LEADER 01194nam 2200361 450 001 000005884 005 20070503173300.0 100 $a20001113d1928----km-y0itay0103----ba 101 0 $aeng 102 $aUS 200 1 $aAmbition$fby Arthur Train 200 1 $a1 $n0003839 210 $aNew York$cScribner's sons$d1928 215 $a439 p.$d19 cm. 676 $a813.52$v(20 ed.)$9Narrativa americana in inglese. 1900-1945 700 1$aTrain,$bArthur Cheney$f<1875-1945>$0439650 801 0$aIT$bUniversità della Basilicata - B.I.A.$gRICA$2unimarc 912 $a000005884 996 $aAmbition$974004 997 $aUNIBAS BAS $aMONLET BAS $aMONOGR BAS $aLETTERE CAT $aDEBONIS$b01$c20001113$lBAS01$h1623 CAT $aDEBONIS$b01$c20001113$lBAS01$h1642 CAT $c20050601$lBAS01$h1753 CAT $abatch$b01$c20050718$lBAS01$h1048 CAT $c20050718$lBAS01$h1108 CAT $c20050718$lBAS01$h1138 CAT $c20050718$lBAS01$h1152 CAT $aBATCH$b00$c20070503$lBAS01$h1733 FMT Z30 -1$lBAS01$LBAS01$mBOOK$1BASA1$APolo Storico-Umanistico$2GEN$BCollezione generale$3FP/4720$64720$5L4720$820001113$f02$FPrestabile Generale LEADER 02084nas 22006013a 450 001 996205630603316 005 20240113213019.0 011 $a1944-1142 035 $a(DE-599)ZDB2109648-X 035 $a(OCoLC)244121471 035 $a(CKB)1000000000699807 035 $a(CONSER)--2008203761 035 $a(EXLCZ)991000000000699807 100 $a20080819a19989999 s-- a 101 0 $aeng 135 $aurun||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 04$aThe internet protocol journal 210 $aSan Jose, CA $cCisco Systems 300 $a"A quarterly technical publication for internet and intranet professionals." 311 $a1944-1134 517 1 $aInternet protocol 517 1 $aIPJ 531 0 $aInternet protoc. j. 606 $aComputer networks$vPeriodicals 606 $aComputer network protocols$vPeriodicals 606 $aInternet software industry$vPeriodicals 606 $aInternetworking (Telecommunication)$vPeriodicals 606 $aIntranets (Computer networks)$vPeriodicals 606 $aComputer network protocols$2fast$3(OCoLC)fst00872279 606 $aComputer networks$2fast$3(OCoLC)fst00872297 606 $aInternet software industry$2fast$3(OCoLC)fst00977295 606 $aInternetworking (Telecommunication)$2fast$3(OCoLC)fst00977304 606 $aIntranets (Computer networks)$2fast$3(OCoLC)fst00977780 608 $aPeriodicals.$2fast 615 0$aComputer networks 615 0$aComputer network protocols 615 0$aInternet software industry 615 0$aInternetworking (Telecommunication) 615 0$aIntranets (Computer networks) 615 7$aComputer network protocols. 615 7$aComputer networks. 615 7$aInternet software industry. 615 7$aInternetworking (Telecommunication) 615 7$aIntranets (Computer networks) 676 $a004 712 02$aCisco Systems, Inc. 906 $aJOURNAL 912 $a996205630603316 996 $aThe internet protocol journal$92122737 997 $aUNISA LEADER 04034nam 2200889z- 450 001 9910566461703321 005 20220506 035 $a(CKB)5680000000037764 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/80958 035 $a(oapen)doab80958 035 $a(EXLCZ)995680000000037764 100 $a20202205d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aThe Statistical Foundations of Entropy 210 $aBasel$cMDPI - Multidisciplinary Digital Publishing Institute$d2022 215 $a1 online resource (182 p.) 311 08$a3-0365-3557-8 311 08$a3-0365-3558-6 330 $aIn the last two decades, the understanding of complex dynamical systems underwent important conceptual shifts. The catalyst was the infusion of new ideas from the theory of critical phenomena (scaling laws, renormalization group, etc.), (multi)fractals and trees, random matrix theory, network theory, and non-Shannonian information theory. The usual Boltzmann-Gibbs statistics were proven to be grossly inadequate in this context. While successful in describing stationary systems characterized by ergodicity or metric transitivity, Boltzmann-Gibbs statistics fail to reproduce the complex statistical behavior of many real-world systems in biology, astrophysics, geology, and the economic and social sciences.The aim of this Special Issue was to extend the state of the art by original contributions that could contribute to an ongoing discussion on the statistical foundations of entropy, with a particular emphasis on non-conventional entropies that go significantly beyond Boltzmann, Gibbs, and Shannon paradigms. The accepted contributions addressed various aspects including information theoretic, thermodynamic and quantum aspects of complex systems and found several important applications of generalized entropies in various systems. 606 $aMathematics & science$2bicssc 606 $aResearch & information: general$2bicssc 610 $aadaptive Type-II progressive hybrid censoring scheme 610 $aBayesian estimation 610 $aBayesian inference 610 $acalibration invariance 610 $aconfidence interval 610 $acritical phenomena 610 $adistributional weighted regression 610 $aecological inference 610 $aentropic uncertainty relations 610 $aentropy 610 $aescort probabilities 610 $agaussian entropy 610 $ageneralized Bilal distribution 610 $ageneralized cross entropy 610 $ageneralized entropies 610 $aGENERIC 610 $aKolmogorov-Nagumo averages 610 $aLagrange multipliers 610 $alandsberg-vedral entropy 610 $aLindley's approximation 610 $aMarkov chain Monte Carlo method 610 $amatrix adjustment 610 $aMaxEnt distribution 610 $amaximum entropy 610 $amaximum entropy principle 610 $amaximum likelihood estimation 610 $amultiscale thermodynamics 610 $an/a 610 $anon-Diophantine arithmetic 610 $anon-equilibrium thermodynamics 610 $anon-Newtonian calculus 610 $aquantum metrology 610 $arenormalization 610 $are?nyi entropy 610 $aRe?nyi entropy 610 $asharma-mittal entropy 610 $atsallis entropy 610 $aTsallis entropy 610 $aupdating probabilities 610 $avariational entropy 610 $a?-channel capacity 610 $a?-mutual information 615 7$aMathematics & science 615 7$aResearch & information: general 700 $aJizba$b Petr$4edt$0618869 702 $aKorbel$b Jan$4edt 702 $aJizba$b Petr$4oth 702 $aKorbel$b Jan$4oth 906 $aBOOK 912 $a9910566461703321 996 $aThe Statistical Foundations of Entropy$93040910 997 $aUNINA