its annealing quantum computer outperformed one of the world’s most powerful classical supercomputers in solving a complex magnetic materials simulation problem with relevance to materials discovery. The new landmark peer-reviewed paper, “Beyond-Classical Computation in Quantum Simulation,” validates this achievement as the world’s first and only demonstration of quantum computational supremacy on a useful problem. An international collaboration of scientists led by D-Wave performed simulations of quantum dynamics in programmable spin glasses—a computationally hard magnetic materials simulation problem with known applications to business and science—on both D-Wave’s Advantage2™ prototype annealing quantum computer and the Frontier supercomputer at the Department of Energy’s Oak Ridge Lab. D-Wave’s quantum computer performed a complex simulation in minutes and with a level of accuracy that would take nearly a million years using the supercomputer. In addition, it would require more than the world’s annual electricity consumption to solve this problem using the supercomputer, which is built with graphics processing unit (GPU) clusters. For decades, scientists have aspired to build a quantum computer capable of solving complex materials simulation problems beyond the reach of classical computers. D-Wave's advancements in quantum hardware have made it possible for its annealing quantum computers to process these types of problems for the first time. Magnetic materials simulations, like those conducted in this work, use computer models to study how tiny particles not visible to the human eye react to external factors. Magnetic materials are widely used in medical imaging, electronics, superconductors, electrical networks, sensors, and motors. This is an incredibly important achievement. Please join us in congratulating the D-Wave team and our global collaborators on this remarkable milestone. It’s a significant moment for the quantum computing industry. Learn more about this monumental achievement: Read the press release here: #QuantumSupremacy #QuantumRealized #QuantumComputing #DWave #Technology #Innovation #Optimization #MaterialsDiscovery #ScientificBreakthrough $QBTS

D-Wave

65,039 görüntüleme • 1 yıl önce