VIAF

Virtual International Authority File

Search

Leader 00000nz a2200037n 45 0
001 WKP|Q77696377 (VIAF cluster) (Authority/Source Record)
003 WKP
005 20241221010735.0
008 241221nneanz||abbn n and d
035 ‎‡a (WKP)Q77696377‏
024 ‎‡a 0000-0002-8445-0935‏ ‎‡2 orcid‏
024 ‎‡a 7406515555‏ ‎‡2 scopus‏
035 ‎‡a (OCoLC)Q77696377‏
100 0 ‎‡a জিম মিচেল‏ ‎‡9 bn‏
400 0 ‎‡a Jim Mitchell‏ ‎‡c researcher‏ ‎‡9 en‏
400 0 ‎‡a Mitchell J‏ ‎‡c onderzoeker‏ ‎‡9 nl‏
670 ‎‡a Author's A polyphasic approach for assessing the suitability of bioremediation for the treatment of hydrocarbon-impacted soil.‏
670 ‎‡a Author's A practical optical trap for manipulating and isolating bacteria from complex microbial communities‏
670 ‎‡a Author's AFM nanoindentations of diatom biosilica surfaces‏
670 ‎‡a Author's Chemotaxis toward phytoplankton drives organic matter partitioning among marine bacteria.‏
670 ‎‡a Author's Complex gold nanostructures derived by templating from diatom frustules‏
670 ‎‡a Author's Confined aquifers as viral reservoirs‏
670 ‎‡a Author's Contrasting microbial assemblages in adjacent water masses associated with the East Australian Current.‏
670 ‎‡a Author's Determining the metabolic footprints of hydrocarbon degradation using multivariate analysis‏
670 ‎‡a Author's Distributions of Virus-Like Particles and Prokaryotes within Microenvironments‏
670 ‎‡a Author's Fabrication of gold nanorod arrays by templating from porous alumina.‏
670 ‎‡a Author's From egg to hatchling: preferential retention of fatty acid biomarkers in young-of-the-year Port Jackson sharksHeterodontus portusjacksoni‏
670 ‎‡a Author's High nutrient transport and cycling potential revealed in the microbial metagenome of Australian sea lion (Neophoca cinerea) faeces‏
670 ‎‡a Author's High-resolution fluorometer for mapping microscale phytoplankton distributions.‏
670 ‎‡a Author's Host-specific associations affect the microbiome of Philornis downsi, an introduced parasite to the Galápagos Islands.‏
670 ‎‡a Author's Inter-tissue differences in fatty acid incorporation as a result of dietary oil manipulation in Port Jackson sharks (Heterodontus portusjacksoni)‏
670 ‎‡a Author's Macroscale distribution of virioplankton and heterotrophic bacteria in the Bohai Sea.‏
670 ‎‡a Author's Marine and giant viruses as indicators of a marine microbial community in a riverine system‏
670 ‎‡a Author's Metagenomic comparison of microbial communities inhabiting confined and unconfined aquifer ecosystems.‏
670 ‎‡a Author's Microbial alignment in flow changes ocean light climate‏
670 ‎‡a Author's Microbial micropatches within microbial hotspots.‏
670 ‎‡a Author's Microscale nutrient patches in planktonic habitats shown by chemotactic bacteria‏
