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001 ocn663096835
003 OCoLC
005 20180626230136.0
008 100909s2010 gw a ob 101 0 eng d
006 m o d
007 cr cn|||||||||
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020 $a9783642130106
020 $a3642130100
020 $z9783642130090$q(pbk.)
020 $z3642130097$q(pbk.)
024 7 $a10.1007/978-3-642-13010-6$2doi
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245 00 $aAdvanced lectures on software engineering :$bLASER summer school 2007/2008 /$cPeter Mu ller (ed.).
260 $aBerlin :$bSpringer,$c2010.
300 $a1 online resource (187 pages) :$billustrations.
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
490 1 $aLecture notes in computer science,$x0302-9743 ;$v6029.$aTutorial
490 1 $aLNCS sublibrary. SL 2, Programming and software engineering
504 $aIncludes bibliographical references and index.
505 0 $aFine-grain concurrency / Tony Hoare -- Compensable transactions / Tony Hoare -- SCOOP : a contract-based concurrent object-oriented programming model / Benjamin Morandi, Sebastian S. Bauer, and Bertrand Meyer -- Using the Spec# language, methodology, and tools to write bug-free programs / K. Rustan M. Leino and Peter Muller -- Fixpoints and search in PVS / Natarajan Shankar -- Multi core design for chip level multiprocessing / Tryggve Fossum.
588 0 $aPrint version record.
520 $aSoftware defects lead to enormous costs for the software industry and society as a whole. While testing is useful to find bugs, it is insufficient to show the absence of certain kinds of errors or that a program satisfies its specification. Such high levels of software quality can be achieved by software verification, that is, by proving the correctness of a program with respect to its specification. Software verification has seen tremendous progress during the last decade; it continues to be an active research topic and is now also becoming increasingly popular among practitioners. This tutorial contains selected papers from the LASER summer Schools 2007 and 2008, both of which focused on correctness - Applied Software Verification in 2007 and Concurrency and Correctness in 2008. Topics covered include verification of fine-grain concurrency and transactions, the SCOOP model for concurrent object-oriented programming, the Spec# programming and verification system, verification in the prototype verification system PVS, and multi-core chip design.
650 0 $aSoftware engineering$vCongresses.
650 6 $aGe nie logiciel$vCongre s.
650 7 $aInformatique.$2eclas
650 7 $aSoftware engineering.$2fast$0(OCoLC)fst01124185
650 7 $aSoftware Engineering$2gnd
650 7 $aProgrammverifikation$2gnd
650 7 $aNebenla ufigkeit$2gnd
650 2 $aSoftware.
655 4 $aElectronic books.
655 7 $aConference papers and proceedings.$2fast$0(OCoLC)fst01423772
655 2 $aCongresses.
700 1 $aMu ller, Peter,$d1972-
776 08 $iPrint version:$tAdvanced lectures on software engineering.$dBerlin : Springer, 2010$z9783642130090$w(DLC) 2010926406$w(OCoLC)635376227
830 0 $aLecture notes in computer science ;$v6029.
830 0 $aLecture notes in computer science.$pTutorial.
830 0 $aLNCS sublibrary.$nSL 2,$pProgramming and software engineering.
856 40 $3SpringerLink$uhttp://dx.doi.org/10.1007/978-3-642-13010-6
856 40 $3SpringerLink$uhttp://link.springer.com/openurl?genre=book&isbn=978-3-642-13009-0
856 40 $uhttps://link.springer.com/openurl?genre=book&isbn=978-3-642-13009-0
856 40 $uhttps://grinnell.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-642-13010-6$zAccess Springer Electronic Book
856 40 $3Click to access in SpringerLink$uhttp://gate.lib.buffalo.edu/login?url=https://link.springer.com/book/10.1007/978-3-642-13010-6
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