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  • 1
    Call number: SR 90.0068(2) ; ZSP-320(E,2)
    In: Geologisches Jahrbuch
    Type of Medium: Series available for loan
    Pages: 143 S.
    Series Statement: Geologisches Jahrbuch : Reihe E 2
    Language: Undetermined
    Location: Lower compact magazine
    Location: Lower compact magazine
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  • 2
    Series available for loan
    Series available for loan
    Hannover : Schweizerbart
    Associated volumes
    Call number: SR 90.0068(26) ; ZSP-320(E,26)
    In: Geologisches Jahrbuch
    Type of Medium: Series available for loan
    Pages: 90 S.
    Series Statement: Geologisches Jahrbuch : Reihe E 26
    Language: Undetermined
    Location: Lower compact magazine
    Location: Lower compact magazine
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  • 3
    Series available for loan
    Series available for loan
    Hannover : Schweizerbart
    Associated volumes
    Call number: SR 90.0068(21) ; ZSP-320(E,21)
    In: Geologisches Jahrbuch
    Type of Medium: Series available for loan
    Pages: 55 S.
    Series Statement: Geologisches Jahrbuch : Reihe E 21
    Language: Undetermined
    Location: Lower compact magazine
    Location: Lower compact magazine
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  • 4
    Series available for loan
    Series available for loan
    Hannover : Schweizerbart
    Associated volumes
    Call number: SR 90.0068(12) ; ZSP-320(E,12)
    In: Geologisches Jahrbuch
    Type of Medium: Series available for loan
    Pages: 107 S.
    Series Statement: Geologisches Jahrbuch : Reihe E 12
    Language: Undetermined
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  • 5
    Series available for loan
    Series available for loan
    Hannover : Schweizerbart
    Associated volumes
    Call number: SR 90.0068(34) ; ZSP-320(E,34) ; SR 90.0068(34, 2. Ex.)
    In: Geologisches Jahrbuch
    Type of Medium: Series available for loan
    Pages: 85 S.
    Series Statement: Geologisches Jahrbuch : Reihe E 34
    Language: Undetermined
    Location: Lower compact magazine
    Location: Lower compact magazine
    Location: Lower compact magazine
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  • 6
    Series available for loan
    Series available for loan
    Bremerhaven : Alfred-Wegener-Inst. für Polar- und Meeresforschung
    Associated volumes
    Call number: ZSP-168-17
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: 77 S. : graph. Darst., Kt.
    Series Statement: Berichte zur Polarforschung 17
    Language: Undetermined
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  • 7
    Series available for loan
    Series available for loan
    Bremerhaven : Alfred-Wegener Inst. für Polar- und Meeresforschung
    Associated volumes
    Call number: ZSP-168-100
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: 403 S. : Ill., graph. Darst.
    ISSN: 0176-5027
    Series Statement: Berichte zur Polarforschung 100
    Language: Undetermined
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  • 8
    Monograph available for loan
    Monograph available for loan
    Kraków : Wydaw. Univ. Jagiello´nskiego
    Call number: AWI P9-03-0012
    Type of Medium: Monograph available for loan
    Pages: 119 S.
    ISBN: 8323315922
    Language: Undetermined
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  • 9
    Call number: ZSP-168-84
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: 134 S. : Ill., graph. Darst., Kt.
    ISSN: 0176-5027
    Series Statement: Berichte zur Polarforschung 84
    Language: Undetermined
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  • 10
    Monograph available for loan
    Monograph available for loan
    London : Foreign and Commonwealth Office
    Call number: AWI Bio-91-0422
    Type of Medium: Monograph available for loan
    Pages: 136 S.
