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<b>What is quantum computing?</b> A quantum computer takes advantage of the characteristics of quantum particles (<i>qubits</i>), including superposition of states, constructive and destructive interference, and entanglement. With these properties, a new computational paradigm promises greater parallelization to solve complex problems that cannot be managed by classical computing systems. | <b>What is quantum computing?</b> A quantum computer takes advantage of the characteristics of quantum particles (<i>qubits</i>), including superposition of states, constructive and destructive interference, and entanglement. With these properties, a new computational paradigm promises greater parallelization to solve complex problems that cannot be managed by classical computing systems. | ||
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== Applications == | == Applications == | ||
Optimization of complex problems is one of the most promising areas for quantum computing in several research areas: | Optimization of complex problems is one of the most promising areas for quantum computing in several research areas: | ||
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* Meteorology: quantum computing could increase the number of variables for weather forecasting; | * Meteorology: quantum computing could increase the number of variables for weather forecasting; | ||
* Logistics: quantum computing could optimize logistics and workflow planning associated with supply chain management. | * Logistics: quantum computing could optimize logistics and workflow planning associated with supply chain management. | ||
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== Software == | == Software == |