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IBM C1000-112 Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Display and Use System Information | 3% | - Check Qiskit version and backend details |
| Use Qiskit Tools | 1% | - Monitor job status and retrieve results |
| Return and Interpret Experiment Results | 7% | - Extract statevector and unitary data - Analyze histogram counts |
| Implement QASM | 1% | - Read/write and validate QASM files |
| Implement BasicAer Simulators | 3% | - Use Python-based simulator backend |
| Perform Operations on Quantum Circuits | 47% | - Apply single-qubit and multi-qubit gates - Return circuit depth and OpenQASM strings - Add barriers and measure operations - Construct quantum registers and circuits |
| Compare and Contrast Quantum Information | 10% | - Statevectors, unitaries, density matrices - Fidelity and quantum state analysis |
| Executing Experiments | 3% | - Execute circuits on simulators and backends |
| Construct Visualizations | 19% | - Plot circuits, Bloch spheres, histograms |
| Access Aer Provider | 6% | - Configure and use Aer simulators |
IBM Fundamentals of Quantum Computation Using Qiskit v0.2X Developer Sample Questions:
1. Which method allows accessing the Aer provider's simulators in Qiskit?
A) list_aer_backends()
B) access_aer_provider()
C) get_aer_simulators()
D) retrieve_simulator_list()
2. Which of the following option describes the given quantum circuit below correctly in its state_city plot?
bell = QuantumCircuit(2)
bell.x(0)
bell.h(0)
bell.cx(0,1)
A)
B)
C)
D) 
3. Which quantum gate is similar to classical NOT gate?
A) X gate
B) Y gate
C) Hadamard gate
D) CNOT gate
4. Which of the following commands will convert the below qasm string stored in the variable qasm_str to the quantum circuit?
OPENQASM 2.0;
include "qelib1.inc";
qreg q[3];
creg c[3];
h q[0];
cx q[0],q[1];
cx q[0],q[2];
barrier q[0],q[1],q[2];
measure q[0] -> c[0];
measure q[1] -> c[1];
measure q[2] -> c[2];
A) QuantumCircuit.qasm_str
B) QuantumCircuit.from_qasm_str()
C) QuantumCircuit.from_qasm_str(qasm_str)
D) QuantumCircuit.from_qasm_file(qasm_str)
5. In the below code snippet, what is the probability of measuring |0>?
qc = QuantumCircuit(1)
qc.ry(3*math.pi/4, 0)
A) 1.0
B) 0.5
C) 0.8536
D) 0.1464
Solutions:
| Question # 1 Answer: C | Question # 2 Answer: A | Question # 3 Answer: A | Question # 4 Answer: C | Question # 5 Answer: D |



