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標題: Titlebook: Adventures in Computer Science; From Classical Bits Vicente Moret-Bonillo Textbook 2017 Springer International Publishing AG 2017 Quantum [打印本頁]

作者: eternal    時間: 2025-3-21 17:55
書目名稱Adventures in Computer Science影響因子(影響力)




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書目名稱Adventures in Computer Science被引頻次學(xué)科排名




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Mikhail I. Krastanov,Nadezhda K. Ribarskao not require any specialist mathematical background. Deutsch’s algorithm is presented from different viewpoints with the goal of exploring the quantum computing paradigm. The Deutsch-Jozsa algorithm is described using some of the material developed in regard to the Deutsch algorithm. Both the Deuts
作者: Oversee    時間: 2025-3-23 02:03
On Some Open Problems in Optimal Controlingful cooperation between these two computer science fields, although it is recognized that many fundamental questions need to be answered before researchers and engineers can combine artificial intelligence and quantum computing. We briefly describe the behavior of the biological brain in terms of
作者: 休戰(zhàn)    時間: 2025-3-23 07:42
Vicente Moret-BonilloEncourages students to examine and understand basic underlying concepts that permit generalization and reasoning by analogy rather than problem-solving.Main focus of the text is the basic unit of info
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作者: STAT    時間: 2025-3-23 16:18
https://doi.org/10.1007/978-3-031-01829-9t can be performed through logic gates and focusing on special universal sets of gates with which we can do very many things. The chapter concludes with two applications: the Half Adder as a physical summing device, and a billiard game representation of a number of basic operations with bits.
作者: 虛假    時間: 2025-3-23 21:40
https://doi.org/10.1007/978-1-4612-0153-3rn, in terms of operators. quantum mechanics works with complex numbers, vectors and other entities that are defined in what is called the Hilbert space. We do not explicitly define this space, but introduce the bracket notation of Paul Dirac and describe certain properties—such as the inner product
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作者: 皺痕    時間: 2025-3-24 08:33
in kinds of computational tasks, and he uses formal descriptions and formal argumentations to introduce key quantum mechanical concepts and approaches. The rest of the book is formally different, focusing on pr978-3-319-87877-5978-3-319-64807-1
作者: Pde5-Inhibitors    時間: 2025-3-24 14:26
The Universe of Binary Numbers,t can be performed through logic gates and focusing on special universal sets of gates with which we can do very many things. The chapter concludes with two applications: the Half Adder as a physical summing device, and a billiard game representation of a number of basic operations with bits.
作者: 群島    時間: 2025-3-24 18:41

作者: Orgasm    時間: 2025-3-24 22:54
,Feynman’s Quantum Computer Machine,tion counter register for the program. Altogether, this yields a non-trivial architecture. To explain how this machine works we use an example that is discussed in depth from three different points of view. We conclude with some thoughts on how to initialize the system and how to recognize when the
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作者: Cantankerous    時間: 2025-3-25 06:27
Back and Forth Computing,o described the CN gate, with which we can do many things. But to do everything in a reversible way we need universal reversible gates, such as the CCN (Toffoli) gate, or the Fredkin gate, which is a controlled exchange (or swap) gate. We built new reversible logic gates that operate in a similar wa
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作者: 衰老    時間: 2025-3-25 16:08

作者: Minatory    時間: 2025-3-25 20:47
Some Quantum Algorithms,o not require any specialist mathematical background. Deutsch’s algorithm is presented from different viewpoints with the goal of exploring the quantum computing paradigm. The Deutsch-Jozsa algorithm is described using some of the material developed in regard to the Deutsch algorithm. Both the Deuts
作者: SOB    時間: 2025-3-26 03:13
Concluding Remarks,ingful cooperation between these two computer science fields, although it is recognized that many fundamental questions need to be answered before researchers and engineers can combine artificial intelligence and quantum computing. We briefly describe the behavior of the biological brain in terms of
作者: 怪物    時間: 2025-3-26 06:56
Lyapunov Equations for Discrete Processes,s in a reversible way. We then simulated reversible computation with billiard balls. In a concluding brief analysis of reversibility, we arrived at the conclusion that the number of distinct inputs and outputs has to be the same in a device that operates in a reversible manner.
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作者: granite    時間: 2025-3-26 13:56
On Some Open Problems in Optimal Control attention to speed and energy consumption. We continue with a discussion about what can be expected from cooperation between the apparently unconnected artificial intelligence and quantum computing fields. Finally, we reflect on some issues raised in the book, leaving an open door for further reflection on this new paradigm of computing.
作者: encyclopedia    時間: 2025-3-26 20:21
lem-solving.Main focus of the text is the basic unit of info.The main focus of this textbook is the basic unit of information and the way in which our understanding of this has evolved over time. In particular the author covers concepts related to information, classical computing, logic, reversible
作者: euphoria    時間: 2025-3-26 21:11
Textbook 2017the author covers concepts related to information, classical computing, logic, reversible computing, quantum mechanics, quantum computing, thermodynamics and some artificial intelligence and biology, all approached from the viewpoint of computer sciences. ..The book begins by asking the following no
作者: 使激動    時間: 2025-3-27 02:20
Mikhail I. Krastanov,Nadezhda K. Ribarskaa discussion and illustration of quantum teleportation, emphasizing the fact that only information is teleported, not any physical device or person. We also note that both quantum channels and conventional channels are needed for teleportation, which explains why teleportation cannot be faster than the speed of light in a vacuum.
作者: 引導(dǎo)    時間: 2025-3-27 08:18
Some Quantum Algorithms,a discussion and illustration of quantum teleportation, emphasizing the fact that only information is teleported, not any physical device or person. We also note that both quantum channels and conventional channels are needed for teleportation, which explains why teleportation cannot be faster than the speed of light in a vacuum.
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