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IBM Fundamentals of Quantum Computation Using Qiskit v0.2X Developer Sample Questions:
1. How does the concept of "quantum superposition" contribute to information processing in quantum systems?
A) It ensures deterministic outcomes in quantum computations
B) It limits the capacity for storing information in qubits
C) It enables the simultaneous representation of multiple states
D) It allows for the storage of classical bits in quantum systems
2. In the single-qubit quantum circuit, we apply the operators H, X, X, H, X in order, where X and H are Not and Hadamard operators respectively. (assume the qubit is initialized to |0>) What is the final state of the quantum circuit?
A) |0>
B) 1√2(|0>-|1>)
C) -|1>
D) |1>
E) 1√2(|0>+|1>)
3. In the below QuantumCircuit, how many Qubits are there?
q1 = QuantumRegister(7, 'q1')
q2 = ClassicalRegister(2, 'q2')
q3 = QuantumRegister(5, 'q3')
qc = QuantumCircuit(q1, q2, q3)
A) 14
B) 9
C) 10
D) 12
4. How do the principles of uncertainty in quantum mechanics affect information encoding?
A) They have no impact on information encoding
B) They make quantum information more predictable than classical information
C) They allow for absolute certainty in information transmission
D) They impose limitations on simultaneous knowledge of certain pairs of properties
5. Which of the following gates act as hermitian opeartors? (select 3)
A) X-gate
B) T-gate
C) H-gate
D) S-gate
E) Z-gate
Solutions:
| Question # 1 Answer: C | Question # 2 Answer: D | Question # 3 Answer: D | Question # 4 Answer: D | Question # 5 Answer: A,C,E |
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