670 ‎‡a Author's Pore architecture of diatom frustules: potential nanostructured membranes for molecular and particle separations.‏
670 ‎‡a Author's Putative Effect of Aquifer Recharge on the Abundance and Taxonomic Composition of Endemic Microbial Communities‏
670 ‎‡a Author's Southern South Australian groundwater microbe diversity‏
670 ‎‡a Author's Stygofauna enhance prokaryotic transport in groundwater ecosystems.‏
670 ‎‡a Author's Substrate type determines metagenomic profiles from diverse chemical habitats‏
670 ‎‡a Author's Surface modification of an organic hessian substrate leads to shifts in bacterial biofilm community composition and abundance‏
670 ‎‡a Author's Sustainable remediation: electrochemically assisted microbial dechlorination of tetrachloroethene-contaminated groundwater.‏
670 ‎‡a Author's The influence of cell size on marine bacterial motility and energetics.‏
670 ‎‡a Author's The role of diatom nanostructures in biasing diffusion to improve uptake in a patchy nutrient environment.‏
670 ‎‡a Author's The role of external carbonic anhydrase in photosynthesis during growth of the marine diatom Chaetoceros muelleri‏
670 ‎‡a Author's Vibrio coralliilyticus search patterns across an oxygen gradient‏
909 ‎‡a (orcid) 0000000284450935‏ ‎‡9 1‏
909 ‎‡a (scopus) 7406515555‏ ‎‡9 1‏
919 ‎‡a influenceofcellsizeonmarinebacterialmotilityandenergetics‏ ‎‡A The influence of cell size on marine bacterial motility and energetics.‏ ‎‡9 1‏
919 ‎‡a roleofdiatomnanostructuresinbiasingdiffusiontoimproveuptakeinapatchynutrientenvironment‏ ‎‡A The role of diatom nanostructures in biasing diffusion to improve uptake in a patchy nutrient environment.‏ ‎‡9 1‏
919 ‎‡a determiningthemetabolicfootprintsofhydrocarbondegradationusingmultivariateanalysis‏ ‎‡A Determining the metabolic footprints of hydrocarbon degradation using multivariate analysis‏ ‎‡9 1‏
919 ‎‡a southernsouthaustraliangroundwatermicrobediversity‏ ‎‡A Southern South Australian groundwater microbe diversity‏ ‎‡9 1‏
919 ‎‡a vibriocoralliilyticussearchpatternsacrossanoxygengradient‏ ‎‡A Vibrio coralliilyticus search patterns across an oxygen gradient‏ ‎‡9 1‏
919 ‎‡a sustainableremediationelectrochemicallyassistedmicrobialdechlorinationoftetrachloroethenecontaminatedgroundwater‏ ‎‡A Sustainable remediation: electrochemically assisted microbial dechlorination of tetrachloroethene-contaminated groundwater.‏ ‎‡9 1‏
919 ‎‡a roleofexternalcarbonicanhydraseinphotosynthesisduringgrowthofthemarinediatomchaetocerosmuelleri‏ ‎‡A The role of external carbonic anhydrase in photosynthesis during growth of the marine diatom Chaetoceros muelleri‏ ‎‡9 1‏
919 ‎‡a intertissuedifferencesinfattyacidincorporationasaresultofdietaryoilmanipulationinportjacksonsharksheterodontusportusjacksoni‏ ‎‡A Inter-tissue differences in fatty acid incorporation as a result of dietary oil manipulation in Port Jackson sharks (Heterodontus portusjacksoni)‏ ‎‡9 1‏
