Quantum Computing for Everyone
Chris Bernhardt
Vendu par Rarewaves.com UK, London, Royaume-Uni
Vendeur AbeBooks depuis 11 juin 2025
Neuf(s) - Couverture souple
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Ajouter au panierVendu par Rarewaves.com UK, London, Royaume-Uni
Vendeur AbeBooks depuis 11 juin 2025
Etat : Neuf
Quantité disponible : Plus de 20 disponibles
Ajouter au panierFOR NON-EXPERTS: Get an accessible introduction to quantum computing as a mathematician explains quantum algorithms, quantum entanglement, and more. Quantum computing is a beautiful fusion of quantum physics and computer science! Quantum computing incorporates some of the most stunning ideas from 20th-century physics into an entirely new way of thinking about computation. Here, Chris Bernhardt offers an introduction to quantum computing that is accessible to anyone comfortable with high school mathematics. A mathematician himself, Bernhardt simplifies the mathematics and provides elementary examples that illustrate both how the math works and what it means. He explains for the non-expert: . Quantum bits, or qubits-the basic unit of quantum computing . Quantum entanglement and what it means when qubits are entangled . Quantum cryptography . Classical computing topics like bits, gates, and logic . Quantum gates . Quantum algorithms and their speed . Quantum computers and how they're built . And more! By the end of the book, readers understand that quantum computing and classical computing are not two distinct disciplines, and that quantum computing is the fundamental form of computing.
N° de réf. du vendeur LU-9780262539531
Quantum computing is a beautiful fusion of quantum physics and computer science, incorporating some of the most stunning ideas from twentieth-century physics into an entirely new way of thinking about computation. In this book, Chris Bernhardt offers an introduction to quantum computing that is accessible to anyone who is comfortable with high school mathematics. He explains qubits, entanglement, quantum teleportation, quantum algorithms, and other quantum-related topics as clearly as possible for the general reader. Bernhardt, a mathematician himself, simplifies the mathematics as much as he can and provides elementary examples that illustrate both how the math works and what it means.
Bernhardt introduces the basic unit of quantum computing, the qubit, and explains how the qubit can be measured; discusses entanglement—which, he says, is easier to describe mathematically than verbally—and what it means when two qubits are entangled (citing Einstein's characterization of what happens when the measurement of one entangled qubit affects the second as “spooky action at a distance”); and introduces quantum cryptography. He recaps standard topics in classical computing—bits, gates, and logic—and describes Edward Fredkin's ingenious billiard ball computer. He defines quantum gates, considers the speed of quantum algorithms, and describes the building of quantum computers. By the end of the book, readers understand that quantum computing and classical computing are not two distinct disciplines, and that quantum computing is the fundamental form of computing. The basic unit of computation is the qubit, not the bit.
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Quantité commandée | 60 à 60 jours ouvrés | 60 à 60 jours ouvrés |
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Premier article | EUR 74.92 | EUR 115.25 |
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