In this section, I have compiled a collection of notebooks based on the Qiskit documentation. These examples serve as a way for me to explore, practice, and deepen my understanding of quantum computing. While I am not an expert, my goal is to work through these examples, enhance them where possible, and gradually improve my skills. This collection is a work in progress, and I hope it can also be useful for others who are learning alongside me.
- Basic Concepts
- Complex Arithmetic
- Linear Algebra Theory
- Linear Algebra
- Install Qiskit
- Basics of qubits, gates, and circuits
- Qiskit Algorithms: Simple Examples
- Introduction to Quantum Computing: The Deutsch Algorithm
- Introduction to Quantum Computing: The Grover's Algorithm
- Introduction to Quantum Computing: The Simon's Algorithm
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University of North Carolina. (n.d.). Introduction to quantum computers. Retrieved from https://help.rc.unc.edu/Assets/New_Course_Material/General_Computing/Introduction_to_Quantum_Computers.pdf
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de Wolf, R. (n.d.). Quantum computing: A gentle introduction. Retrieved from https://homepages.cwi.nl/~rdewolf/qcnotes.pdf
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Ekert, A., & Jozsa, R. (1996). Quantum computation and Shor’s factoring algorithm. Retrieved from https://cds.cern.ch/record/383367/files/p165.pdf
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Wong, T. G. (2022). Introduction to classical and quantum computing. Rooted Grove. Retrieved from https://www.thomaswong.net/introduction-to-classical-and-quantum-computing-1e4p.pdf
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Rué, J., & Xambó-Descamps, S. (2011). Mathematical essentials of quantum computing. Retrieved from https://web.mat.upc.edu/sebastia.xambo/QC/qc.pdf
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Rué, Juanjo, and Sebastià Xambó-Descamps. Mathematical Essentials of Quantum Computing. 2011. https://web.mat.upc.edu/sebastia.xambo/QC/qc.pdf
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IBM Quantum. (n.d.). Getting started with Qiskit. Retrieved from https://learning.quantum.ibm.com/learning-path/getting-started-with-qiskit
Here is a simple footnote1. With some additional text after it.
Footnotes
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My reference. ↩