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WKP|Q51504049
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WKP |
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(WKP)Q51504049
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0000-0003-3687-0035
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orcid
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scopus
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(OCoLC)Q51504049
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PE
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100
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Carmen Mayorga Martínez
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química farmacéutica peruana
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375
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2
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iso5218
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Carmen C Mayorga-Martinez
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Carmen Mayorga Martínez
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Carmen C Mayorga-Martinez
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wetenschapper
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Author's 1T-Phase Transition Metal Dichalcogenides (MoS2, MoSe2, WS2, and WSe2) with Fast Heterogeneous Electron Transfer: Application on Second-Generation Enzyme-Based Biosensor.
|
670
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‡a
Author's 2H → 1T Phase Change in Direct Synthesis of WS2 Nanosheets via Solution-Based Electrochemical Exfoliation and Their Catalytic Properties
|
670
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‡a
Author's A highly sensitive enzyme-less glucose sensor based on pnictogens and silver shell-gold core nanorod composites
|
670
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‡a
Author's A study of the effect of sonication time on the catalytic performance of layered WS2 from various sources
|
670
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‡a
Author's An integrated phenol 'sensoremoval' microfluidic nanostructured platform
|
670
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‡a
Author's Antithyroid drug detection using an enzyme cascade blocking in a nanoparticle-based lab-on-a-chip system.
|
670
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‡a
Author's Bimetallic nanowires as electrocatalysts for nonenzymatic real-time impedancimetric detection of glucose
|
670
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‡a
Author's Binary Phosphorene Redox Behavior in Oxidoreductase Enzymatic Systems
|
670
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|
‡a
Author's Bismuth nanoparticles for phenolic compounds biosensing application
|
670
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‡a
Author's Black Phosphorus Nanoparticle Labels for Immunoassays via Hydrogen Evolution Reaction Mediation
|
670
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‡a
Author's Cancer Cells Microsurgery via Asymmetric Bent Surface Au/Ag/Ni Microrobotic Scalpels Through a Transversal Rotating Magnetic Field
|
670
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‡a
Author's Cloisite Microrobots as Self-Propelling Cleaners for Fast and Efficient Removal of Improvised Organophosphate Nerve Agents
|
670
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|
‡a
Author's Electrocatalytic tuning of biosensing response through electrostatic or hydrophobic enzyme–graphene oxide interactions
|
670
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‡a
Author's Electrochemical Impedance Spectroscopy
|
670
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‡a
Author's Electrochemical Impedance Spectroscopy (bio)sensing through hydrogen evolution reaction induced by gold nanoparticles.
|
670
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‡a
Author's Ferrocene-functionalized graphene electrode for biosensing applications
|
670
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|
‡a
Author's Flexible energy generation and storage devices: focus on key role of heterocyclic solid-state organic ionic conductors
|
670
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|
‡a
Author's Fuel-Free Light-Powered TiO2/Pt Janus Micromotors for Enhanced Nitroaromatic Explosives Degradation
|
670
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|
|
‡a
Author's Graphene/Silicon heterojunction Schottky diode for vapors sensing using impedance spectroscopy
|
670
|
|
|
‡a
Author's Group 6 Layered Transition-Metal Dichalcogenides in Lab-on-a-Chip Devices: 1T-Phase WS2 for Microfluidics Non-Enzymatic Detection of Hydrogen Peroxide
|
670
|
|
|
‡a
Author's Label-Free Impedimetric Aptasensor for Ochratoxin-A Detection Using Iridium Oxide Nanoparticles
|
670
|
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|
‡a
Author's Layered Metal Thiophosphite Materials: Magnetic, Electrochemical, and Electronic Properties
|
670
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|
‡a
Author's Metallic impurities in black phosphorus nanoflakes prepared by different synthetic routes.
|
670
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|
|
‡a
Author's Microfluidic platform for environmental contaminants sensing and degradation based on boron-doped diamond electrodes.
|
670
|
|
|
‡a
Author's Micromotor Enhanced Microarray Technology for Protein Detection
|
670
|
|
|
‡a
Author's Micromotors as "Motherships": A Concept for the Transport, Delivery, and Enzymatic Release of Molecular Cargo via Nanoparticles
|
670
|
|
|
‡a
Author's MoS2 Nanoparticles as Electrocatalytic Labels in Magneto-Immunoassays
|
670
|
|
|
‡a
Author's MXene-Based Flexible Supercapacitors: Influence of an Organic Ionic Conductor Electrolyte on the Performance
|
670
|
|
|
‡a
Author's MXene Titanium Carbide-based Biosensor: Strong Dependence of Exfoliation Method on Performance
|
670
|
|
|
‡a
Author's Nano/micromotors in (bio)chemical science applications.
