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Learn Quantum Computing with Python and IBM Quantum

Learn Quantum Computing with Python and IBM Quantum

By : Robert Loredo
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Learn Quantum Computing with Python and IBM Quantum

Learn Quantum Computing with Python and IBM Quantum

By: Robert Loredo

Overview of this book

IBM Quantum Lab is a platform that enables developers to learn the basics of quantum computing by allowing them to run experiments on a quantum computing simulator and on several real quantum computers. Updated with new examples and changes to the platform, this edition begins with an introduction to the IBM Quantum dashboard and Quantum Information Science Kit (Qiskit) SDK. You will become well versed with the IBM Quantum Composer interface as well as the IBM Quantum Lab. You will learn the differences between the various available quantum computers and simulators. Along the way, you’ll learn some of the fundamental principles regarding quantum mechanics, quantum circuits, qubits, and the gates that are used to perform operations on qubits. As you build on your knowledge, you’ll understand the functionality of IBM Quantum and the developer-focused resources it offers to address key concerns like noise and decoherence within a quantum system. You’ll learn how to monitor and optimize your quantum circuits. Lastly, you’ll look at the fundamental quantum algorithms and understand how they can be applied effectively. By the end of this quantum computing book, you'll know how to build quantum programs and will have gained a practical understanding of quantum computation that you can apply to your business.
Table of Contents (18 chapters)
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14
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15
Index

Summary

In this chapter, you learned all the various ways you can operate on both single and multiple qubits. The operations provide various vector states that each qubit can rotate into. You also learned how to visualize the gates on a circuit and learned to decompose them down to universal gates so you can realize the information that is passed onto the quantum system.

You have now understood how these gates operate on qubits. You now have skills that will greatly help you understand how gates are used in many quantum algorithms to position the vectors in the Hilbert space of each qubit to help resolve various problems.

In the next chapter, we will learn about the Quantum Information Science Kit (Qiskit), pronounced kiss-kit (depending on who you ask, it may also be pronounced kwis-kit). Qiskit provides, besides many of the objects and functions we have been using so far to manipulate qubits, other functionality that helps to create quantum algorithms, mitigate against noise...

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