919 ‎‡a surfacemodificationofanorganichessiansubstrateleadstoshiftsinbacterialbiofilmcommunitycompositionandabundance‏ ‎‡A Surface modification of an organic hessian substrate leads to shifts in bacterial biofilm community composition and abundance‏ ‎‡9 1‏
919 ‎‡a stygofaunaenhanceprokaryotictransportingroundwaterecosystems‏ ‎‡A Stygofauna enhance prokaryotic transport in groundwater ecosystems.‏ ‎‡9 1‏
919 ‎‡a microbialalignmentinflowchangesoceanlightclimate‏ ‎‡A Microbial alignment in flow changes ocean light climate‏ ‎‡9 1‏
919 ‎‡a fromeggtohatchlingpreferentialretentionoffattyacidbiomarkersinyoungoftheyearportjacksonsharksheterodontusportusjacksoni‏ ‎‡A From egg to hatchling: preferential retention of fatty acid biomarkers in young-of-the-year Port Jackson sharksHeterodontus portusjacksoni‏ ‎‡9 1‏
919 ‎‡a putativeeffectofaquiferrechargeontheabundanceandtaxonomiccompositionofendemicmicrobialcommunities‏ ‎‡A Putative Effect of Aquifer Recharge on the Abundance and Taxonomic Composition of Endemic Microbial Communities‏ ‎‡9 1‏
919 ‎‡a microbialmicropatcheswithinmicrobialhotspots‏ ‎‡A Microbial micropatches within microbial hotspots.‏ ‎‡9 1‏
919 ‎‡a chemotaxistowardphytoplanktondrivesorganicmatterpartitioningamongmarinebacteria‏ ‎‡A Chemotaxis toward phytoplankton drives organic matter partitioning among marine bacteria.‏ ‎‡9 1‏
919 ‎‡a substratetypedeterminesmetagenomicprofilesfromdiversechemicalhabitats‏ ‎‡A Substrate type determines metagenomic profiles from diverse chemical habitats‏ ‎‡9 1‏
919 ‎‡a porearchitectureofdiatomfrustulespotentialnanostructuredmembranesformolecularandparticleseparations‏ ‎‡A Pore architecture of diatom frustules: potential nanostructured membranes for molecular and particle separations.‏ ‎‡9 1‏
919 ‎‡a marineandgiantvirusesasindicatorsofamarinemicrobialcommunityinariverinesystem‏ ‎‡A Marine and giant viruses as indicators of a marine microbial community in a riverine system‏ ‎‡9 1‏
919 ‎‡a hostspecificassociationsaffectthemicrobiomeofphilornisdownsianintroducedparasitetothegalapagosislands‏ ‎‡A Host-specific associations affect the microbiome of Philornis downsi, an introduced parasite to the Galápagos Islands.‏ ‎‡9 1‏
919 ‎‡a microscalenutrientpatchesinplanktonichabitatsshownbychemotacticbacteria‏ ‎‡A Microscale nutrient patches in planktonic habitats shown by chemotactic bacteria‏ ‎‡9 1‏
919 ‎‡a distributionsofviruslikeparticlesandprokaryoteswithinmicroenvironments‏ ‎‡A Distributions of Virus-Like Particles and Prokaryotes within Microenvironments‏ ‎‡9 1‏