|
670
|
|
|
‡a
Author's Nanorobots Constructed from Nanoclay: Using Nature to Create Self-Propelled Autonomous Nanomachines
|
670
|
|
|
‡a
Author's Nonconductive layered hexagonal boron nitride exfoliation by bipolar electrochemistry
|
670
|
|
|
‡a
Author's Pnictogen-Based Enzymatic Phenol Biosensors: Phosphorene, Arsenene, Antimonene, and Bismuthene.
|
670
|
|
|
‡a
Author's Real-time measurement of glucose using chrono-impedance technique on a second generation biosensor
|
670
|
|
|
‡a
Author's Swarming Aqua Sperm Micromotors for Active Bacterial Biofilms Removal in Confined Spaces
|
670
|
|
|
‡a
Author's Swarming Magnetic Photoactive Microrobots for Dental Implant Biofilm Eradication
|
670
|
|
|
‡a
Author's TaS3 Nanofibers: Layered Trichalcogenide for High-Performance Electronic and Sensing Devices.
|
670
|
|
|
‡a
Author's Two-dimensional materials in biomedical, biosensing and sensing applications
|
670
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|
|
‡a
Author's Valence and oxide impurities in MoS2 and WS2 dramatically change their electrocatalytic activity towards proton reduction
|
670
|
|
|
‡a
Author's Water Activated Graphene Oxide Transfer Using Wax Printed Membranes for Fast Patterning of a Touch Sensitive Device
|
670
|
|
|
‡a
Author's WSe2 nanoparticles with enhanced hydrogen evolution reaction prepared by bipolar electrochemistry: application in competitive magneto-immunoassay
|
909
|
|
|
‡a
(scopus) 24473307800
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1
|
909
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|
|
‡a
(orcid) 0000000336870035
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1
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919
|
|
|
‡a
microfluidicplatformforenvironmentalcontaminantssensinganddegradationbasedonborondopeddiamondelectrodes
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Microfluidic platform for environmental contaminants sensing and degradation based on boron-doped diamond electrodes.
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1
|
919
|
|
|
‡a
metallicimpuritiesinblackphosphorusnanoflakespreparedbydifferentsyntheticroutes
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Metallic impurities in black phosphorus nanoflakes prepared by different synthetic routes.
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1
|
919
|
|
|
‡a
layeredmetalthiophosphitematerialsmagneticelectrochemicalandelectronicproperties
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Layered Metal Thiophosphite Materials: Magnetic, Electrochemical, and Electronic Properties
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1
|
919
|
|
|
‡a
labelfreeimpedimetricaptasensorforochratoxinadetectionusingiridiumoxidenanoparticles
‡A
Label-Free Impedimetric Aptasensor for Ochratoxin-A Detection Using Iridium Oxide Nanoparticles
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1
|
919
|
|
|
‡a
group6layeredtransitionmetaldichalcogenidesinlabonachipdevices1tphasews2formicrofluidicsnonenzymaticdetectionofhydrogenperoxide
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Group 6 Layered Transition-Metal Dichalcogenides in Lab-on-a-Chip Devices: 1T-Phase WS2 for Microfluidics Non-Enzymatic Detection of Hydrogen Peroxide
‡9
1
|
919
|
|
|
‡a
graphenesiliconheterojunctionschottkydiodeforvaporssensingusingimpedancespectroscopy
‡A
Graphene/Silicon heterojunction Schottky diode for vapors sensing using impedance spectroscopy
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1
|
919
|
|
|
‡a
fuelfreelightpoweredtio2ptjanusmicromotorsforenhancednitroaromaticexplosivesdegradation
‡A
Fuel-Free Light-Powered TiO2/Pt Janus Micromotors for Enhanced Nitroaromatic Explosives Degradation
‡9
1
|
919
|
|
|
‡a
flexibleenergygenerationandstoragedevicesfocusonkeyroleofheterocyclicsolidstateorganicionicconductors
‡A
Flexible energy generation and storage devices: focus on key role of heterocyclic solid-state organic ionic conductors
‡9
1
|
919
|
|
|
‡a
ferrocenefunctionalizedgrapheneelectrodeforbiosensingapplications
‡A
Ferrocene-functionalized graphene electrode for biosensing applications
‡9
1
|
919
|
|
|
‡a
electrochemicalimpedancespectroscopybiosensingthroughhydrogenevolutionreactioninducedbygoldnanoparticles
‡A
Electrochemical Impedance Spectroscopy (bio)sensing through hydrogen evolution reaction induced by gold nanoparticles.
