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  • 1
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    Fachbereich Geowissenschaften, FU Berlin, Berlin
    In:  Herausgeberexemplar
    Publication Date: 2024-06-19
    Description: Dimitris Frydas & Helmut Keupp: Upper Cenozoic calcareous and siliceous phytoplankton stratigraphy for marine sediments in central Crete, Greece ...3 ; Dimitris Frydas & Helmut Keupp: The Miocene/Pliocene boundary in NW Crete by means of calcareous nannofossil assemblages ...27 ; Dimitris Frydas: Silicoflagellates of the Late Quaternary Sapropel S5 from the Southeastern Mediterranean Sea, „Meteor“-Cruise 40/4, Site 69 ...35 ; Joachim Gründel: Neritimorpha und weitere Caenogastropoda (Gastropoda) aus dem Dogger Norddeutschlands und des nordwestlichen Polens ...45 ; Rolf Kohring: Nonmarine trace fossils from the Bathonian (Middle Jurassic) of Msemrir (Central High Atlas, Morocco) ...101 ; Uwe Gloy: Bibliographie 2000 ...113 ; --- ❖ --- „Biologie und Paläobiologie der Cephalopoden: Bilanz und Ausblick“ Treffen deutschsprachiger Cephalopodenforscher vom 8. bis 9. März 2001 an der FU Berlin --- Helmut Keupp & Kerstin Warnke: Biologie und Paläobiologie der Cephalopoden: Bilanz und Ausblick ...119 ; Sigurd v. Boletzky: Paläobiologie der Cephalopoden - vom Petrefaktischen zur Frage: „Wie hat das Tier gelebt?“ ...121 ; Günter Schweigert & Gerd Dietl: Die Kieferelemente von Physodoceras (Ammonitina, Aspidoceratidae) im Nusplinger Plattenkalk (Oberjura, Schwäbische Alb) ...131 ; Christian Klug & Dieter Korn: Epizoa and post-mortem epicoles on cephalopod shells - Devonian and Carboniferous examples from Morocco ...145 ; Ute Richter: Spuren der Weichkörperverlagerung auf Pyritsteinkernen von Ammonoideen ...157 ; Kerstin Warnke, Jörg Plötner, José Ignacio Santana, Maria José Rueda & Octavio Llinas: Zur Phylogenie rezenter Cephalopoden - Erste Ergebnisse einer molekulargenetischen Analyse des 18S rRNA-Gens ...169 ; Dieter Korn & Christian Klug: Biometrie analyses of some Palaeozoic ammonoid conchs ...173 ; Gernot Arp: Fazies, Stratigraphie und Ammonitenfauna des Mittleren und Oberen Dogger bei Neumarkt i.d.Opf. (Bajocium-Oxfordium, Süddeutschland), ...189 ;
    Description: conference
    Description: DFG, SUB Göttingen
    Keywords: ddc:560 ; Paläobiologie ; Paläontologie
    Language: German , English
    Type: doc-type:book
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  • 2
    Publication Date: 2024-06-19
    Description: The Mid and Late Holocene environment of the Eastern Juyanze and Sogo Nur basins was reconstructed on the base of ostracod assemblages, shell chemistry, sedimentology, palynology and the occurrence of other fossils such as molluscs and a large diatom species in the course of the study. Their climatic implications were discussed in the context of other Holocene records from northwestern China and Central Asia. A brief synopsis is given in the following. The period of maximum moisture availability (China’s Hypsithermal or the Atlantic period in European usage), otherwise recorded roughly between 8000 and 6000 a BP (e.g. LISTER et al. 1991, GASSE et al. 1996, Liu et al. 1998), was neither registered at the site of the main section in the Eastern Juyanze basin nor in the Sogo Nor basin. Sediments at the Eastem-Juyanze-section-A, which was investigated most intensively, are not older than about 5400 cal. a BP and span a period up to about 2700 cal. a BP, whereas the record of the Sogo Nur sections covers a period from about 2500 up to about 400 cal. a BP. However, the subsequent cold and dry period about 5400 a BP, which was proposed earlier from a number of sites in eastern and western China, from Mongolia, India and even America (e.g. ZHOU et al. 1991a, DOROFEYUK & TARASOV 1998, PETIT-MAIRE 1994, MoUGUiART et al. 1998), was clearly recorded as a dry period at the Eastern Juyanze basin too. This study confirms, that this cold and dry Mid Holocene spell was in fact a far-reaching, probably global event. Between about 5000 and 4100 cal. a BP, warm and humid conditions prevailed at most sites in the north of the Tibetan Plateau (e.g. WÜNNEMANN et al. 1998b), supported by high lake levels of the Lake Eastern Juyanze during that period. Simultaneously, the conditions remained rather dry on the southern Tibetan Plateau (e.g. FONTES et al. 1996), probably resulting from the weakening of the Indian monsoon. Climate deterioration occurred all over Central Asia between about 4100 and 3000 cal. a BP. Lake levels are generally regarded as decreasing during that period, soil formation around Qinghai Lake ceased and pronounced cold and dry spells were recorded at about 4100, 3800 and 3400 cal. a BP at several sites of Central Asia and