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qiskit-framework
Conceptual quantum circuit construction, qubit initialization, gate application, and measurement in Python.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
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Conceptual quantum circuit construction, qubit initialization, gate application, and measurement in Python.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
SOC 직업 분류 기준
| name | Qiskit Framework |
| description | Conceptual quantum circuit construction, qubit initialization, gate application, and measurement in Python. |
Qiskit is IBM's open-source SDK for quantum computing. It provides a programmatic abstraction for designing quantum circuits, compiling them for specific architectures, and executing them on simulators or physical QPUs.
Quantum circuits in Qiskit are represented as DAGs (Directed Acyclic Graphs). A QuantumCircuit instance holds QuantumRegister and ClassicalRegister objects. Unitary operations (gates) manipulate the quantum state space $\mathbb{C}^{2^n}$, while measurements collapse the state onto the computational basis, recording outcomes in classical bits.
QuantumCircuit(n, m) with $n$ qubits and $m$ classical bits. All qubits initialize to $|0\rangle$.qc.h(0), qc.rx(theta, 0)).qc.cx(0, 1) for CNOT).qc.measure(qubit_index, bit_index)).run().flowchart TD
A[Start] --> B[Initialize QuantumCircuit]
B --> C[Allocate Quantum and Classical Registers]
C --> D[Apply Unitary Gates]
D --> E[Apply Entangling Operations]
E --> F[Add Measurement Operations]
F --> G[Transpile Circuit for Backend]
G --> H[Execute on Simulator or QPU]
H --> I[Analyze Results/Counts]
I --> J[End]
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