    Language: Undetermined
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  • 11
    Call number: AWI G8-19-92586
    Description / Table of Contents: Arctic warming has implications for the functioning of terrestrial Arctic ecosystems, global climate and socioeconomic systems of northern communities. A research gap exists in high spatial resolution monitoring and understanding of the seasonality of permafrost degradation, spring snowmelt and vegetation phenology. This thesis explores the diversity and utility of dense TerraSAR-X (TSX) X-Band time series for monitoring ice-rich riverbank erosion, snowmelt, and phenology of Arctic vegetation at long-term study sites in the central Lena Delta, Russia and on Qikiqtaruk (Herschel Island), Canada. In the thesis the following three research questions are addressed: • Is TSX time series capable of monitoring the dynamics of rapid permafrost degradation in ice-rich permafrost on an intra-seasonal scale and can these datasets in combination with climate data identify the climatic drivers of permafrost degradation? • Can multi-pass and multi-polarized TSX time series adequately monitor seasonal snow cover and snowmelt in small Arctic catchments and how does it perform compared to optical satellite data and field-based measurements? • Do TSX time series reflect the phenology of Arctic vegetation and how does the recorded signal compare to in-situ greenness data from RGB time-lapse camera data and vegetation height from field surveys? To answer the research questions three years of TSX backscatter data from 2013 to 2015 for the Lena Delta study site and from 2015 to 2017 for the Qikiqtaruk study site were used in quantitative and qualitative analysis complimentary with optical satellite data and in-situ time-lapse imagery. The dynamics of intra-seasonal ice-rich riverbank erosion in the central Lena Delta, Russia were quantified using TSX backscatter data at 2.4 m spatial resolution in HH polarization and validated with 0.5 m spatial resolution optical satellite data and field-based time-lapse camera data. Cliff top lines were automatically extracted from TSX intensity images using threshold-based segmentation and vectorization and combined in a geoinformation system with manually digitized cliff top lines from the optical satellite data and rates of erosion extracted from time-lapse cameras. The results suggest that the cliff top eroded at a constant rate throughout the entire erosional season. Linear mixed models confirmed that erosion was coupled with air temperature and precipitation at an annual scale, seasonal fluctuations did not influence 22-day erosion rates. The results highlight the potential of HH polarized X-Band backscatter data for high temporal resolution monitoring of rapid permafrost degradation. The distinct signature of wet snow in backscatter intensity images of TSX data was exploited to generate wet snow cover extent (SCE) maps on Qikiqtaruk at high temporal resolution. TSX SCE showed high similarity to Landsat 8-derived SCE when using cross-polarized VH data. Fractional snow cover (FSC) time series were extracted from TSX and optical SCE and compared to FSC estimations from in-situ time-lapse imagery. The TSX products showed strong agreement with the in-situ data and significantly improved the temporal resolution compared to the Landsat 8 time series. The final combined FSC time series revealed two topography-dependent snowmelt patterns that corresponded to in-situ measurements. Additionally TSX was able to detect snow patches longer in the season than Landsat 8, underlining the advantage of TSX for detection of old snow. The TSX-derived snow information provided valuable insights into snowmelt dynamics on Qikiqtaruk previously not available. The sensitivity of TSX to vegetation structure associated with phenological changes was explored on Qikiqtaruk. Backscatter and coherence time series were compared to greenness data extracted from in-situ digital time-lapse cameras and detailed vegetation parameters on 30 areas of interest. Supporting previous results, vegetation height corresponded to backscatter intensity in co-polarized HH/VV at an incidence angle of 31°. The dry, tall shrub dominated ecological class showed increasing backscatter with increasing greenness when using the cross polarized VH/HH channel at 32° incidence angle. This is likely driven by volume scattering of emerging and expanding leaves. Ecological classes with more prostrate vegetation and higher bare ground contributions showed decreasing backscatter trends over the growing season in the co-polarized VV/HH channels likely a result of surface drying instead of a vegetation structure signal. The results from shrub dominated areas are promising and provide a complementary data source for high temporal monitoring of vegetation phenology. Overall this thesis demonstrates that dense time series of TSX with optical remote sensing and in-situ time-lapse data are complementary and can be used to monitor rapid and seasonal processes in Arctic landscapes at high spatial and temporal resolution.