by corresponding regressive events of Lake Eastern Juyanze (e.g. YAO & THOMPSON 1992, SHI et al. 1993, VAN CAMPO et al. 1996). A dramatic shift from cold and dry to warm conditions and a return to cold and dry conditions again was recorded about 3000 cal. a BP by the Dunde ice core (YAO & THOMPSON 1992) and caused rapid environmental fluctuations in the Eastern Juyanze basin. Lake Eastern Juyanze experienced three short-term episodes of desiccation between about 3200 and 2900 cal. a BP, but was re-established in between and afterwards. Glaciers of Central Asia advanced and the lakes displayed a non-uniform response (e.g. ZHOU et al. 1991a), probably due to different hydrological conditions and the presence and different response of glaciers in the respective catchment area. After 3000 cal. a BP, climate is regarded as generally colder and drier than before (LISTER et al. 1991, PETIT-MAIRE1994). However, a return to slightly warmer and more humid conditions led to rising lake levels and a new period of soil formation on the Loess Plateau between about 2700 and 2000 cal. a BP (FANG 1991, SHI et al. 1993). The sediments of the Eastem-Juyanze-section-A are not younger than about 2700 cal. a BP and have therefore not recorded environmental changes after that time, but the record of the Sogo Nur sections starts at about 2500 cal. a BP and was used to trace the Late Holocene climate evolution. Intermediate lake levels of the Sogo Nur between 2500 and 2000 cal. a BP also point to relatively humid conditions, but very low lake levels were established at about 1700 cal. a BP. This coincides with colder and drier conditions between about 2000 and 1500 cal. a BP, indicated by lake records of eastern China, the Tibetan Plateau and the Dunde ice core (e.g. FENG et al. 1993, GASSE et al. 1996, Liu et al. 1998). Another period of relatively warm and humid conditions occurred between about 1400 and 700 cal. a BP (e.g. Liu et al. 1993), interrupted by a short-term regression of the Sogo Nur at about 1000 cal. a BP. This temporary drop of the water level of Sogo Nur corresponds to a drastic cooling event. Lowest temperatures for the last 4000 years were inferred from the Dunde ice core at that time (YAO & THOMPSON 1992). A short period of relatively warm and humid conditions was recorded about 800 cal. a BP (e.g. Liu et al. 1998) and caused high lake levels of the Sogo Nur again. Colder and drier conditions predominated afterwards in eastern China as well as in the continental interior between about 400 and 75 cal. a BP (1550-1875 AD, ZHOU et al. 1991a, FENG et al. 1993) and are related to the Little Ice Age, which was recorded at sites all over the northern hemisphere (LAMB 1977). In contrast, the last 100 years are characterised by relatively warm conditions in China. The environmental fluctuations of the Mid to Late Holocene Lake Eastern Juyanze were regarded as virtually unaffected by human activities and thus, entirely driven by climate. Nonetheless, rapid lake level fluctuations were recorded which gave rise to drastic changes of the lake area due to the flat morphology of the Eastern Juyanze basin. Surprisingly, short-term desiccation events were recorded about 3000 cal. a BP at the site of the main section. However, it was not possible to assess the environmental conditions of the neighbouring topographically-closed basin lakes at that time. Late Holocene environmental fluctuations of the Sogo Nur were relatively dramatic as well. Very shallow levels were recorded at about 1700 cal. a BP and attributed to cold and dry climatic conditions, reported from other sites of Central Asia (Gu et al. 1993, GASSE et al. 1996). At least sub-littoral conditions of the Sogo Nur (water depth 〉 10 m) prevailed in the subsequent period between 1500 and 400 cal. a BP, but it was not possible on the base of the investigations at the Sogo Nur, to prove or deny the merging of the lakes Sogo Nur and Gaxun Nur in Holocene times. The hydrological balance of Sogo Nur was probably not affected by withdrawal of water for irrigation purposes before the Tang Dynasty (618-906 AD, CHEN et a. 1999). The short-term regressive event at about 1000 cal. a BP (950 AD) coincides with a period of increased agricultural population in the catchment area (Chen et a. 1999) as well as a climate spell of cold and dry conditions (YAO & THOMPSON 1992). Similarly, the decrease of the lake level after 700 cal. a BP (1250 AD) may either reflect the simultaneous increase of the agricultural population in the catchment area or the gradual shift towards cooler ands drier conditions during that period or both. Thus, it was not possible to distinguish between climate-driven and man-made fluctuations of the environment of the Sogo Nur.
