LEADER 00870nam0-22003011--450- 001 990008644420403321 005 20081110114242.0 010 $a0198200730 035 $a000864442 035 $aFED01000864442 035 $a(Aleph)000864442FED01 035 $a000864442 100 $a20080409d1988----km-y0itay50------ba 101 0 $aeng 102 $aGB 105 $ay-------001yy 200 1 $aOxford illustrated history of medieval Europe$fedited by George Holmes 210 $aOxford$cOxford university press$d1988 215 $aIX, 398 p., 12 c. di tav.$cill.$d26 cm 676 $a940.1$v19$zita 702 1$aHolmes,$bGeorge$f<1927-> 801 0$aIT$bUNINA$gRICA$2UNIMARC 901 $aBK 912 $a990008644420403321 952 $aSDI-KB1 127$b3234$fSDI 959 $aSDI 996 $aOxford illustrated history of medieval Europe$9715948 997 $aUNINA LEADER 03122nam0 2200613 i 450 001 VAN00123931 005 20240806100815.62 017 70$2N$a9783319556420 100 $a20191004d2017 |0itac50 ba 101 $aeng 102 $aCH 105 $a|||| ||||| 200 1 $aExtended abstracts spring 2016$eNonsmooth Dynamics$fAlessandro Colombo ... [et al.] editors 210 $aCham$cBirkhäuser$d2017 215 $aix, 193 p.$cill.$d24 cm 410 1$1001VAN00103394$12001 $aTrends in mathematics. Research perspectives CRM Barcelona$1210 $aBasel [etc.]$cBirkhäuser$v8 500 1$3VAN00235587$aExtended abstracts spring 2016$91562380 606 $a34-XX$xOrdinary differential equations [MSC 2020]$3VANC021251$2MF 606 $a34Axx$xGeneral theory for ordinary differential equations [MSC 2020]$3VANC023535$2MF 606 $a34Cxx$xQualitative theory for ordinary differential equation [MSC 2020]$3VANC020690$2MF 606 $a34Dxx$xStability theory for ordinary differential equation [MSC 2020]$3VANC022333$2MF 606 $a34Exx$xAsymptotic theory for ordinary differential equation [MSC 2020]$3VANC024393$2MF 606 $a34Fxx$xOrdinary differential equations and systems with randomness [MSC 2020]$3VANC028778$2MF 606 $a34H10$xChaos control for problems involving ordinary differential equations [MSC 2020]$3VANC035156$2MF 606 $a34H20$xBifurcation control of ordinary differential equations [MSC 2020]$3VANC031130$2MF 606 $a39-XX$xDifference and functional equations [MSC 2020]$3VANC029242$2MF 606 $a93C30$xControl/observation systems governed by functional relations other than differential equations (such as hybrid and switching systems) [MSC 2020]$3VANC033644$2MF 606 $a93C40$xAdaptive control/observation systems [MSC 2020]$3VANC035157$2MF 606 $a93D09$xRobust stability [MSC 2020]$3VANC022857$2MF 606 $a93D21$xAdaptive or robust stabilization [MSC 2020]$3VANC022856$2MF 610 $aBiology$9KW:K 610 $aClimate$9KW:K 610 $aControl$9KW:K 610 $aDiscontinuous$9KW:K 610 $aDynamics$9KW:K 610 $aFilippov$9KW:K 610 $aInclusion$9KW:K 610 $aMechanics$9KW:K 610 $aNonsmooth$9KW:K 610 $aOrdinary differential equations$9KW:K 610 $aSingularity$9KW:K 610 $aSliding$9KW:K 610 $aSwitch$9KW:K 620 $aCH$dCham$3VANL001889 702 1$aColombo$bAlessandro$cingegnere elettronico$3VANV095397 712 $aBirkhäuser $3VANV108193$4650 801 $aIT$bSOL$c20240906$gRICA 856 4 $uhttp://doi.org/10.1007/978-3-319-55642-0$zE-book ? Accesso al full-text attraverso riconoscimento IP di Ateneo, proxy e/o Shibboleth 899 $aBIBLIOTECA DEL DIPARTIMENTO DI MATEMATICA E FISICA$1IT-CE0120$2VAN08 912 $fN 912 $aVAN00123931 950 $aBIBLIOTECA DEL DIPARTIMENTO DI MATEMATICA E FISICA$d08CONS e-book 0650 $e08eMF650 20191004 996 $aExtended abstracts spring 2016$91562380 997 $aUNICAMPANIA