‡9
1
|
919
|
|
|
‡a
electrochemicalimpedancespectroscopy
‡A
Electrochemical Impedance Spectroscopy
‡9
1
|
919
|
|
|
‡a
electrocatalytictuningofbiosensingresponsethroughelectrostaticorhydrophobicenzymegrapheneoxideinteractions
‡A
Electrocatalytic tuning of biosensing response through electrostatic or hydrophobic enzyme–graphene oxide interactions
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1
|
919
|
|
|
‡a
cloisitemicrorobotsasselfpropellingcleanersforfastandefficientremovalofimprovisedorganophosphatenerveagents
‡A
Cloisite Microrobots as Self-Propelling Cleaners for Fast and Efficient Removal of Improvised Organophosphate Nerve Agents
‡9
1
|
919
|
|
|
‡a
cancercellsmicrosurgeryviaasymmetricbentsurfaceauag2microroboticscalpelsthroughatransversalrotatingmagneticfield
‡A
Cancer Cells Microsurgery via Asymmetric Bent Surface Au/Ag/Ni Microrobotic Scalpels Through a Transversal Rotating Magnetic Field
‡9
1
|
919
|
|
|
‡a
blackphosphorusnanoparticlelabelsforimmunoassaysviahydrogenevolutionreactionmediation
‡A
Black Phosphorus Nanoparticle Labels for Immunoassays via Hydrogen Evolution Reaction Mediation
‡9
1
|
919
|
|
|
‡a
bismuthnanoparticlesforphenoliccompoundsbiosensingapplication
‡A
Bismuth nanoparticles for phenolic compounds biosensing application
‡9
1
|
919
|
|
|
‡a
binaryphosphoreneredoxbehaviorinoxidoreductaseenzymaticsystems
‡A
Binary Phosphorene Redox Behavior in Oxidoreductase Enzymatic Systems
‡9
1
|
919
|
|
|
‡a
bimetallicnanowiresaselectrocatalystsfornonenzymaticrealtimeimpedancimetricdetectionofglucose
‡A
Bimetallic nanowires as electrocatalysts for nonenzymatic real-time impedancimetric detection of glucose
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1
|
919
|
|
|
‡a
antithyroiddrugdetectionusinganenzymecascadeblockinginananoparticlebasedlabonachipsystem
‡A
Antithyroid drug detection using an enzyme cascade blocking in a nanoparticle-based lab-on-a-chip system.
‡9
1
|
919
|
|
|
‡a
integratedphenolsensoremovalmicrofluidicnanostructuredplatform
‡A
An integrated phenol 'sensoremoval' microfluidic nanostructured platform
‡9
1
|
919
|
|
|
‡a
mxenetitaniumcarbidebasedbiosensorstrongdependenceofexfoliationmethodonperformance
‡A
MXene Titanium Carbide-based Biosensor: Strong Dependence of Exfoliation Method on Performance
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1
|
919
|
|
|
‡a
nanomicromotorsinbiochemicalscienceapplications
‡A
Nano/micromotors in (bio)chemical science applications.
‡9
1
|
919
|
|
|
‡a
studyoftheeffectofsonicationtimeonthecatalyticperformanceoflayeredws2fromvarioussources
‡A
A study of the effect of sonication time on the catalytic performance of layered WS2 from various sources
‡9
1
|
919
|
|
|
‡a
nanorobotsconstructedfromnanoclayusingnaturetocreateselfpropelledautonomousnanomachines
‡A
Nanorobots Constructed from Nanoclay: Using Nature to Create Self-Propelled Autonomous Nanomachines
‡9
1
|
919
|
|
|
‡a
2h1tphasechangeindirectsynthesisofws2nanosheetsviasolutionbasedelectrochemicalexfoliationandtheircatalyticproperties
‡A
2H → 1T Phase Change in Direct Synthesis of WS2 Nanosheets via Solution-Based Electrochemical Exfoliation and Their Catalytic Properties
‡9
1
|
919
|
|
|
‡a
1tphasetransitionmetaldichalcogenidesmos2mose2ws2andwse2withfastheterogeneouselectrontransferapplicationon2generationenzymebasedbiosensor
‡A
1T-Phase Transition Metal Dichalcogenides (MoS2, MoSe2, WS2, and WSe2) with Fast Heterogeneous Electron Transfer: Application on Second-Generation Enzyme-Based Biosensor.