919 ‎‡a macroscaledistributionofvirioplanktonandheterotrophicbacteriainthebohaisea‏ ‎‡A Macroscale distribution of virioplankton and heterotrophic bacteria in the Bohai Sea.‏ ‎‡9 1‏
919 ‎‡a highresolutionfluorometerformappingmicroscalephytoplanktondistributions‏ ‎‡A High-resolution fluorometer for mapping microscale phytoplankton distributions.‏ ‎‡9 1‏
919 ‎‡a metagenomiccomparisonofmicrobialcommunitiesinhabitingconfinedandunconfinedaquiferecosystems‏ ‎‡A Metagenomic comparison of microbial communities inhabiting confined and unconfined aquifer ecosystems.‏ ‎‡9 1‏
919 ‎‡a fabricationofgoldnanorodarraysbytemplatingfromporousalumina‏ ‎‡A Fabrication of gold nanorod arrays by templating from porous alumina.‏ ‎‡9 1‏
919 ‎‡a highnutrienttransportandcyclingpotentialrevealedinthemicrobialmetagenomeofaustraliansealionneophocacinereafaeces‏ ‎‡A High nutrient transport and cycling potential revealed in the microbial metagenome of Australian sea lion (Neophoca cinerea) faeces‏ ‎‡9 1‏
919 ‎‡a afmnanoindentationsofdiatombiosilicasurfaces‏ ‎‡A AFM nanoindentations of diatom biosilica surfaces‏ ‎‡9 1‏
919 ‎‡a contrastingmicrobialassemblagesinadjacentwatermassesassociatedwiththeeastaustraliancurrent‏ ‎‡A Contrasting microbial assemblages in adjacent water masses associated with the East Australian Current.‏ ‎‡9 1‏
919 ‎‡a complexgoldnanostructuresderivedbytemplatingfromdiatomfrustules‏ ‎‡A Complex gold nanostructures derived by templating from diatom frustules‏ ‎‡9 1‏
919 ‎‡a practicalopticaltrapformanipulatingandisolatingbacteriafromcomplexmicrobialcommunities‏ ‎‡A A practical optical trap for manipulating and isolating bacteria from complex microbial communities‏ ‎‡9 1‏
919 ‎‡a polyphasicapproachforassessingthesuitabilityofbioremediationforthetreatmentofhydrocarbonimpactedsoil‏ ‎‡A A polyphasic approach for assessing the suitability of bioremediation for the treatment of hydrocarbon-impacted soil.‏ ‎‡9 1‏
919 ‎‡a confinedaquifersasviralreservoirs‏ ‎‡A Confined aquifers as viral reservoirs‏ ‎‡9 1‏
996 ‎‡2 LC|n 88175279
996 ‎‡2 J9U|987007371381405171
996 ‎‡2 LC|n 92012618
996 ‎‡2 LC|no2002031052
996 ‎‡2 CAOONL|ncf10295800
996 ‎‡2 LC|no2017158294
996 ‎‡2 NLA|000035653646
996 ‎‡2 LC|no2001095349
996 ‎‡2 NTA|081612052
996 ‎‡2 NUKAT|n 2020215043
996 ‎‡2 LC|n 90692880
996 ‎‡2 LC|n 83187813
996 ‎‡2 DNB|110914864
996 ‎‡2 BIBSYS|90272256
996 ‎‡2 LC|n 2016010128
996 ‎‡2 NLA|000035542819
996 ‎‡2 ISNI|0000000119370931
996 ‎‡2 ISNI|0000000505022978
996 ‎‡2 LC|n 96002879
996 ‎‡2 LC|n 88676540
996 ‎‡2 LC|no2011100662
996 ‎‡2 NTA|086374419
996 ‎‡2 ISNI|0000000030978318
996 ‎‡2 CAOONL|ncf10093704
996 ‎‡2 BNE|XX1034229
996 ‎‡2 CAOONL|ncf10058162
996 ‎‡2 JPG|500021945
996 ‎‡2 NUKAT|n 2009144508
996 ‎‡2 NDL|00440840
996 ‎‡2 LC|n 2007161331
996 ‎‡2 LC|n 96041317
996 ‎‡2 LC|no2024066361
996 ‎‡2 SUDOC|281434085
