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hybrid-quantum-classical

Combine the power of quantum and classical computing. Learn how hybrid algorithms like QAOA and VQE solve problems neither computer could solve alone.

🔬 지금 사용하기

이것은?

🎯 시뮬레이터 팁

📚 용어집

NISQ
Noisy Intermediate-Scale Quantum - 현재의 양자 컴퓨팅 시대
VQE
Variational Quantum Eigensolver - 화학 알고리즘
QAOA
양자 근사 최적화 알고리즘
Ansatz
매개변수화된 시험 파동함수/회로
Variational
고전적으로 최적화된 조정 가능한 매개변수를 사용한 접근 방식
BarrenPlateau
그라데이션이 점점 작아지는 영역
Hamiltonian
시스템 에너지를 나타내는 수학 연산자
GroundState
양자 시스템의 최저 에너지 상태
ExpectationValue
평균 측정 결과
Qubit
양자비트 - 양자정보의 기본단위

💬 학습자에게

{'encouragement': "You're learning the computing paradigm of the near future. Hybrid quantum-classical isn't science fiction - it's being used right now by researchers and companies worldwide.", 'reminder': "You don't need a quantum computer to learn. Simulators can teach you everything until you're ready for real hardware.", 'action': 'Run a VQE simulation in the simulator. Watch how the classical optimizer works with the quantum circuit. See the energy converge to the ground state.', 'dream': 'A quantum algorithm designer from Kenya might create the breakthrough algorithm for drug discovery. A software engineer from Nigeria might build better hybrid frameworks. Quantum computing needs global participation.', 'wiaVision': "WIA Pin Code believes quantum computing should not be limited to wealthy nations. By making hybrid algorithms accessible, we're democratizing the future of computing."}

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