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Press,$c1960 300 $a283 p. ;$c26 cm. 490 0 $aAnnals of mathematics studies ;$v44 500 $aIncludes bibliography 650 0$aMathematical statistics 650 0$aStationary processes 650 0$aStochastic processes 907 $a.b10838302$b23-02-17$c28-06-02 912 $a991001371439707536 945 $aLE013 60G FUR11 (1960)$g1$i2013000028026$lle013$o-$pE0.00$q-$rl$s- $t0$u0$v0$w0$x0$y.i10948090$z28-06-02 996 $aStationary processes and prediction theoryHarry Furstenberg$9923835 997 $aUNISALENTO 998 $ale013$b01-01-95$cm$da $e-$feng$gus $h0$i1 LEADER 02032oam 2200493 a 450 001 9910701452303321 005 20120222143359.0 035 $a(CKB)5470000002418555 035 $a(OCoLC)777849409 035 $a(EXLCZ)995470000002418555 100 $a20120222d1986 ua 0 101 0 $aeng 135 $aurbn||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aResearch on enhancing the utilization of digital multispectral data and geographic information systems in global habitability studies$b[electronic resource] /$fEdward A. Martinko, principal investigator, James W. Merchant, co-investigator 210 1$aLawrence, Kan. :$cUniversity of Kansas Center for Research ;$a[Washington, D.C.]:$c[National Aeronautics and Space Administration],$d[1986] 215 $a1 online resource (2 unnumbered pages, 32 pages, 27 unnumbered pages) $cillustrations 225 1 $aNASA-CR ;$v177294 300 $aTitle from title screen (viewed Feb. 22, 2012). 300 $a"February 1986." 320 $aIncludes bibliographical references. 606 $aEnvironmental engineering$2nasat 606 $aGeographic information systems$2nasat 606 $aRemote sensing$2nasat 606 $aResources management$2nasat 606 $aTechnology transfer$2nasat 615 7$aEnvironmental engineering. 615 7$aGeographic information systems. 615 7$aRemote sensing. 615 7$aResources management. 615 7$aTechnology transfer. 700 $aMartinko$b E. A$01398390 701 $aMerchant$b James W$01398391 712 02$aUnited States.$bNational Aeronautics and Space Administration. 712 02$aUniversity of Kansas.$bCenter for Research. 801 0$bGPO 801 1$bGPO 801 2$bGPO 906 $aBOOK 912 $a9910701452303321 996 $aResearch on enhancing the utilization of digital multispectral data and geographic information systems in global habitability studies$93461549 997 $aUNINA LEADER 03882nam 2201105z- 450 001 9910595066503321 005 20231214133321.0 035 $a(CKB)5680000000080868 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/92088 035 $a(EXLCZ)995680000000080868 100 $a20202209d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aNumerical Investigations of Combustion 210 $aBasel$cMDPI Books$d2022 215 $a1 electronic resource (240 p.) 311 $a3-0365-4684-7 311 $a3-0365-4683-9 330 $aThis Special Issue will highlight the latest advances in numerical modeling of combustion-related applications. With the recent advancements in computational capacities and the widespread use of simulations in engineering problems, numerical methods are becoming increasingly important to improve existing models and develop new models that can help researchers to better understand the underlying mechanisms of combustion, their interaction with other physical phenomena, such as turbulence, and their impacts on the performance of related applications at both fundamental and practical levels. 606 $aTechnology: general issues$2bicssc 606 $aHistory of engineering & technology$2bicssc 610 $agas fire suppression 610 $ainert gas agents 610 $aagent quantity 610 $adischarge rate 610 $aventilation rate 610 $apremixed combustion 610 $aobstructed channels 610 $aflame acceleration 610 $athermal expansion 610 $acomputational simulations 610 $amachine learning 610 $asoot concentration 610 $asoot emissions 610 $aartificial neural network 610 $aestimator 610 $acomputational fluid dynamics 610 $acombustion 610 $abiogas 610 $ahydrogen 610 $alaminar flame speed 610 $acorrelation 610 $ajet-and-recirculation stabilized combustion 610 $aOH* measurements 610 $anumerical CFD analysis 610 $aRANS modeling 610 $adetailed chemistry schemes 610 $aheat-loss modeling 610 $alow-calorific combustion 610 $asyngas fuel 610 $amicro-combustion 610 $asyngas 610 $arepetitive extinction and ignition (FREI) 610 $anumerical simulations 610 $aflame instabilities 610 $aflame propagation 610 $aclosed spherical bomb 610 $aincipient stage 610 $amethane 610 $aN2O 610 $aflash boiling 610 $agasoline direct injection 610 $aSpray G 610 $adiscrete droplet method 610 $afuel surrogates 610 $acombustion process 610 $areactivity model 610 $asynthetic jet fuels 610 $aturbine engines 610 $atwo-stroke engine 610 $amultiple injection 610 $aemission 610 $anumerical simulation 610 $acomputational fluid dynamic (CFD) 610 $anatural gas 610 $alaminar burning velocity (LBV) 610 $aclosed vessel combustion 610 $anumerical study 610 $amicrocombustion 610 $acomplex geometry 615 7$aTechnology: general issues 615 7$aHistory of engineering & technology 700 $aAfonso$b Alexandre M$4edt$01319565 702 $aResende$b Pedro$4edt 702 $aAyoobi$b Mohsen$4edt 702 $aAfonso$b Alexandre M$4oth 702 $aResende$b Pedro$4oth 702 $aAyoobi$b Mohsen$4oth 906 $aBOOK 912 $a9910595066503321 996 $aNumerical Investigations of Combustion$93033972 997 $aUNINA