    Description: Die Umweltverhältnisse des östlichen Juyanze- und des Sogo-Nur-Beckens im mittleren und späten Holozän wurden anhand der Ostracoden- Vergesellschaftung, des Schalen-Chemismus, anhand sedimentologischer und palynologischer Befunde und anhand des Auftretens weiterer Fossilien (z.B. von Mollusken und einer großen Diatomeen- Art) rekonstruiert. Die darüber hinaus abgeleiteten Klimaverhältnisse wurden im Vergleich zu anderen, bereits existierenden Klima-Rekonstruktionen aus NW-China und Zentralasien diskutiert. Eine kurze Zusammenfassung wird im Folgenden gegeben. Die Periode maximaler Feuchtigkeit (das chinesische Hypsithermal bzw. das Atlantikum in Europa), an anderen Lokalitäten etwa zwischen 8000 und 6000 J.v.h. belegt (u.a. LISTER et al. 1991, GASSE et al. 1996, Liu et al. 1998), wurde weder durch das Haupt-Profil im östlichen Juyanze-Becken noch im Sogo-Nur-Becken erfasst. Die Sedimente des am detailliertesten untersuchten Profiles (Eastern-Juyanze-section-A) decken den Zeitraum zwischen 5400 und 2700 Jahren vor heute (J.v.h. = kalibrierte 14C-Jahre vor 1950 bzw. Kalenderjahre vor 1950) ab, während die untersuchten Profile am Sogo Nur den Zeitraum von 2500 bis ca. 400 J.v.h. umfassen. Die an die Periode maximaler Feuchtigkeit anschließende, trocken-kalte Klimaphase vor etwa 5400 J.v.h., die an vielen Lokalitäten Ost- und Westchinas, der Mongolei, Indiens und selbst Amerikas abgeleitet wurde (u.a. ZHOU et al. 1991a, DOROFEYUK & TARASOV 1998, PETIT-MAIRE 1994, MOUGUIART et al. 1998), konnte als trockene Periode im östlichen Juyanze-Becken eindeutig ermittelt werden. Die vorliegenden Untersuchungen stützen die Auffassung, dass diese trocken-kalte Klimaperiode im mittleren Holozän ein einschneidendes Klima-Ereignis von möglicherweise globaler Tragweite war. Für den Zeitraum zwischen etwa 5000 und 4100 J.v.h. wurden warme und humide Verhältnisse an den meisten Lokalitäten nördlich des Tibet-Plateaus rekonstruiert (z.B. WÜNNEMANN et al. 1998b). Diese Annahme wird durch die Rekonstruktion hoher Seespiegel des östlichen Juyanze-Sees für den entsprechenden Abschnitt des Holozäns gestützt. Aufgrund der vermutlich schon deutlichen Abschwächung des indischen Monsuns waren die Umweltbedingungen im südlichen Tibet während dieser Zeit relativ trocken. Eine Klimaverschlechterung wurde für Zentralasien zwischen etwa 4100 und 3000 J.v.h. festgestellt. Die Seespiegel gingen im allgemeinen zurück, die Bodenbildung am Qinghai-See setzte aus und besonders ausgeprägte, trocken-kalte Verhältnisse wurden um 4100, 3800 und 3400 J.v.h. an verschiedenen Lokalitäten Zentralasiens dokumentiert (u.a. SHI et al. 1993, YAO & THOMPSON 1992, VAN CAMPO et al. 1996), die zeitgleich mit Seespiegelabsenkungen des östlichen Juyanze-Sees auftraten. Ein dramatischer Klimawechsel von trocken-kalten zu warmen Verhältnissen und wieder zu trocken-kalten Bedingungen wurde vor etwa 3000 J.v.h. im Eis des Dunde-Gletschers aufgezeichnet (YAO & THOMPSON 1992), der erhebliche Umweltveränderungen im östlichen Juyanze-Becken auslöste. Dort erfolgte ein dreimaliges Austrocknen des östlichen Juyanze-Sees mit zwischenzeitlichem und nachfolgendem Seespiegelanstieg zwischen etwa 3200 und 2900 J.v.h. Gletschervorstöße traten in den zentralasiatischen Gebirgen auf, und die Seen dieser Region reagierten vermutlich aufgrund unterschiedlicher hydrologischer Verhältnisse, in Abhängigkeit vom Vorhandensein und der Dynamik der Gletscher in den jeweiligen Einzugsgebieten, uneinheitlich (z.B. ZHOU et al. 1991a). Ab dem Zeitpunkt 3000 J.v.h. wird das Klima im allgemeinen als kälter und trockener als zuvor aufgefasst (LiSTER et al. 1991, PETIT-MAIRE 1994). Ein Klima-Umschwung zu etwas wärmeren und feuchteren Bedingungen führte jedoch zu steigenden Seespiegeln und einsetztender Bodenbildung auf dem Löss-Plateau zwischen etwa 2700 und 2000 J.v.h. (FANG 1991, SHI et al. 1993). Da die Sedimente des Profils , Eastern-Juyanze-section-A ‘ nicht jünger als etwa 2700 J.v.h. sind, lassen sich diese Verhältnisse nicht mehr aufgrund der Befunde vom östlichen Juyanze-Becken