Real IBM C1000-112 practice exam questions for easy pass!
Last Updated: May 30, 2026
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1. What is the output of the below snippet?
a = 1/np.sqrt(2)
desired_state = [a,np.sqrt(1-a**2)]
qc = QuantumCircuit(1)
qc.initialize(desired_state,0)
back_sv = BasicAer.get_backend('statevector_simulator')
result = execute(qc, back_sv).result()
qc_sv = result.get_statevector(qc)
state_fidelity(desired_state, qc_sv)
A) Error in executing state_fidelity
B) 0.5
C) 1.0
D) 0
2. Which statement will create a quantum circuit with five quantum bits and seven classical bits?
A) QuantumCircuit([5, 7])
B)
C) QuantumCircuit(5,7)
D) QuantumCircuit(7)
3. What property distinguishes a quantum computer from a classical computer?
A) Utilization of quantum gates
B) Ability to process complex arithmetic operations
C) Quantum parallelism and superposition
D) Larger memory capacity
4. Which of the following commands will convert the below quantum circuit to qasm string?
qc = QuantumCircuit(2,2)
qc.h(0)
qc.h(1)
A) qc.qasm()
B) qc.qasm_str()
C) qc.qasm_simulator()
D) qc.from_qasm()
5. Which of the following is the best option to plot the |+> basis in plot_bloch_vector?
A) plot_bloch_vector([0,0.5,0])
B) plot_bloch_vector([1,0,0])
C) plot_bloch_vector([0,1,0])
D) plot_bloch_vector([0,0,1])
Solutions:
| Question # 1 Answer: C | Question # 2 Answer: C | Question # 3 Answer: C | Question # 4 Answer: A | Question # 5 Answer: B |
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