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Nonlocal Quantum Computing Theory [Hardcover]

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  • Category: Books (Computers)
  • Author:  Wu, Cheng Hsiao
  • Author:  Wu, Cheng Hsiao
  • ISBN-10:  103289265X
  • ISBN-10:  103289265X
  • ISBN-13:  9781032892658
  • ISBN-13:  9781032892658
  • Publisher:  CRC Press
  • Publisher:  CRC Press
  • Pages:  118
  • Pages:  118
  • Binding:  Hardcover
  • Binding:  Hardcover
  • SKU:  103289265X-11-MPOD
  • SKU:  103289265X-11-MPOD
  • Item ID: 107096878
  • Seller: ShopSpell
  • Ships in: 2 business days
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  • Delivery by: Sep 26 to Sep 28
  • Notes: Brand New Book. Order Now.

Provides beginners with a comprehensive overview of the fundamentals of quantum computing theory from a non-local computation point of view.

Dr. Cheng Hsiao Wu received his PhD degree in solid-state physic from University of Rochester in 1972. He post-doctored at New York University and in the City College and was a visiting scientist at Max-Planck Institute in Stuttgart. After working for RCA Laboratory, in 1983, he joined Electrical and Computer Engineering of Missouri University of Science and Technology and has been there since.

1. Overview of Quantum Computing. 2. Quantum Fourier Transform. 3. General-Purpose Quantum Computing: Euclidean Computing. 4. Biological Computing: Non-Euclidean Computing Example. 5. Nonlocal Quantum Computing (I): Computing from an Entangled Atomic Chain. 6. Nonlocal Quantum Computing (II): Discussion on Time Crystals, Perpetual Motions and Distributed Superconducting Chain.

Nonlocal Quantum Computing Theory offers a fresh perspective on quantum computing, moving beyond the traditional qubit-based approach to a physics-driven interpretation of computation. This book highlights the limitations and logical flaws in mainstream quantum computing theories and introduces a rule-based, nonlocal quantum computing framework. Covering general-purpose quantum computing, biological applications, and atomic chains in full superposition and entanglement, this book presents a bold new theoretical foundation for the field.

Key Features:

  • Provides a comprehensive introduction to quantum computing from a nonlocal perspective.
  • Critically examines the limitations of the standard qubit-based approach.
  • Explores applications in biological systems and atomic chain computations.
  • Introduces rule-based nonlocal quantum lĂ/
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