belegen. Das Profil vom Sogo Nur setzt dagegen mit etwa 2500 J.v.h. ein, so dass im Folgenden die Ergebnisse vom Sogo Nur für die Rekonstruktion des Klimas im späten Holozän herangezogen werden. Mittlere Seespiegel des Sogo Nur wurden für den Zeitraum von 2500 bis 2000 J.v.h. rekonstruiert und deuten ebenfalls auf relativ humide Verhältnisse hin, jedoch kam es bald darauf zur Ausbildung eines sehr flachen Sees um etwa 1700 J.v.h. Diese Phase eines sehr niedrigen Seespiegels korreliert mit trocken-kalten Klimabedingungen zwischen etwa 2000 und 1500 J.v.h., die sich anhand von See-Rekonstruktionen in Ost-China, vom Tibet-Plateau und anhand des Dunde-Eiskems nachweisen ließen (u.a. FENG et al. 1993, GASSE et al. 1996, Liu et al. 1998). Eine weitere Periode relativ warmer und feuchter Verhältnisse schloss sich etwa zwischen 1400 und 700 J.v.h. an (z.B. Liu et al. 1993), die durch eine Regression des Sogo Nur um 1000 J.v.h. unterbrochen wurde. Diese zeitweilige Seespiegelabsenkung fällt mit einem drastischen Abkühlungsereignis zusammen, für das aufgrund der Untersuchungen des Dunde-Eiskems die niedrigsten Temperaturen während der letzten 4000 Jahre angenommen werden müssen (YAO & THOMPSON 1992). Eine kurze Periode warmer und humider Verhältnisse (z.B. Liu et al. 1998) führte zur Ausbildung hoher Seespiegel am Sogo Nur vor etwa 800 J.v.h. Kalte, trockene Bedingungen beherrschten Ost-China und das Landesinnere während der nachfolgenden Periode von etwa 400 und 75 J.v.h. (1550-1875 AD, ZHOU et al. 1991a, FENG et al. 1993) die der auf der gesamten Nordhalbkugel nachgewiesenen ,Kleinen Eiszeit’ entspricht (LAMB 1977). Die letzten 100 Jahre in China waren im Gegensatz dazu durch warme Verhältnisse gekennzeichnet. Die Umweltveränderungen des östlichen Juyanze-Sees im mittleren bis späten Holozän wurden ausschließlich klimatisch gesteuert, der menschliche Einfluss kann für diesen Zeitraum vernachlässigt werden. Trotzdem traten drastische Seespiegelfluktuationen auf, die im flachen östlichen Juyanze-Becken zu enormen Schwankungen der Seefläche geführt haben müssen. Erstaunlicherweise wurden an der Lokalität des Profils ,Eastern- Juyanze-section-A‘ auch Trockenfall-Perioden des östlichen Juyanze-Sees um etwa 3000 J.v.h. nachgewiesen. Im Zuge der vorliegenden Arbeiten war es jedoch nicht möglich, die Umweltbedingungen der benachbarten Seebecken des Hei Flusses zu diesem Zeitpunkt zu untersuchen. Die Umweitveränderungen des Sogo Nur im späten Holozän waren ebenfalls beträchtlich. Ein sehr flacher Seespiegel existierte vor etwa 1700 J.v.h., zu einem Zeitpunkt, zu dem trocken-kalte Bedingungen für Zentralasien nachgewiesen wurden (Gu et al. 1993, GASSE et al. 1996). Sublitorale Bedingungen (Wassertiefe 〉10 m) herrschten im gesamten nachfolgenden Zeitabschnitt von 1500 bis 400 J.v.h. vor, jedoch war es nicht möglich, anhand der vorliegenden Befunde auf den Zusammenschluss von Gaxun Nur und Sogo Nur im Holozän zu schließen bzw. diesen auszuschließen. Ein erheblicher Eingriff in das hydrologische Gleichgewicht des Sogo Nur erfolgte vermutlich erst durch die Ableitung von Wasser für Bewässerungszwecke während der Tang-Dynastie (618-906 AD, CHEN et a. 1999). Die Seespiegelabsenkung des Sogo Nur um etwa 1000 J.v.h. (950 AD) könnte demnach einerseits durch die Zunahme der agrarischen Bevölkerung im Einzugsgebiet hervorgerufen worden sein (Chen et a. 1999), andererseits jedoch auch auf die Ausbildung trocken-kalter Klimabedingungen zu diesem Zeitpunkt zurückgeführt werden (Yao & Thompson 1992). In ähnlicher Weise könnte der Rückgang des Seespiegels nach etwa 700 J.v.h. (1250 AD) auf den festgestellten Anstieg der Landwirtschaft betreibenden Bevölkerung hindeuten, in gleicher Weise jedoch auch im Zusammenhang mit der allgemeinen Klimaverschlechterung, hin zu kühleren, trockneren Bedingungen, stehen. Aufgrund des möglichen Zusammenwirkens klimatischer und anthropogener Trends war es nicht möglich, den Einfluss beider Faktoren auf die Umweltveränderungen des Sogo Nur in den vergangenen 1000 Jahren voneinander getrennt zu beurteilen.
