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IBM C1000-112 Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Quantum Circuits | 24% | - Build quantum circuits using Qiskit - Execute quantum circuits on IBM Quantum backends - Simulate quantum circuits - Visualize circuit execution results |
| Topic 2: Fundamentals of Quantum Information | 36% | - Describe common quantum gates and their matrix representations - Describe the Bloch sphere representation - Describe the concepts of reversibility and unitarity - Explain the basics of quantum computing - Explain the concepts of entanglement and superposition |
| Topic 3: Qiskit SDK Features | 40% | - Use the qiskit.circuit library - Use qiskit.tools and qiskit.visualization - Use qiskit.quantum_info - Use qiskit.providers and qiskit.execute - Identify the core elements of Qiskit |
IBM Fundamentals of Quantum Computation Using Qiskit v0.2X Developer Sample Questions:
1. What is the function of noise models in quantum simulators?
A) Provide additional qubit capacity for larger simulations
B) Introduce errors and simulate real-world quantum hardware behavior
C) Enable faster execution of quantum algorithms
D) Minimize errors and produce ideal quantum states
2. In quantum computing, what is the primary method for retrieving results from a quantum experiment?
A) Evaluating quantum error correction codes
B) Analyzing quantum gates in the circuit
C) Direct measurement of qubit states
D) Simulating the quantum circuit on a classical computer
3. Which of the following code snippet for the below quantum circuit will put the given qubits in a equiprobable states?
qc=QuantumCircuit(2)
A) qc.h(0)
qc.h(1)
B) qc.h(0)
qc.cx(0,1)
C) qc.x(0)
qc.h(0)
qc.cx(0, 1)
D) qc.h(0)
qc.x(1)
qc.cx(0,1)
4. Which quantum computing language is commonly used to work with quantum circuits?
A) C++
B) Q#
C) Qiskit
D) Python
5. Which aspect of quantum circuits does Qasm primarily focus on?
A) Describing quantum gate sequences and qubit operations
B) Handling classical data operations
C) Managing quantum error correction
D) Visualizing qubit states
Solutions:
| Question # 1 Answer: B | Question # 2 Answer: C | Question # 3 Answer: A | Question # 4 Answer: C | Question # 5 Answer: A |
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