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IBM Fundamentals of Quantum Computation Using Qiskit v0.2X Developer Sample Questions:
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
2. In the circuit given below having unitary simulator as the backend, choose the
_missing_element_from the options?
qc = QuantumCircuit(1)
qc.h(0)
backend_unitary = BasicAer.get_backend('unitary_simulator')
result = execute(qc,backend_unitary).result()._missing_element_
A) get_unitary()
B) get_unitary_matrix()
C) get_unitary_result()
D) get_unitary_simulator()
3. Which of the below option will implement an operator that represents a single qubit -gate?
A) op = Operator([[0,i]])
B) op = Operator([[i,0,0,i]])
C) op = Operator([[1,0,0,1]])
D) 
4. How does the function draw_circuit() in Qiskit represent quantum gates in a circuit?
A) Through a list of gate operations
B) As a series of mathematical equations
C) Using a textual format
D) As graphical images of gates and connections
5. Which of the following quantum gate resembles the probability of classical coin flip?
A) S-gate
B) Z-gate
C) H-gate
D) X-gate
Solutions:
| Question # 1 Answer: A | Question # 2 Answer: A | Question # 3 Answer: D | Question # 4 Answer: D | Question # 5 Answer: C |