    Description: thesis
    Description: DFG, SUB Göttingen
    Keywords: ddc:560 ; Palökologie ; Holozän ; Paläoklima ; Ostracoda ; Stabile Isotope ; China ; Spurenelemente
    Language: English
    Type: doc-type:book
    Format: 136
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  • 3
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    Unknown
    Fachbereich Geowiss., FU, Berlin
    In:  Herausgeberexemplar
    Publication Date: 2024-06-17
    Description: Tertiär-Block [:] Helmut Keupp & Spyridon M. Bellas (in Zusammenarbeit mit Jan Bartholdy und Dimitris Frydas): Neogene development of the sedimentary basins of NW Crete island, Chania Prefecture, South Aegean Arc System (Greece) …3 ; Dimitris Frydas & Helmut Keupp: Biostratigraphical and paleoecological research of Lower Pliocene diatoms and silicoflagellates from northwestern Crete, Greece …119 ; Wilfried Krutzsch: Stratigraphische Tabelle Oberoligozän und Neogen (marin - kontinental) ...153 ; Glenn Fechner: Eine Dinoflagellaten-Zysten-Flora aus der ehern. Ziegeleitongrube bei Welsow (nordöstl. Mark Brandenburg) ...167 ; Rolf Kohring & Thomas Schlüter: Über ein fossiles Harz aus einer Braunkohle (?Eozän) von Gibbsland und Anglesey (Victoria, S-Australien) ...177 ; Mollusken-Block [:] Joachim Gründel, Thierry Pélissié & Michel Guérin: Brackwasser-Gastropoden des mittleren Doggers von la Balme (Causses du Quercy, Südfrankreich) ...185 ; Joachim Gründel: Archaeogastropoda aus dem Dogger Norddeutschlands und des nordwestlichen Polens ...205 ; Joachim Gründel: Gordenellidae n. fam., eine neue Gastropoden-Familie aus dem Dogger und Malm Europas ...255 ; Steffen Kiel & Klaus Bandel: New slit-bearing Archaeogastropoda from the Late Cretaceous of Spain ...269 ; Helmut Keupp: Anomale Muskelleisten bei Ammoniten ...279 ; Thomas Küchler: Nostoceras (Euskadiceras) euskadiense a new ammonite subgenus and species from the higher Upper Campanian (Upper Cretaceous) of northern Spain ...291 ; []
    Description: research
    Description: DFG, SUB Göttingen
    Keywords: ddc:560 ; Paläobiologie ; Paläontologie
    Language: German , English
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  • 4
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: PIK 24-95568
    Type of Medium: Monograph available for loan
    Pages: XV, 296 S. , graph. Darst.
    Edition: Repr.
    ISBN: 0521424658 , 0521373980
    Series Statement: Historical perspectives on modern economics
    Language: English
    Note: Literaturverz. S. 265 - 280
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  • 5
    Call number: AWI Bio-00-0281
    In: Flora of the Russian Arctic, Volume III
    Description / Table of Contents: This volume - the third of six - continues the first comprehensive English-language flora of the Russian Arctic. Flora of the Russian Arctic translates Arkticheskaya Flora SSSR, the authoritative work of botanists of the komarov Botanical Institute prepared under the editorship of A. I. Tolmachev and B. A. Yurtsev. This unexcerpted translation was prepared by distinguished systematist G. C. D. Griffiths under the editorship of J. G. Packer, Professor Emeritus of Botany at the University of Alberta. It represents the first time this work has been made available in a language other than Russian. This third volume of Flora of the Russian Arctic describes the nine families here listed. Together, the six volumes in the series will treat some 360 genera, 1650 species and 220 infraspecific taxa, including many new combinations and previously undescribed species and subspecies. The original distribution maps and detailed keys to genera and species complement the species discussions. The Russian Arctic spans 160 degrees of longitude, from the Norwegian frontier to the Bering Strait. The comprehensive content and accomplished scholarship of this work, along with the size of the area covered, make Flora of the Russian Arctic an essential part of any botanical library.