    Type of Medium: Dissertations
    Pages: XIII, 131 Seiten , Illustrationen
    Language: Undetermined
    Note: Dissertation, Universität Potsdam, 2019 , TABLE OF CONTENTS Abstract Zusammenfassung Table of contents List of figures List of tables List of abbreviations 1 Introduction 1.1 Scientific background and motivation 1.1.1 Permafrost degradation 1.1.2 Snow cover 1.1.3 Vegetation phenology 1.2 Remote sensing of rapid changes 1.2.1 SAR remote sensing 1.2.2 TerraSar-X 1.3 Data and methods 1.4 Aims and objectives 1.5 Study areas and data 1.6 Thesis structure and author contributions 1.6.1 Chapter 2 – Monitoring inter-and intra-seasonal dynamics of rapidly degrading ice-rich permafrost riverbanks in the Lena Delta with TerraSAR-X time series 1.6.2 Chapter 3 – TerraSAR-X time series fill a gap in spaceborne snowmelt monitoring of small Arctic catchments 1.6.3 Chapter 4 – Estimation of Arctic tundra vegetation phenology with TerraSAR-X 2 Monitoring inter-and intra-seasonal dynamics of rapidly degrading ice-rich permafrost riverbanks in the Lena Delta with TerraSAR-X time series 2.1 Abstract 2.2 Introduction 2.3 Study area 2.4 Data and methods 2.4.1 SAR data and processing 2.4.2 Automated cliff-top line extraction from SAR data 2.4.3 Quantification of cliff-top erosion with the Digital Shoreline Analysis System 2.4.4 Cliff top mapping from optical satellite data 2.4.5 In-situ observations of cliff top erosion 2.4.6 Climate data 2.4.7 Statistical data analysis 2.5 Results 2.5.1 TSX erosion versus in-situ and optical datasets 2.5.2 Inter-and intra-annual cliff-top erosion and climate data 2.5.3 Backscatter time series 2.6 Discussion 2.6.1 Inter-annual dynamics of cliff-top erosion 2.6.2 Intra-annual dynamics of cliff-top erosion 2.6.3 Backscatter dynamics of tundra and cliff surfaces 2.7 Conclusions 2.8 Acknowledgments 3 TerraSAR-X time series fill a gap in spaceborne snowmelt monitoring of small Arctic catchments 3.1 Abstract 3.2 Introduction 3.3 Study area 3.4 Data and methods 3.4.1 SAR satellite data 3.4.2 Optical satellite data 3.4.3 In-situ time-lapse camera data 3.4.4 Snow Cover Extent from TerraSAR-X 3.4.5 Snow Cover Extent from Landsat 8 3.4.6 Accuracy assessment of TerraSAR-X Snow Cover Extent 3.4.7 Fractional Snow Cover time series analysis 3.5 Results 3.5.1 Evaluation of TSX Snow Cover Extent 3.5.2 Time series of Fractional Snow Cover in all catchments 3.5.3 Time series of Fractional SnowCover in small catchments 3.6 Discussion 3.6.1 Spatiotemporal monitoring of snowmelt dynamics using TSX 3.6.2 Technical considerations for using TSX for wet snow detection 3.7 Conclusions 3.8 Acknowledgements 3.9 Appendix 4 Relationships between X-Band SAR and vegetation phenology in a low Arctic ecosystem 4.1 Abstract 4.2 Introduction 4.3 Study area 4.4 Data and methods 4.4.1 In-situ time-lapse phenological cameras 4.4.2 Time-lapse image analysis 4.4.3 SAR satellite data 4.4.4 Backscatter and coherence time series 4.4.5 In-situ vegetation and climate data 4.5 Results 4.5.1 Phenocams 4.5.2 Backscatter dynamics 4.5.3 Coherence dynamics 4.6 Climate data 4.7 Backscatter and vegetation height 4.8 Discussion 4.9 Conclusion 4.10 Acknowledgments 5 Synthesis 5.1 Rapid permafrost disturbance 5.2 Snowmelt dynamics 5.3 Arctic tundra vegetation phenology 5.4 Seasonality and complementarity of TSX 5.5 Limitations and technical considerations 5.6 Key findings and outlook References Acknowledgements
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  • 12