‡9
1
|
919
|
|
|
‡a
nonconductivelayeredhexagonalboronnitrideexfoliationbybipolarelectrochemistry
‡A
Nonconductive layered hexagonal boron nitride exfoliation by bipolar electrochemistry
‡9
1
|
919
|
|
|
‡a
pnictogenbasedenzymaticphenolbiosensorsphosphorenearseneneantimoneneandbismuthene
‡A
Pnictogen-Based Enzymatic Phenol Biosensors: Phosphorene, Arsenene, Antimonene, and Bismuthene.
‡9
1
|
919
|
|
|
‡a
realtimemeasurementofglucoseusingchronoimpedancetechniqueona2generationbiosensor
‡A
Real-time measurement of glucose using chrono-impedance technique on a second generation biosensor
‡9
1
|
919
|
|
|
‡a
swarmingaquaspermmicromotorsforactivebacterialbiofilmsremovalinconfinedspaces
‡A
Swarming Aqua Sperm Micromotors for Active Bacterial Biofilms Removal in Confined Spaces
‡9
1
|
919
|
|
|
‡a
swarmingmagneticphotoactivemicrorobotsfordentalimplantbiofilmeradication
‡A
Swarming Magnetic Photoactive Microrobots for Dental Implant Biofilm Eradication
‡9
1
|
919
|
|
|
‡a
tas3nanofiberslayeredtrichalcogenideforhighperformanceelectronicandsensingdevices
‡A
TaS3 Nanofibers: Layered Trichalcogenide for High-Performance Electronic and Sensing Devices.
‡9
1
|
919
|
|
|
‡a
2dimensionalmaterialsinbiomedicalbiosensingandsensingapplications
‡A
Two-dimensional materials in biomedical, biosensing and sensing applications
‡9
1
|
919
|
|
|
‡a
highlysensitiveenzymelessglucosesensorbasedonpnictogensandsilvershellgoldcorenanorodcomposites
‡A
A highly sensitive enzyme-less glucose sensor based on pnictogens and silver shell-gold core nanorod composites
‡9
1
|
919
|
|
|
‡a
valenceandoxideimpuritiesinmos2andws2dramaticallychangetheirelectrocatalyticactivitytowardsprotonreduction
‡A
Valence and oxide impurities in MoS2 and WS2 dramatically change their electrocatalytic activity towards proton reduction
‡9
1
|
919
|
|
|
‡a
wateractivatedgrapheneoxidetransferusingwaxprintedmembranesforfastpatterningofatouchsensitivedevice
‡A
Water Activated Graphene Oxide Transfer Using Wax Printed Membranes for Fast Patterning of a Touch Sensitive Device
‡9
1
|
919
|
|
|
‡a
wse2nanoparticleswithenhancedhydrogenevolutionreactionpreparedbybipolarelectrochemistryapplicationincompetitivemagnetoimmunoassay
‡A
WSe2 nanoparticles with enhanced hydrogen evolution reaction prepared by bipolar electrochemistry: application in competitive magneto-immunoassay
‡9
1
|
919
|
|
|
‡a
mxenebasedflexiblesupercapacitorsinfluenceofanorganicionicconductorelectrolyteontheperformance
‡A
MXene-Based Flexible Supercapacitors: Influence of an Organic Ionic Conductor Electrolyte on the Performance
‡9
1
|
919
|
|
|
‡a
mos2nanoparticlesaselectrocatalyticlabelsinmagnetoimmunoassays
‡A
MoS2 Nanoparticles as Electrocatalytic Labels in Magneto-Immunoassays
‡9
1
|
919
|
|
|
‡a
micromotorsasmothershipsaconceptforthetransportdeliveryandenzymaticreleaseofmolecularcargoviananoparticles
‡A
Micromotors as "Motherships": A Concept for the Transport, Delivery, and Enzymatic Release of Molecular Cargo via Nanoparticles
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1
|
919
|
|
|
‡a
micromotorenhancedmicroarraytechnologyforproteindetection
‡A
Micromotor Enhanced Microarray Technology for Protein Detection
‡9
1
|
946
|
|
|
‡a
a
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1
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947
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‡2
BNCHL|10000000000000000124940
|
996
|
|
|
‡2
BNCHL|10000000000000000124941
|
996
|
|
|
‡2
BNE|XX1081695
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996
|
|
|
‡2
SUDOC|105672122
|
996
|
|
|
‡2
NTA|166147575
|
996
|
|
|
‡2
BNE|XX4924060
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996
|
|
|
‡2
BNE|XX1266953
|
996
|
|
|
‡2
BNE|XX1272537
|
996
|
|
|
‡2
BNE|XX5431529
|
996
|
|
|
‡2
ISNI|0000000116034932
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996
|
|
|
‡2
BNC|981058596114806706
|
996
|
|
|
‡2
LC|n 79099769
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996
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|
|
‡2
DNB|140215441
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996
|
|
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‡2
ISNI|0000000060036209
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996
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|
|
‡2
BNCHL|10000000000000000073083
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996
|
|
|
‡2
BNE|XX875763
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996
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‡2
BNCHL|10000000000000000066363
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996
|
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‡2
PLWABN|9811405902305606
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996
|
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BNE|XX4976509
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996
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‡2
LC|n 82027808
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996
|
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BNE|XX864265
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996
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BNE|XX940714
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996
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J9U|987007444276705171
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996
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‡2
NUKAT|n 2014169592
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996
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‡2
BNE|XX4738247
|
996
|
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‡2
BNCHL|10000000000000000015759
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996
|
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‡2
ISNI|0000000514804541
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996
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‡2
BNE|XX5243699
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996
|
|
|
‡2
BNE|XX1125699
|
996
|
|
|
‡2
BLBNB|000561793
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996
|
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‡2
ISNI|0000000059424626
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996
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|
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‡2
SUDOC|147629020
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996
|
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‡2
BNE|XX970067
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996
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JPG|500242546