    Type of Medium: Monograph available for loan
    Pages: XXXV, 472 Seiten , Illustrationen
    Edition: First English edition
    ISBN: 3443500242
    Series Statement: Flora of the Russian Arctic : a critical review of the vascular plants occurring in the Arctic region of the former Soviet Union 3
    Uniform Title: Arktičeskaja flora SSSR
    Language: English , Latin
    Note: Contents Acknowledgements Editor's Preface Translator's Preface Preface to Volume V of the Russian Edition, Salicaceae-Portulacaceae Preface to Volume VI of the Russian Edition, Caryophyllaceae-Ranunculaceae Abbreviations Used in Citing Floristic and Systematic Literature FAMILY XX / Salicaceae — Willow Family GENUS 1 / Populus - Poplar GENUS 2 / Chosenia - Chosenia GENUS 3 / Salix - Willow FAMILY XXI / Betulaceae — Birch Family GENUS 1 / Betula - Birch GENUS 2 / Alnaster - Green Alder GENUS 3 / Alnus - Alder FAMILY XXII / Urticaceae — Nettle Family GENUS 1 / Urtica - Nettle FAMILY XXIII / Polygonaceae — Buckwheat Family GENUS 1 / Oxyria - Mountain Sorrel GENUS 2 / Rumex - Dock, Sorrel GENUS 3 / Rheum - Rhubarb GENUS 4 / Koenigia - Koenigia GENUS 5 / Polygonum - Knotweed, Smartweed FAMILY XXIV / Chenopodiaceae — Goosefoot Family GENUS 1 / Chenopodium - Goosefoot GENUS 2 / Monolepis - Monolepis GENUS 3 / Atriplex - Orache GENUS 4 / Corispermum - Bugseed FAMILY XXV / Portulacaceae — Purslane Family GENUS 1 / Claytonia - Spring Beauty GENUS 2 / Montia - Blinks FAMILY XXVI / Caryophyllaceae — Pink Family GENUS 1 / Stellaria - Chickweed, Stitchwort GENUS 2 / Cerastium - Mouse-ear Chickweed GENUS 3 / Sagina - Pearlwort GENUS 4 / Minuartia - Minuartia GENUS 5 / Honkenya - Sea Sandwort GENUS 6 / Arenaria - Sandwort GENUS 7 / Moehringia - Groue Sandwort GENUS 8 / Merckia - Mercfo'a GENUS 9 / Spergula - Corn Spurry GENUS 10 / Spergularia - Sand Spurry GENUS 11 / Agrostemma - Corn Cockle GENUS 12 / Viscaria - Catchfly GENUS 13 / Silene - Campion GENUS 14 / Lychnis - Lychnis GENUS 15 / Coronaria - Ragged Robin GENUS 16 / Gastrolychnis - Gastrolychnis GENUS 17 / Gypsophila - Baby's-breath GENUS 18 / Dianthus - Pink FAMILY XXVII / Faeoniaceae — Peony Family GENUS 1 /Paeonia - Peony FAMILY XXVIII / Ranunculaceae — Buttercup Family GENUS 1 / Caltha - Marsh Marigold GENUS 2 / Trollius - Globe Flower GENUS 2a / Coptis - Goldthread GENUS 3 / Aquilegia - Columbine GENUS 4 / Delphinium - Larkspur GENUS 5 / Aconitum - Monkshood GENUS 6 7 Anemone - Anemone GENUS 7 / Pulsatilla - Pasque Flower GENUS 8 / Atragene - Alpine Clematis GENUS 9 / Oxygraphis - Oxygraphis GENUS 10 / Beckwithia - Beckwithia GENUS 11 / Batrachium - White Water Crowfoot GENUS 12 / Ranunculus - Buttercup GENUS 13 / Thalictrum - Meadow Rue APPENDIX I / Summary of Data on the Geographical Distribution of Vascular Plants of the Soviet Arctic TABLE 5 / Distribution of Vascular Plants of the Soviet Arctic, Salicaceae-Ranunculaceae Index of Plant Names
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  • 6
    Call number: PIK N 456-02-0024 ; AWI G4-23-3750
    Type of Medium: Monograph available for loan
    Pages: 84 Seiten , Illustrationen
    Language: English
    Note: Contents Acknowledgements Executive Summary with Key Findings and Recommendations Current State of the Art Key Scientific Challenges and Recommendations Major New Synthesis Initiative Required Implementation of Arctic-CHAMP Policy Implications Summary 1. Introduction Rationale for Pan-Arctic Hydrologic Synthesis Report Framework 2. A Strategy for Detecting and Understanding Arctic Hydrological Change: Arctic-CHAMP Arctic-CHAMP Basic Long-Term Monitoring Arctic-CHAMP Field-Based Process Studies Arctic-CHAMP Synthesis Modeling Execution of Arctic-CHAMP 3. Role and Importance of Water in the Arctic System The Integrated Water Cycle of the Pan-Arctic Land Atmosphere Ocean Importance of Arctic Hydrology to the Arctic System Importance of the Arctic to the Earth System 4. Unprecedented Change to Arctic Hydrological Systems Changes to the Land-Based Hydrologic Cycle Changes to the Atmosphere The Changing Arctic Ocean and its Regional Seas 5. Impacts and Feedbacks Associated with Arctic Hydrological Change Direct Impacts on Ecosystems Arctic Water Cycle Change and Humans Land-Atmosphere-Ocean Feedbacks Land-Atmosphere-Ocean-Human Feedbacks 6. Implementation of Arctic-CHAMP References Appendix 1. NSF-ARCSS Arctic Hydrology Workshop Participants Appendix 2. Current Gaps in Understanding the Pan-Arctic Hydrological Cycle Appendix 3. Integration of Arctic-CHAMP with NSF and Other Federal Agency Initiatives Appendix 4. International Collaborations