996 ‎‡2 ISNI|0000000039219158
996 ‎‡2 LC|n 84168008
996 ‎‡2 ISNI|0000000455603052
996 ‎‡2 ISNI|000000003637067X
996 ‎‡2 SUDOC|101594828
996 ‎‡2 BNF|13937802
996 ‎‡2 NTA|069585733
996 ‎‡2 NUKAT|n 2009106027
996 ‎‡2 BNF|14122052
996 ‎‡2 BNF|14122053
996 ‎‡2 BIBSYS|98067919
996 ‎‡2 NII|DA01659480
996 ‎‡2 NII|DA02688961
996 ‎‡2 LC|n 2024043661
996 ‎‡2 ISNI|000000003465963X
996 ‎‡2 ISNI|0000000109050053
996 ‎‡2 LC|n 2019019168
996 ‎‡2 LC|n 2016052548
996 ‎‡2 LC|no2013117466
996 ‎‡2 LC|no2007088243
996 ‎‡2 ISNI|0000000054282315
996 ‎‡2 SUDOC|182468690
996 ‎‡2 ISNI|0000000043222392
996 ‎‡2 CAOONL|ncf10585048
996 ‎‡2 ISNI|0000000023766042
996 ‎‡2 PLWABN|9810532590705606
996 ‎‡2 NLA|000036586208
996 ‎‡2 LC|nb2013027520
996 ‎‡2 ISNI|0000000103608183
996 ‎‡2 NDL|00761801
996 ‎‡2 NTA|129678864
996 ‎‡2 CAOONL|ncf10467821
996 ‎‡2 LC|no2022143883
996 ‎‡2 NLA|000065402683
996 ‎‡2 ISNI|0000000456690442
996 ‎‡2 ISNI|0000000466728459
996 ‎‡2 NUKAT|n 2006145420
996 ‎‡2 DNB|1146997183
996 ‎‡2 SUDOC|035175370
996 ‎‡2 ISNI|0000000117670594
996 ‎‡2 LC|no2015139346
996 ‎‡2 LC|no 94034060
996 ‎‡2 SUDOC|113488440
996 ‎‡2 J9U|987007424579205171
996 ‎‡2 DBC|87097969609570
996 ‎‡2 RERO|A027570434
996 ‎‡2 DNB|121143043X
996 ‎‡2 DNB|134463978
996 ‎‡2 DNB|17226071X
996 ‎‡2 ISNI|0000000120248458
996 ‎‡2 NUKAT|n 2009095980
996 ‎‡2 BIBSYS|3079089
996 ‎‡2 NII|DA1341412X
996 ‎‡2 LC|n 82092832
996 ‎‡2 CAOONL|ncf10649158
996 ‎‡2 ISNI|0000000042932384
996 ‎‡2 ISNI|0000000070401900
996 ‎‡2 NLA|000036556349
996 ‎‡2 LC|n 84032328
996 ‎‡2 BIBSYS|90117994
996 ‎‡2 ISNI|0000000055226307
996 ‎‡2 LC|n 82222000
996 ‎‡2 VLACC|000036126
996 ‎‡2 RERO|A003599123
996 ‎‡2 ISNI|0000000424905744
996 ‎‡2 SUDOC|190921722
996 ‎‡2 BIBSYS|90570187
996 ‎‡2 DNB|119326359X
996 ‎‡2 LC|no2020127165
996 ‎‡2 ISNI|0000000045907977
996 ‎‡2 RERO|A016757698
996 ‎‡2 BNF|12739500
996 ‎‡2 N6I|vtls001213641
996 ‎‡2 BAV|495_223336
996 ‎‡2 RERO|A022884208
996 ‎‡2 BIBSYS|43964
996 ‎‡2 LC|nr2006027593
996 ‎‡2 J9U|987007346610205171
996 ‎‡2 LC|n 50034793
996 ‎‡2 ISNI|0000000076895761
996 ‎‡2 ISNI|0000000451707647
996 ‎‡2 LC|no2015074565
996 ‎‡2 NTA|071808353
996 ‎‡2 LC|n 95047851
996 ‎‡2 ISNI|0000000417261688
996 ‎‡2 DNB|1135628661
996 ‎‡2 PLWABN|9812739375705606
996 ‎‡2 DNB|135221269
996 ‎‡2 LC|n 85109014
996 ‎‡2 DNB|118124684
996 ‎‡2 ISNI|0000000110803411
996 ‎‡2 ISNI|0000000122559313
996 ‎‡2 DNB|129624896
996 ‎‡2 ISNI|0000000049022746
996 ‎‡2 RERO|A013719353
996 ‎‡2 J9U|987010649773205171
996 ‎‡2 NYNYRILM|176857
996 ‎‡2 N6I|vtls001415030
996 ‎‡2 NTA|085440302
996 ‎‡2 LC|no2011129622
996 ‎‡2 ISNI|0000000066477427
996 ‎‡2 ISNI|0000000079530784
996 ‎‡2 NDL|001219645
996 ‎‡2 LC|no 92029884
996 ‎‡2 LC|n 50034893
996 ‎‡2 LC|n 82041815
996 ‎‡2 LC|nb2013011811
996 ‎‡2 SUDOC|068747438
996 ‎‡2 ISNI|0000000074341677
