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Quantum Computing: A Primer
Pioneered by Richard Feynman's insight into natural quantum processes, this technology utilizes superposition and linear algebra to solve intractable mathematical problems like optimization and simulation that exceed classical computing capabilities. Current hardware, constrained by superconducting cooling near absolute zero and brief coherence windows, is rapidly evolving alongside critical algorithms such as Grover's and Shor's to accelerate deep learning, revolutionize quantum chemistry for ammonia production, and threaten existing cryptographic standards. As major university labs, corporate R&D centers, and state-sponsored entities converge on hardware and software development with Bell Labs-era investment levels, the field is approaching a maturity ready to drive substantial startup formation and global economic impact.