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996
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‡2
BNC|981058524995406706
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996
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‡2
BNE|XX839017
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996
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BNE|XX1068102
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996
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‡2
ISNI|0000000516793970
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996
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‡2
BNE|XX5883699
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996
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‡2
BNF|17777026
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996
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BIBSYS|14035757
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996
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LC|no2016093135
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996
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BNC|981058518761706706
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996
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LC|n 2001037277
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996
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SUDOC|240236173
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996
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LC|nr 96002925
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996
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|
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BNC|981060037940706706
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996
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|
‡2
BNCHL|10000000000000000107669
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996
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ISNI|0000000116746614
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996
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BNE|XX4813722
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996
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NII|DA19022257
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996
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BNC|981058620106506706
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996
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SUDOC|185350801
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996
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BNE|XX1102713
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996
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ISNI|0000000059537540
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996
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NTA|422765430
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996
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‡2
LC|n 2002012883
|
996
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‡2
LC|n 83012044
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996
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|
|
‡2
LC|no2010202506
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996
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|
‡2
ISNI|0000000039508152
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996
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‡2
DNB|1057206237
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996
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|
‡2
ISNI|0000000119640276
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996
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|
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BAV|495_12820
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996
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BNE|XX1674863
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996
|
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BNE|XX5532740
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996
|
|
|
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N6I|vtls000344225
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996
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CAOONL|ncf11446013
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996
|
|
|
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BNE|XX5395727
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996
|
|
|
‡2
LC|no2022006088
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996
|
|
|
‡2
BNE|XX4610666
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996
|
|
|
‡2
NII|DA04234954
|
996
|
|
|
‡2
ISNI|0000000059433928
|
996
|
|
|
‡2
BNE|XX965899
|
996
|
|
|
‡2
BNF|16912872
|
996
|
|
|
‡2
ISNI|0000000036883256
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996
|
|
|
‡2
BNE|XX994100
|
996
|
|
|
‡2
SUDOC|165544880
|
996
|
|
|
‡2
ISNI|0000000389467338
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996
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|
|
‡2
CAOONL|ncf11927986
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996
|
|
|
‡2
BNE|XX4580446
|
996
|
|
|
‡2
BIBSYS|90536843
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996
|
|
|
‡2
DNB|136247784
|
996
|
|
|
‡2
RERO|A009478288
|
996
|
|
|
‡2
LC|no2017023188
|
996
|
|
|
‡2
LC|no 95009283
|
996
|
|
|
‡2
SUDOC|154706272
|
996
|
|
|
‡2
SUDOC|167230670
|
996
|
|
|
‡2
BNE|XX1022087
|
996
|
|
|
‡2
NII|DA12764716
|
996
|
|
|
‡2
LC|n 2009077942
|
996
|
|
|
‡2
ISNI|0000000060317043
|
996
|
|
|
‡2
BNE|XX1452029
|
996
|
|
|
‡2
DNB|131557173
|
996
|
|
|
‡2
DNB|1060669064
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996
|
|
|
‡2
J9U|987007346625905171
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996
|
|
|
‡2
LC|ns2021002301
|
996
|
|
|
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DNB|1157356397
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996
|
|
|
‡2
BNE|XX5551489
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996
|
|
|
‡2
BNE|XX1151866
|
996
|
|
|
‡2
ISNI|0000000392182632
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996
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|
|
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BNE|XX4725336
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996
|
|
|
‡2
BNC|981058525314706706
|
996
|
|
|
‡2
BNE|XX1004634
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996
|
|
|
‡2
BNE|XX1021551
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996
|
|
|
‡2
