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  • Book Overview & Buying Dancing with Qubits
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Dancing with Qubits

Dancing with Qubits

By : Robert S. Sutor
4.4 (47)
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Dancing with Qubits

Dancing with Qubits

4.4 (47)
By: Robert S. Sutor

Overview of this book

Quantum computing is making us change the way we think about computers. Quantum bits, a.k.a. qubits, can make it possible to solve problems that would otherwise be intractable with current computing technology. Dancing with Qubits is a quantum computing textbook that starts with an overview of why quantum computing is so different from classical computing and describes several industry use cases where it can have a major impact. From there it moves on to a fuller description of classical computing and the mathematical underpinnings necessary to understand such concepts as superposition, entanglement, and interference. Next up is circuits and algorithms, both basic and more sophisticated. It then nicely moves on to provide a survey of the physics and engineering ideas behind how quantum computing hardware is built. Finally, the book looks to the future and gives you guidance on understanding how further developments will affect you. Really understanding quantum computing requires a lot of math, and this book doesn't shy away from the necessary math concepts you'll need. Each topic is introduced and explained thoroughly, in clear English with helpful examples.
Table of Contents (16 chapters)
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Preface
13
Afterword

2.9 Summary

Classical computers have been around since the 1940s and are based on using bits, 0s and 1s, to store and manipulate information. This is naturally connected to logic as we can think of a 1 or 0 as true or false, respectively, and vice versa. From logical operators like and we created real circuits that can perform higher-level operations like addition. Circuits implement portions of algorithms.

Since all algorithms to accomplish a goal are not equal, we saw that having some idea of measuring the time and memory complexity of what we are doing is important. By understanding the classical case we’ll later be able to show where we can get a quantum improvement.

References

[1]

Thomas H. Cormen et al. Introduction to Algorithms. 3rd ed. The MIT Press, 2009.

[2]

R.W. Hamming. ‘‘Error Detecting and Error Correcting Codes’’. In: Bell System Technical Journal...

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83
Tech Concepts
36
Programming languages
73
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