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  • 7
    Call number: S 99.0054(91) ; ZSP-320(B,91)
    In: Geologisches Jahrbuch : Reihe B, Regionale Geologie Ausland, Heft 91
    In: Polar issue, No. 7
    Type of Medium: Series available for loan
    Pages: 773 Seiten , Illustrationen , 1 Kartenbeilage, 1 Errata
    ISBN: 3510958349 , 3-510-95834-9
    ISSN: 0341-6402
    Series Statement: Geologisches Jahrbuch : Reihe B, Regionale Geologie Ausland 91
    Classification:
    Regional Geology
    Language: English
    Note: Contents INTRODUCTION Objectives of the Investigations / FRANZ TESSENSOHN ARCHITECTURE OF THE FOLD-AND-THRUST BELT Northern Segment Explanatory Notes to the Geological Map of Brøggerhalvøya and Blomstrandhalvøya 1 : 40,000 / FRIEDHELM THIEDIG, KERSTIN SAALMANN & KARSTEN PIEPJOHN Nappe Stacking on Brøggerhalvøya, NW Spitsbergen / KARSTEN PIEPJOHN, FRIEDHELM THIEDIG & GEOFF M. MANBY Foreland-Thrust Belt Relationships SE of Kongsfjorden and the Function of the Pretender Fault / FRANZ TESSENSOHN, KARSTEN PIEPJOHN & FRIEDHELM THIEDIG Emergence of Basement-Dominated Nappes in Oscar II Land: Implications for Shortening Estimates / GEOFF M. MANBY & NIKOS LYBERIS The Southern Margin of the Belt of Emergent Thrusting on the North Coast of Isfjorden / KARSTEN PIEPJOHN & WERNER VON GOSEN Permo-Carboniferous Slivers Infolded in the Basement of Western Oscar II Land / FRANZ TESSENSOHN, WERNER VON GOSEN & KARSTEN PIEPJOHN Central Segment Basement-Cored Folds in Nordenskiold Land / NIKOS LYBERIS & GEOFF M. MANBY Involvement of Basal Tertiary Strata in the Fold-Belt Deformation in Nordenskiold Land / WERNER VON GOSEN, HANS-JURGEN PAECH & KARSTEN PIEPJOHN Thrust Tectonics North of Van Keulenfjorden / WERNER VON GOSEN & KARSTEN PIEPJOHN Structure of the West Spitsbergen Fold-and-Thrust Belt in Wedel Jarlsberg Land / GEOFF M. MANBY & NIKOS LYBERIS Southern Segment Polyphase Deformation in the Eastern Hornsund Area / WERNER VON GOSEN & KARSTEN PIEPJOHN Decollement Structures in the Triassic South of Hornsund / FRANZ TESSENSOHN, FRIEDHELM THIEDIG, GEOFF M. MANBY & NIKOS LYBERIS Involvement of the Hornsund High in the Fold-Belt Deformation / FRIEDHELM THIEDIG, GEOFF M. MANBY & KARSTEN PIEPJOHN Structural Setting of the West Spitsbergen Fold-and-Thrust Belt in Southern Sørkapp Land / WERNER VON GOSEN, KARSTEN PIEPJOHN & HANS-JÜRGEN PAECH Stress Patterns in the West Spitsbergen Fold-and-Thrust Belt / GEOFF M. MANBY & NIKOS LYBERIS Role of the Tertiary Compressive Structures in the Central Basin, Spitsbergen / HANS-JÜRGEN PAECH The Relationship of the Ny-Alesund Tertiary to the West Spitsbergen Fold-and-Thrust Belt / KARSTEN PIEPJOHN, KERSTIN SAALMANN, FRIEDHELM THIEDIG & HANS-JÜRGEN PAECH Structures in the Tertiary Sediments of the Forlandsundet Graben / WERNER VON GOSEN & HANS-JÜRGEN PAECH Coalification in Post-Caledonian Sediments on Spitsbergen / HANS-JÜRGEN PAECH & JOACHIM KOCH TIMING Paleontology Paleogene Calcareous Nannofossils from the Firkanten and Sarsbukta Formations on Spitsbergen / PAVEL CEPEK Conflicting Interpretations of the Tertiary Biostratigraphy of Spitsbergen and New Palynological Results / PAVEL CEPEK & WILFRIED KRUTZSCH New Biostratigraphic Data from West Spitsbergen Based on Conodonts / FRIEDRICH W. LUPPOLD Conodont Stratigraphy of the Carboniferous and Permian Strata from Brøggerhalvøya and the Billefjorden Trough / WERNER BUGGISCH, MICHAEL JOACHIMSKI, HARALD LÜTZNER, FRIEDHELM THIEDIG & HEIKO HÜNEKE An Upper Cretaceous Microflora from Spitsbergen / WILFRIED KRUTZSCH Isotope Geochronology K/Ar Dating Attempts on Rocks from the West Spitsbergen Fold-and-Thrust Belt and the Central Basin / FRANZ TESSENSOHN, FRIEDHELM HENJES-KUNST & STEFAN KRUMM CONCLUSION The Evolution of the West Spitsbergen Fold-and-Thrust Belt / CASE TEAM , Zusammenfassungen in englischer, deutscher und russischer Sprache
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  • 8
    facet.materialart.12
    Amsterdam : Elsevier Science/Butterworth-Heinemann
    Call number: 0750674571 (e-book)
