简介:WereportonthefirstoperationsofthereconstructionfarmsfortheD0experiment.Datawerereadfromataperobotto50PC'srunningLinux,processed,spooledtoacentraldiskbufferformergingandthenwrittenbacktothetaperobot.Thefarmsarebeingusedsuccessfullytoreconstructthedataasitcomesin.Transferrateswelloverthe12.5MB/secneededforfulldatarateshavebeenachieved.
简介:macroporous的吸着性质为La3+离子的弱酸树脂(D113)被化学分析和红外系列学习。试验性的结果显示D113树脂在pH=为La3+有一个好吸附能力6.0在HAc-NaAc媒介。静态地浸透的吸附能力是273.3mg/g。La3+/Ce3+,La3+/Gd3+,La3+/Er3+,和La3+/Y3+的分离系数分别地是2.29,3.64,4.27,和0.627。吸附的明显的激活精力,Ea是吸着的18.4kJ/mol,热力学参数H,S,和G是4.53kJ/mol,61.8J/(mol.K),?13.9kJ/mol分别地。为La3+的D113的吸附行为服从Freundlich等温线。在树脂上吸附的La3+能是由2.0mol/LHCl份量上的eluted。
简介:DevelopedatColoradoStateUniversity,CASC2D-SEDisaphysically-basedmodelsimulatingthehydrologicresponseofawatershedtoadistributedrainfallfield.Thetime-dependentprocessesinclude:precipitation,interception,infiltration,surfacerunoffandchannelrouting,uplanderosion,transportandsedimentation.CASC2D-SEDisappliedtoGoodwinCreek,Mississippi.Thewatershedcovers21km2andhasbeenextensivelymonitoredbothattheoutletandatseveralinternallocationsbytheARS-NSLatOxford,MS.Themodelhasbeencalibratedandvalidatedusingrainfalldatafrom16meteorologicalstations,6streamgaugingstationsand6sedimentgaugingstations.Sedimenterosion/depositionratesbysizefractionarepredictedbothinspaceandtime.Geovisualization,apowerfuldataexplorationtechniquebasedonGIStechnology,isusedtoanalyzeanddisplaythedynamicoutputtimeseriesgeneratedbytheCASC2D-SEDmodel.
简介:Ahigh-speedandhigh-resolutionopticalA/Dquantizerisproposed.Itsarchitectureisdiscussed.Bitcircuitsarebuiltbyusingthephasemodulatorsinparallel.Basedonthedifferentcharacterofthehalf-wavevoltageforeveryphasemodulatorandthepolarizedbiasdesignofincidentlight,theRFinputsignaliscodedandtransmittedintheformofopticaldigitalsignal.Accordingtotheprincipleofthearchitecture,thehigh-resolutionquantizerswith8-bitand12-bit,etal.arebuilt,whichoperateat100GS/s.Theirquantizationnoiseisinvariablealmostwithbitcircuitsincreasing.Thesimulationresultof4-bitA/Dquantizerisalsogiven.
简介:Thispaperproposesanewtechniquethatisusedtoembeddepthmapsintocorresponding2-dimensional(2D)images.Sincea2Dimageanditsdepthmapareintegratedintoonetypeofimageformat,theycanbetreatedasiftheywereone2Dimage.Thereby,itcanreducetheamountofdatain3Dimagesbyhalfandsimplifytheprocessesforsendingthemthroughnetworksbecausethesynchronizationbetweenimagesfortheleftandrighteyesbecomesunnecessary.Weembeddepthmapsinthequantizeddiscretecosinetransform(DCT)dataof2Dimages.Thekeytothistechniqueiswhetherthedepthmapscouldbeembeddedinto2Dimageswithoutperceivablydeterioratingtheirquality.Wetrytoreducetheirdeteriorationbycompressingthedepthmapdatabyusingthedifferencesfromthenextpixeltotheleft.Weassumethatthereisonlyonenon-zeropixelatmostononehorizontallineintheDCTblockbecausethedepthmapvalueschangeabruptly.Weconductanexperimenttoevaluatethequalityofthe2Dimagesembeddedwithdepthmapsandfindthatsatisfactoryqualitycouldbeachieved.