LEADER 01995nam a2200397 i 4500 001 991003266579707536 006 m o d 007 cr cn ---mpcbr 008 160801s2015 sz ob 001 0 eng d 020 $a9783319182483 035 $ab14305896-39ule_inst 040 $aBibl. Dip.le Aggr. Matematica e Fisica - Sez. Matematica$beng 082 04$a515.35$223 084 $aAMS 34-02 084 $aAMS 34E10 084 $aAMS 39-02 084 $aAMS 39A12 084 $aAMS 39A22 084 $aLC QA372.B63 100 1 $aBodine, Sigrun$0718167 245 10$aAsymptotic integration of differential and difference equations$h[e-book] /$cSigrun Bodine, Donald A. Lutz 260 $aCham :$bSpringer,$c[2015] 300 $a1 online resource (xi, 402 pages) 440 0$aLecture Notes in Mathematics,$x1617-9692 ;$v2129 504 $aIncludes bibliographical references and index 505 0 $aIntroduction, notation, and background ; Asymptotic integration for differential systems ; Asymptotics for solutions of difference systems ; Conditioning transformations for differential systems ; Conditioning transformations for difference systems ; Perturbations of Jordan differential systems ; Perturbations of Jordan difference systems ; Applications to classes of scalar linear differential equations ; Applications to classes of scalar linear difference equations ; Asymptotics for dynamic equations on time scales 650 0$aDifferential equations$xAsymptotic theory 650 0$aDifferential-difference equations 700 1 $aLutz, Donald A. 776 08$aPrinted edition:$z9783319182476 856 40$uhttp://link.springer.com/book/10.1007%2F978-3-319-18248-3$zAn electronic book accessible through the World Wide Web 907 $a.b14305896$b03-03-22$c01-08-16 912 $a991003266579707536 996 $aAsymptotic integration of differential and difference equations$91392317 997 $aUNISALENTO 998 $ale013$b01-08-16$cm$d@ $e-$feng$gsz $h0$i0 LEADER 01068nam a22002771i 4500 001 991003766959707536 005 20040607114401.0 008 040802s1984 uik|||||||||||||||||eng 020 $a0521274117 035 $ab13125138-39ule_inst 035 $aARCHE-107774$9ExL 040 $aBiblioteca Interfacoltà$bita$cA.t.i. 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Phillips Griffiths 260 $aCambridge :$bCambridge University Press,$cc1984 300 $aV, 233 p. ;$c23 cm 440 0$aRoyal Institute of philosophy lecture series ;$v16 500 $aSupplement to Philosophy 1983 650 4$aLetteratura e filosofia 700 1 $aGriffiths, Allen Phillips 907 $a.b13125138$b02-04-14$c05-08-04 912 $a991003766959707536 945 $aLE002 SP 100.I/016$g1$i2002000356918$lle002$nC. 1$o-$pE0.00$q-$rl$so $t0$u0$v0$w0$x0$y.i13760920$z05-08-04 996 $aPhilosophy and literature$9308562 997 $aUNISALENTO 998 $ale002$b05-08-04$cm$da $e-$feng$guik$h0$i1 LEADER 03769nam 2200925z- 450 001 9910557327903321 005 20210501 035 $a(CKB)5400000000042600 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/69116 035 $a(oapen)doab69116 035 $a(EXLCZ)995400000000042600 100 $a20202105d2020 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aAeroacustic and Vibroacoustic Advancement in Aerospace and Automotive Systems 210 $aBasel, Switzerland$cMDPI - Multidisciplinary Digital Publishing Institute$d2020 215 $a1 online resource (194 p.) 311 08$a3-03936-557-6 311 08$a3-03936-558-4 330 $aThis Special Issue highlights the latest enhancements in the abatement of noise and vibrations in aerospace and automotive systems. The reduction of acoustic emissions and the improvement of interior cabin comfort desired by all major transportation industries, as these areas have a direct impact on customer satisfaction and, consequently, the commercial success of new products. Topics covered in this Special Issue deal with computational approaches, instrumentation and data analysis related to noise and vibrations of fixed-wing aircraft, satellites, spacecraft, automobiles, and trains, covering aerodynamically generated noise, engine noise, sound absorption, cabin acoustic treatments, duct acoustics, and vibroacoustic properties of materials. This Special Issue also focuses on industrial aspects. Existing procedures and algorithms that are useful in reaching the abovementioned objectives in the most efficient way are illustrated in the collected papers. 606 $aHistory of engineering and technology$2bicssc 610 $aacoustic finite element method 610 $aacoustics 610 $aactuator array 610 $aaeroacoustics 610 $aaerodynamic noise 610 $aaeronautics 610 $aaircraft fuselage 610 $aanalytic model 610 $aautomotive 610 $abeamforming 610 $abuffet load alleviation 610 $acentrifugal fan 610 $acompensate torque design 610 $acomponent mode synthesis 610 $aFEM 610 $aflexible spacecraft 610 $afluid-structure-acoustic coupling 610 $aFRF 610 $ahigh-speed train 610 $aLamb wave 610 $alarge eddy simulation 610 $aleakage location 610 $aMDO 610 $amultibody simulations 610 $amultichannel discharge 610 $anoise 610 $aNVH 610 $aoptimization 610 $apantograph 610 $aperiodic disturbance compensation 610 $apetrol engine 610 $aPlasma flow control 610 $aplasma synthetic actuator 610 $apostpone of buffet onset 610 $areaction wheel. 610 $aspacecraft in orbit 610 $asteady and periodic blowing 610 $atangential slot 610 $atransonic buffet 610 $aunsteady flow 610 $avibration 610 $avibration analysis 610 $avibration attenuation 610 $avibro-acoustics 610 $avibroacoustics 615 7$aHistory of engineering and technology 700 $aCitarella$b Roberto$4edt$01293417 702 $aFederico$b Luigi$4edt 702 $aMattia$b Barbarino$4edt 702 $aCitarella$b Roberto$4oth 702 $aFederico$b Luigi$4oth 702 $aMattia$b Barbarino$4oth 906 $aBOOK 912 $a9910557327903321 996 $aAeroacustic and Vibroacoustic Advancement in Aerospace and Automotive Systems$93034729 997 $aUNINA