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IBM C1000-112 Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Implement QASM | 1% | - Read/write and validate QASM files |
| Topic 2: Executing Experiments | 3% | - Execute circuits on simulators and backends |
| Topic 3: Return and Interpret Experiment Results | 7% | - Analyze histogram counts - Extract statevector and unitary data |
| Topic 4: Display and Use System Information | 3% | - Check Qiskit version and backend details |
| Topic 5: Access Aer Provider | 6% | - Configure and use Aer simulators |
| Topic 6: Construct Visualizations | 19% | - Plot circuits, Bloch spheres, histograms |
| Topic 7: Use Qiskit Tools | 1% | - Monitor job status and retrieve results |
| Topic 8: Implement BasicAer Simulators | 3% | - Use Python-based simulator backend |
| Topic 9: Compare and Contrast Quantum Information | 10% | - Statevectors, unitaries, density matrices - Fidelity and quantum state analysis |
| Topic 10: Perform Operations on Quantum Circuits | 47% | - Return circuit depth and OpenQASM strings - Add barriers and measure operations - Construct quantum registers and circuits - Apply single-qubit and multi-qubit gates |
IBM Fundamentals of Quantum Computation Using Qiskit v0.2X Developer Sample Questions:
Question 1
When applying a CNOT gate to two qubits, which qubit acts as the control and which one acts as the target?
A. The first qubit is the control, and the second qubit is the target
B. The second qubit is the control, and the first qubit is the target
C. Both qubits simultaneously act as control and target
D. It doesn't matter, as the CNOT gate is symmetric
Question 2
What is the resultant gate when we apply three Hadamard gates (in series) in the single-qubit circuit?
A. Y-gate
B. X-gate
C. I-gate
D. H-gate
Question 3
Which one of the below statements is invalid when drawing the quantum circuit?
A. qc.draw(output='png')
B. qc.draw(output='latex')
C. qc.draw(output='text')
D. qc.draw(output='mpl')
Question 4
Which one of the below is the noisy quantum circuit simulator backend?
A. qasm_simulator
B. qasm_simulator
C. Aer_simulator
D. statevector_simulator
Question 5
What is the primary advantage of running experiments on a quantum simulator over actual quantum hardware?
A. Simulators have unlimited qubit capacity
B. Simulators provide error-free quantum computations
C. Simulators allow for debugging and testing without experimental constraints
D. Simulators are faster than quantum hardware
Solutions:
| Question 1 Answer: A | Question 2 Answer: D | Question 3 Answer: A | Question 4 Answer: B | Question 5 Answer: C |






