LEADER 00722nam0-22002531i-450- 001 990002730100403321 005 20130429171553.0 035 $a000273010 035 $aFED01000273010 035 $a(Aleph)000273010FED01 035 $a000273010 100 $a20030910d1958----km-y0itay50------ba 101 0 $aspa 102 $aES 200 1 $aTeoria general de la contabilidad administrativa$fFernando Boter y Mauri 210 $aBarcelona$cJuventud$d1958 700 1$aBoter y Mauri,$bFernando$0111814 801 0$aIT$bUNINA$gRICA$2UNIMARC 901 $aBK 912 $a990002730100403321 952 $a2-8-8$bs.i.$fECA 959 $aECA 996 $aTeoria general de la contabilidad administrativa$9424809 997 $aUNINA LEADER 03723nam 2200973z- 450 001 9910743271203321 005 20230911 035 $a(CKB)5690000000228596 035 $a(oapen)doab113926 035 $a(EXLCZ)995690000000228596 100 $a20230920c2023uuuu -u- - 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aNonlinear Dynamics in Complex Systems via Fractals and Fractional Calculus 210 $cMDPI - Multidisciplinary Digital Publishing Institute$d2023 215 $a1 online resource (276 p.) 311 08$a3-0365-8337-8 330 $aCurrent advances in the knowledge of nonlinear dynamical networks, systems and processes, as well as their unified repercussions, allow us to include some typical complex natural phenomena, from the nanoscale to an extra-galactic scale, in an unitarian comprehensive manner. In other words, the physical, biological and financial data, as well as technological ones (mechanical or electronic devices), of complex systems available today can be managed by the same unique conceptual approach, both analytically and through a computer simulation, using effective nonlinear dynamics procedures. This volume collected some important advances in the fields of fractal curves, fractal analysis and fractional calculus, as well as new solutions of fractal differential equations. The works edited in the present technical publication are those that appeared in the Fractal and Fractional journal, in a Special Issue of the same name. 606 $aMathematics & science$2bicssc 606 $aResearch & information: general$2bicssc 610 $a6G communication 610 $aadaptive synchronization 610 $aatmosphere 610 $aattractor 610 $aautocorrelation dimension 610 $abearing fault diagnosis 610 $abifurcation 610 $aceilometer 610 $aceramics 610 $achaos 610 $acircuit implementation 610 $acircuit simulation 610 $acoexisting attractors 610 $aconductivity 610 $acorrelation dimension 610 $adelayed feedback 610 $adispersion entropy 610 $aelectronic circuit 610 $afeature extraction 610 $afractal 610 $afractal analysis 610 $afractal antenna 610 $afractal dimension 610 $afractal geometry 610 $afractional order 610 $afuzzy dispersion entropy 610 $aglobal bifurcation 610 $aheteroclinic orbit 610 $ahidden attractor 610 $ahomoclinic orbit 610 $ahyperchaos 610 $alacunarity 610 $aMEMS resonator 610 $aMinkowski's loop 610 $amultifractal 610 $amultifractality 610 $an/a 610 $anon-autonomous discrete systems 610 $aoffset boosting 610 $aPBL dynamics 610 $apermutation entropy 610 $aphase space 610 $apull-in instability 610 $aradiometer data 610 $asafe basin 610 $ascale relativity theory 610 $aSEM micrographs 610 $asensitivity 610 $aslope entropy 610 $asymbolic dynamics 610 $atime series 610 $atime series complexity 610 $auniformly converge 610 $aunstable periodic orbit 610 $aZircaloy-4 615 7$aMathematics & science 615 7$aResearch & information: general 906 $aBOOK 912 $a9910743271203321 996 $aNonlinear Dynamics in Complex Systems via Fractals and Fractional Calculus$93560510 997 $aUNINA