    Call number: AWI P6-87-0664
    Type of Medium: Monograph available for loan
    Pages: 41 Seiten
    Language: Undetermined
    Note: TABLE OF CONTENTS: I. Objectives. - II. Summary and Points of General Consensus. - III. Report of the Meeting A. Background. - B. Values of Increased Coordination/Collaboration Among Antarctic Scientific Research Programs. - Presentation by Dr. David Drewry. - C. Opportunities for Increased Coordination/Collaboration. - Working Group Chairmen: Dr. Gotthilf Hernpel jointly with Patrick G. Quilty, and Dr. Fred Roots. - D. How to Give Effect to Increased Coordination/Collaboration. - 1. Information and Communication. - 2. Logistics. - List of Specific Opportunities for Increased Coordination/Collaboration. - Working Group Chairmen: Dr. Gotthilf Hernpel jointly with Patrick G. Quilty, and Dr. Fred Roots. - E. Policy and Responsibility. - 1. The Scientific Research Agenda. - 2. New Entrants. - 3. Consultative Status Requirements. - Chairmen: Robert H. Rutford and R. Tucker Scully. - IV. Participants List.
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  • 13
    Dissertations
    Dissertations
    [s.l.] : Univ.
    Call number: AWI G6-18-91723
    Type of Medium: Dissertations
    Pages: 132, [53] S. , Ill.
    Language: Undetermined
    Note: Karlsruhe, Univ., Diss., 1986
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  • 14
    Call number: AWI G3-22-94973
    Type of Medium: Monograph available for loan
    Pages: 596 Seiten , Illustrationen
    ISBN: 0-921421-02-8
    Language: Undetermined
    Note: Beiträge teilweise in englischer, teilweise in französischer Sprache
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  • 15
    Call number: AWI G3-04-0067
    Type of Medium: Monograph available for loan
    Pages: 607 S.
    ISBN: 5891762137
    Language: Undetermined
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  • 16
    Non-book medium
    Non-book medium
    Bremerhaven : Alfred-Wegener-Institut für Polar- und Meeresforschung
    Call number: AWI E1-05-0057 ; NBM 06.0231
    Description / Table of Contents: Der Informationsfilm "Eis und Meer" vermittelt einen Überblick über die Struktur und Forschungsarbeiten des Alfred-Wegener-Instituts für Polar- und Meeresforschung. Gezeigt werden Aufnahmen einer vielseitigen Wissenschaft von der Nordsee bis hin zu den Polargebieten. So retten Biologen den Hummer vor Helgoland, ein Unterwasserroboter spürt Korallen in der arktischen Tiefsee auf und Eisforscher erkunden das Klima der letzten 800 000 Jahre.
    Type of Medium: Non-book medium
    Pages: 1 DVD-Video + Begleitbroschüre (deutsch/englisch)
    Classification:
    Oceanology
    Language: Undetermined
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  • 17
    Monograph available for loan
    Monograph available for loan
    London : Foreign and Commonwealth Office
    Call number: AWI Bio-91-0423
    Type of Medium: Monograph available for loan
    Pages: 257 S. : graph. Darst.
    Language: Undetermined
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  • 18
    Call number: ZSP-168-20
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: 192 S. : graph. Darst.
    Series Statement: Berichte zur Polarforschung 20
    Language: Undetermined
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  • 19
    Call number: AWI PY-4060
    Type of Medium: Monograph non-lending collection
    Pages: VI, 619 S. , VIII Taf., Kt.