996 ‎‡2 J9U|987007354779105171
996 ‎‡2 BIBSYS|97030431
996 ‎‡2 NTA|072446072
996 ‎‡2 ISNI|0000000434867622
996 ‎‡2 BIBSYS|90306067
996 ‎‡2 BIBSYS|90923949
996 ‎‡2 LC|no 95057689
996 ‎‡2 SUDOC|081349262
996 ‎‡2 LC|nr2004034579
996 ‎‡2 LC|no2023047453
996 ‎‡2 BNF|14451172
996 ‎‡2 LC|nr 97043930
996 ‎‡2 ISNI|0000000024972024
996 ‎‡2 LC|no2021047009
996 ‎‡2 ISNI|000000011493083X
996 ‎‡2 ISNI|0000000043366919
996 ‎‡2 ISNI|0000000034050381
996 ‎‡2 ISNI|0000000114402180
996 ‎‡2 ISNI|000000008304704X
996 ‎‡2 ISNI|0000000402769112
996 ‎‡2 SUDOC|032853483
996 ‎‡2 NYNYRILM|380938
996 ‎‡2 BIBSYS|11032284
996 ‎‡2 LC|n 84140268
996 ‎‡2 NUKAT|n 2017054688
996 ‎‡2 NUKAT|n 2018243097
996 ‎‡2 ISNI|0000000051573520
996 ‎‡2 ISNI|0000000079108284
996 ‎‡2 LIH|LNB:C5_a__v_;=B_v_
996 ‎‡2 DNB|1237129613
996 ‎‡2 LC|n 2021035091
996 ‎‡2 LC|no2019094099
996 ‎‡2 NLA|000035356092
996 ‎‡2 NII|DA06270289
996 ‎‡2 LC|nb 97078128
996 ‎‡2 NUKAT|n 2018265217
996 ‎‡2 BNF|11156567
996 ‎‡2 BNC|981058514738306706
996 ‎‡2 BLBNB|000296071
996 ‎‡2 SUDOC|200274910
996 ‎‡2 BNF|12442288
996 ‎‡2 NLA|000036082716
996 ‎‡2 CAOONL|ncf10117172
996 ‎‡2 LC|n 84133312
996 ‎‡2 ISNI|0000000067838749
996 ‎‡2 LC|n 96112407
996 ‎‡2 RERO|A009139976
996 ‎‡2 LC|n 91087143
996 ‎‡2 LC|n 80025751
996 ‎‡2 BNF|14055085
996 ‎‡2 ISNI|0000000356137930
996 ‎‡2 LC|n 2013046419
996 ‎‡2 SUDOC|069261288
996 ‎‡2 DNB|140394303
996 ‎‡2 LC|n 87922908
996 ‎‡2 SUDOC|128659475
996 ‎‡2 RERO|A003599122
996 ‎‡2 J9U|987007457064705171
996 ‎‡2 RERO|A003599120
996 ‎‡2 PTBNP|163458
996 ‎‡2 J9U|987007271530905171
996 ‎‡2 BIBSYS|90517925
996 ‎‡2 ERRR|a1146656x
996 ‎‡2 BNF|12823270
996 ‎‡2 SUDOC|095141421
996 ‎‡2 BNF|17141169
996 ‎‡2 SELIBR|188199
996 ‎‡2 LC|n 87856391
996 ‎‡2 NDL|00471740
996 ‎‡2 LC|nb2008015874
996 ‎‡2 NUKAT|n 99707556
996 ‎‡2 B2Q|0000806514
996 ‎‡2 BNF|12626101
996 ‎‡2 LC|n 2012209304
996 ‎‡2 LC|n 50036599
996 ‎‡2 SUDOC|155284657
996 ‎‡2 ISNI|0000000052297396
996 ‎‡2 N6I|vtls000317169
996 ‎‡2 DNB|141029811
996 ‎‡2 NTA|326081097
996 ‎‡2 LC|n 2005172810
996 ‎‡2 NKC|xx0099453
996 ‎‡2 CAOONL|ncf11243963
996 ‎‡2 CAOONL|ncf10312713
996 ‎‡2 J9U|987012508824405171
996 ‎‡2 ISNI|0000000053135938
996 ‎‡2 ISNI|0000000444846374
996 ‎‡2 LC|n 2023004985
996 ‎‡2 CAOONL|ncf11313113
996 ‎‡2 LC|no2004069857
996 ‎‡2 J9U|987007373924905171
996 ‎‡2 BNF|11886412
996 ‎‡2 DBC|87097969609562
996 ‎‡2 NSK|000115900
996 ‎‡2 BNE|XX1516333
996 ‎‡2 BIBSYS|90067661
996 ‎‡2 LC|n 88266243
996 ‎‡2 LC|nr 98019139
996 ‎‡2 LC|n 99271612
996 ‎‡2 LC|no2009153338
996 ‎‡2 ISNI|0000000109324421
996 ‎‡2 ISNI|0000000022431726
996 ‎‡2 BIBSYS|90379690
996 ‎‡2 LC|no2013030877
996 ‎‡2 LC|no2019071474
996 ‎‡2 ISNI|0000000072783842
996 ‎‡2 ISNI|000000004406826X
996 ‎‡2 NUKAT|n 2005012723
997 ‎‡a 0 0 lived 0 0‏ ‎‡9 1‏