DNB|1157476902
|
996
|
|
|
‡2
LC|no2009185750
|
996
|
|
|
‡2
ISNI|000000042830142X
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996
|
|
|
‡2
ISNI|0000000079705871
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996
|
|
|
‡2
DNB|1150990686
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996
|
|
|
‡2
BNE|XX5752481
|
996
|
|
|
‡2
BNE|XX4696835
|
996
|
|
|
‡2
LC|no2005116568
|
996
|
|
|
‡2
SUDOC|030033373
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996
|
|
|
‡2
BNE|XX5303559
|
996
|
|
|
‡2
LC|no 96000941
|
996
|
|
|
‡2
BNF|13574233
|
996
|
|
|
‡2
DNB|127022619
|
996
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|
|
‡2
DNB|1140949225
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996
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RERO|A011991887
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996
|
|
|
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LC|n 88297936
|
996
|
|
|
‡2
BNC|981058527294706706
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996
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|
|
‡2
ISNI|0000000063040289
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996
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|
|
‡2
ISNI|0000000119300685
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996
|
|
|
‡2
ISNI|0000000060231768
|
996
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|
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SUDOC|241542073
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996
|
|
|
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BNF|14476359
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996
|
|
|
‡2
BNE|XX4668905
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996
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|
|
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NTA|212687808
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996
|
|
|
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LC|nr2004007736
|
996
|
|
|
‡2
BNE|XX1106805
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996
|
|
|
‡2
ISNI|0000000452874885
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996
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BNE|XX5394730
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996
|
|
|
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CAOONL|ncf11253715
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996
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BNE|XX5710158
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996
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|
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SUDOC|273615033
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996
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|
|
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ISNI|0000000091089397
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996
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|
|
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NTA|292730519
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996
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|
|
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SUDOC|269885315
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996
|
|
|
‡2
PLWABN|9810688259905606
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996
|
|
|
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BNC|981058524674006706
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996
|
|
|
‡2
DE633|pe30075030
|
996
|
|
|
‡2
BNF|16934319
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996
|
|
|
‡2
BNC|981058615961406706
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996
|
|
|
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DNB|133315827
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996
|
|
|
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BNE|XX1735377
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996
|
|
|
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NKC|jo2018995945
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996
|
|
|
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NKC|xx0280670
|
996
|
|
|
‡2
LC|n 2024043335
|
996
|
|
|
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BNE|XX5714372
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996
|
|
|
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BNE|XX836245
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996
|
|
|
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BNE|XX1669687
|
996
|
|
|
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SUDOC|261815121
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996
|
|
|
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BNE|XX5830764
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996
|
|
|
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BNF|12228325
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996
|
|
|
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BNE|XX1616004
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996
|
|
|
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BNC|981058516797006706
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996
|
|
|
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ISNI|0000000118030580
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996
|
|
|
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DNB|1157194230
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996
|
|
|
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LC|no2010156589
|
996
|
|
|
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BNE|XX984438
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996
|
|
|
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DNB|1191159531
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996
|
|
|
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ISNI|0000000059921964
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996
|
|
|
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BNE|XX898624
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996
|
|
|
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LC|no2020015779
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996
|
|
|
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BNE|XX1708519
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996
|
|
|
‡2
ISNI|0000000120585120
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996
|
|
|
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PLWABN|9812830731305606
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997
|
|
|
‡a
0 0 lived 0 0
‡9
1
|