    Language: Undetermined
    Note: Table des Matières: Rapport au Président de la République. - Introduction. - Hydrographie / A. Matha. - Programme hydrographique de l'expédition. - Méthodes employées. - Levés par stations à la mer. - Cartes d'itinéraire. - Marées / A. Matha. - Méthode de calcul employée. - Analyse des courbes du marégraphe enregistreur pendant la période du 7 novembre au 24 décembre 1904. - Étude des chronomètres / A. Matha. - Instruments employés. - Étude des marches. - Variations isothermes. - Tracé des courbes moyennes. - Étude des anomalies. - Détermination de la longitude de Port-Charcot. - Calculs. - Extraits du "Journal des chronomètres". - Calcul des marches journalières. - Intensité de la pesanteur / A. Matha. - Pendule employé. - Observation. - Calcul d'une observation. - Discussion des résultats. - Observations et calculs. - Densité et chloruration de l'eau de mer / A. Matha. - Mesures aréométriques. - Calcul de la densité. - Approximation théorique obtenue par la métode aréométrique. - Dosage du chlore. - Circonstances des observations et résultats définitifs. - Électricité atmosphérique / J.-J. Rey. - Installations et instruments. - Mesures. - Discussion des résultats des observations. - Météorologie / J.-J. Rey. - Avant-propos. - Introduction. - Pression atmosphérique. - Température de l'air. - État hygrométrique de l'air. - Tension de la vapeur d'eau. - Vent, direction et force. - Condensations et précipitations atmosphériques. - Nébulosité. - Insolation. - Observations spéciales. - Température à 1m au-dessous du niveau de la neige. - Journal des nuages. - Phénomènes optiques de l'atmosphère. - Actinométrie. - Aperçu général du temps. - Récapitulation. Comparaisons. - Étude des variations horaires des principaux éléments météorologiques. - Étude de la nébulosité, des précipitations atmosphériques, de l'insolation. - Étude de la circulation atmosphérique sur la Terre de Graham. - Étude des mesures actinométriques. - Observations météorologiques faites entre le cap Horn et la Terre de Graham. - Magnétisme terrestre / J.-J. Rey. - Introduction. - Déterminations des valeurs absolues des éléments magnétiques. - Observations absolues de l'inclinaison magnétique. - Observations absolues de la déclinaison magnétique. - Observations absolues de la composante horizontale. - Observations faites dans le voisinage immédiat des stations principales. Influences locales. - Valeurs des éléments magnétiques en quelques points de la Terre de Graham. - Variation séculaire des éléments magnétiques à Ushuaïa et au cap Horn (Terre de Feu). - Plances. - Pl. 1 Carte d'itinéraire. - Pl. 2 Carte générale des terres explorées. - Pl. 3. Archipel de Palmer. - Pl. 4 Abords de Port-Lockroy. - Pl. 5 Ile Booth-Wandel. - Pl. 6 Port-Charcot (Ile Wandel). - Pl. 7 Courbes des marées. - Pl. 8 Chronomètres. Tracé des courbes moyennes. - Pl. 9 Exemple du tracé des courbes de marches.
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  • 20
    Call number: AWI PY-1918-13 ; AWI PY-1918-13(2. Ex.)
