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MARC Record from marc_openlibraries_sanfranciscopubliclibrary

Record ID marc_openlibraries_sanfranciscopubliclibrary/sfpl_chq_2018_12_24_run06.mrc:45008472:4030
Source marc_openlibraries_sanfranciscopubliclibrary
Download Link /show-records/marc_openlibraries_sanfranciscopubliclibrary/sfpl_chq_2018_12_24_run06.mrc:45008472:4030?format=raw

LEADER: 04030cam a2200649 i 4500
001 ocn881064524
003 OCoLC
005 20171121090655.0
008 140603s2014 maua b 001 0 eng
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037 $bMit Pr, C/O Triliteral Llc 100 Maple Ridge Dr, Cumberland, RI, USA, 02864-1769, (401)6584226$nSAN 631-8126
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050 00 $aQA76.889$b.L57 2014
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082 00 $a005.1$223
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100 1 $aLipton, Richard J.,$eauthor.
245 10 $aQuantum algorithms via linear algebra :$ba primer /$cRichard J. Lipton, Kenneth W. Regan.
264 1 $aCambridge, Massachusetts :$bThe MIT Press,$c[2014]
300 $axii, 192 pages :$billustrations ;$c24 cm
336 $atext$btxt$2rdacontent
337 $aunmediated$bn$2rdamedia
338 $avolume$bnc$2rdacarrier
504 $aIncludes bibliographical references (pages 183-187) and index.
520 $aThis introduction to quantum algorithms is concise but comprehensive, covering many key algorithms. It is mathematically rigorous but requires minimal background and assumes no knowledge of quantum theory or quantum mechanics. The book explains quantum computation in terms of elementary linear algebra; it assumes the reader will have some familiarity with vectors, matrices, and their basic properties, but offers a review of all the relevant material from linear algebra. By emphasizing computation and algorithms rather than physics, this primer makes quantum algorithms accessible to students and researchers in computer science without the complications of quantum mechanical notation, physical concepts, and philosophical issues. After explaining the development of quantum operations and computations based on linear algebra, the book presents the major quantum algorithms, from seminal algorithms by Deutsch, Jozsa, and Simon through Shor's and Grover's algorithms to recent quantum walks. It covers quantum gates, computational complexity, and some graph theory. Mathematical proofs are generally short and straightforward; quantum circuits and gates are used to illuminate linear algebra; and the discussion of complexity is anchored in computational problems rather than machine models. Quantum Algorithms via Linear Algebra is suitable for classroom use or as a reference for computer scientists and mathematicians.--$cProvided by Publisher.
650 0 $aQuantum computers.
650 0 $aComputer algorithms.
650 0 $aAlgebras, Linear.
700 1 $aRegan, Kenneth W.,$eauthor.
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