LEADER 00853nam0 2200265 450 001 000024249 005 20090317113803.0 100 $a20090311d1963----km-y0itay50------ba 101 0 $aeng 102 $aUS 105 $aa-------001yy 200 1 $aFundamentals of electronics$fDepartment of the Air Force 210 $aWashington$cU. S. Government printing office$dstampa 1963 215 $a564 p.$cill.$d27 cm 225 2 $aAir Force Manual$v101-8 410 0$12001$aAir Force Manual 500 10$aFundamentals of electronics$944994 610 1 $aElettronica 676 $a537.5$v19 710 01$aStati Uniti d'America :$bDepartment of the Air Force$0633228 801 0$aIT$bUNIPARTHENOPE$c20090311$gRICA$2UNIMARC 912 $a000024249 951 $aS 537.5/1$bS 432$cDSA$d2009 996 $aFundamentals of electronics$944994 997 $aUNIPARTHENOPE LEADER 01451nam 2200421I 450 001 9910713551303321 005 20200522091115.0 035 $a(CKB)5470000002502151 035 $a(OCoLC)1155198580 035 $a(EXLCZ)995470000002502151 100 $a20200522d2020 ua 0 101 0 $aeng 135 $aurbn||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 14$aThe GFDL finite-volume cubed-sphere dynamical core: release 201912 /$fdocument prepared by Lucas Harris [and three others] 210 1$a[Princeton, N.J.] :$cGFDL Weather and Climate Dynamics Division,$d2020. 215 $a1 online resource (10 unnumbered pages) 225 0 $aTechnical memorandum GFDL ;$v2020001 300 $a"10 Jan 2020." 517 $aGFDL finite-volume cubed-sphere dynamical core 606 $aMicrophysics 606 $aMathematical optimization 606 $aGeological modeling 606 $aEarth sciences 615 0$aMicrophysics. 615 0$aMathematical optimization. 615 0$aGeological modeling. 615 0$aEarth sciences. 700 $aHarris$b Lucas$01409844 712 02$aGeophysical Fluid Dynamics Laboratory (U.S.).$bWeather and Climate Dynamics Division, 801 0$bGPO 801 1$bGPO 906 $aBOOK 912 $a9910713551303321 996 $aThe GFDL finite-volume cubed-sphere dynamical core: release 201912$93497327 997 $aUNINA