    Type of Medium: Monograph non-lending collection
    Pages: Getr. Zählung
    Series Statement: Die Internationale Polarforschung 1882-1883
    Language: Undetermined
    Note: Inhaltsverzeichnis: THEIL 1. - Historische Einleitung. - Astronomie. - A. Zeitbestimmungen. - B. Längenbestimmungen. - C. Polhöhenbestimmungen. - D. Bestimmungen des Azimuthes. - Meteorologie. - A. Luftdruck. - B. Temperatur der Luft. - C. Feuchtigkeit der Luft. - D. Wind. - E. Wolken. Niederschlag. - Tabellen der stündlichen meteorologischen Beobachtungen. - Luftdruck. - Temperatur der Luft. - Feuchtigkeit der Luft. - Richtung und Geschwindigkeit des Windes. - Menge, Form und Zug der Wolken, Hydrometore, Niederschlag. - Monats- und Jahresmittel. - Zug der oberen Wolken. - Bemerkungen. - Facultative Beobachtungen. - Temperatur-Messungen im Altenfjord. THEIL 2. - Erdmagnetismus. - A. Einleitung. - 1. Das magnetische Observatorium. - 2. Beschreibung der Instrumente. - 3. Vorläufige magnetische Bestimmungen. - a. Untersuchung über den Einfluss des Erdbodens in magnetischer Beziehung. - b. Torsions-Bestimmungen. - c. Der wechselseitige Einfluss der Instrumente auf einander. - B. Declination. - 1. Bestimmung des Werthes eines Scalentheils für Di und Du. - 2. Bestimmungen des Nullpunktes von Di und Du. - a. Absolute Declinationsbestimmungen. - b. Bestimmung des Werthes für den Nullpunkt von Du. - 3. Reduction der Beobachtungen auf absolute Masse. - C. Horizontal-Intensität. - 1. Bestimmung der Horizontal-Intensität mit Hilfe von Lamont's Unifilar mit festen Deflectoren. - 2. Bestimmung der Constanten der Horizontalvariometer. - a. Die Ablenkungswinkel φi0 und φii0. - b. Die Null-Linie. - c. Bestimmung von Hi0. - a. Schwingungsbeobachtungen. - b. Ablenkungsbeobachtungen. - c. Reduction auf elektrische Einheiten. - d. Bestimmung von Hii0. - e. Temperaturcompensation. - 3. Reduction der täglichen Beobachtungen auf absolute Masseinheiten. - 4. Hilfs-Scala. - 5. Controllbestimmungen. - D. Vertical-Intensität. - 1. Bestimmung der Vertical-Intensität mit Hilfe von Lamont's Unifilar mit weichen Eisenstäben. - 2. Bestimmung der Constanten der Verticalvariometer. - a. Die Null-Linie. - b. Die Ablenkuugswinkel ψi0 und ψii0. - a. Reduction der controllirenden Variationslesungen. - b. Bestimmung der Ablenkungswinkel. - c. Die Inductionsfactoren ai und aii. - d. Die transversale Induction. - e. Bestimmung von Ci. - f. Bestimmung von Cii. - 3. Reduction der täglichen Beobachtungen auf absolute Masseinheiten. - 4. Hilfs-Scalen. - E. Die obligatorischen magnetischen Beobachtungen. - 1. Die stündlichen Beobachtungen. - 2. Terminbeobachtungen. - 3. Die tägliche Periode der magnetischen Elemente. - F. Facultative magnetische Beohachtungen. - Tabellen der stündlichen magnetischen Beobachtungen. - Declination. - Horizontal-Intensität. - Vertical-Intensität. - Tabellen der magnetischen Terminbeobachtungen. - Declination alle 5 Minuten. - Horizontal-Intensität alle 5 Minuten. - Vertical-Intensität alle 5 Minuten. - Declination alle 20 Secunden. - Horizontal-Intensität alle 20 Secunden. - Monats und Jahresmittel. Sämtliche Beobachtungen. - Monats und Jahresmittel. Ruhige Tage. - Nordlicht. - A. Einleitung. - 1. Instrumente und Apparate. - 2. Der Beobachtungsplatz. - 3. Beobachtungszeiten. - B. Beobachtungsmaterial. - 1. Wolkenbeobachtungen. - 2. Die Formen des Nordlichtes. - 3. Positionsbezeichnungen. - 4. Farbe, Intensität und Bewegung des Nordlichtes. - 5. Spectroscopische Untersuchungen. - C. Tabellarische Zusammenstellung. - Nordlicht-Beobachtungen. - Auf- und Untergang des Mondes in Bossekop. - Stündliche Nordlicht-Beobachtungen.
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