    Description / Table of Contents: 'The Diversity Scorecard' is designed to provide step-by-step instructions, worksheets and examples to help diversity executives and managers analyze and track the impact of their diversity initiatives to mobilize the organization for strategic culture change. Diversity is not a program; it is a systemic process of organizational change that requires measurement for organizational improvement and success. Measuring the progress and results of diversity initiatives is a key strategic requirement to demonstrate its contribution to organizational performance. Diversity executives, professionals and managers know they must begin to show how diversity is linked to the bottom-line in hard numbers or they will have difficulty maintaining funds, gaining support, and obtaining resources to generate progress. Many organizations collect some type of diversity-related data today, even if it focuses only on Affirmative Action statistics. "The Diversity Scorecard" focuses on tools and techniques to make sure diversity professionals are collecting and measuring the right type of data that will help ensure the organization"s success both now and in the future. This book helps the reader spend some time thinking about what they currently measure and adding new measures to a database to track progress towards their diversity vision. The basic premises of this book are that it is important to develop measures that focus on the past, present, and future; and that measures need to consider the needs of the organization"s diverse workforce, its work climate, diverse customers, the community, and shareholders. Part I of "The Diversity Scorecard" identifies the need for diversity measurement highlighting a business case for diversity and providing an introduction to diversity measurement. Part II of the book outlines the diversity return on investment (DROI) process taking you through step-by-step processes and techniques. Part III teaches you how to use measures in six key categories - Diversity Leadership Commitment, Workforce Profile Representation, Workplace Climate, Learning & Growth, Diverse Customer / Community Partnerships, and Financial Impact - to build a diversity scorecard that is aligned and linked with the business strategy of the organization. Finally, in Part IV, Dr. Hubbard discusses implementation issues involving strategic change procedures and techniques to avoid the pitfalls inherent in a diversity-based cultural transition process.
    Type of Medium: 12
    Pages: xviii, 348 Seiten , Illustrationen
    Edition: Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
    ISBN: 1-4175-0785-3 , 978-1-4175-0785-6 , 0-7506-7457-1 , 978-0-7506-7457-7
    Series Statement: Improving human performance series
    Language: English
    Note: Contents Foreword Preface Acknowledgments Part I: The Need for Diversity Management Chapter 1 - The Business Case for Diversity Chapter 2 - Introduction to Diversity Measurement Part II: The Diversity Return-on-Investment (DROI) Process Chapter 3 - Introduction to the Diversity ROI Process Chapter 4 - Planning and Collecting Data Chapter 5 - Evaluating Diversity's Contribution Chapter 6 - Track and Assess Progress Part III: Building a Diversity Scorecard Chapter 7 - Basic Diversity Scorecard Components Chapter 8 - Diversity Leadership Commitment Perspective Chapter 9 - Workforce Profile Perspective Chapter 10 - Workplace Culture/Climate Perspective Chapter 11 - Learning and Growth Perspective Chapter 12 - Diverse Customer/Community Partnership Perspective Chapter 13 - Financial Impact Perspective Chapter 14 - Building Your Diversity Scorecard Part IV: Implementation Issues Chapter 15 - Achieving Strategic Alignment from Top to Bottom Chapter 16 - Implementing the Diversity Scorecard Process Appendix A - Hubbard Diversity Measurement and Productivity (DM&P) Institute: Creating Applied Sciences for Measuring Diversity Performance and Results Index About the Author
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  • 9
    Call number: AWI G8-23-95155
    Type of Medium: Monograph available for loan
    Pages: 59 Seiten , Illustrationen
    Language: English
    Note: Contents 1.0 PROGRAM GOALS AND OBJECTIVES 2.0 BACKGROUND 2.1 THE CANADIAN FOREST FIRE DANGER RATING SYSTEM'S FIRE WEATHER lNDEX 2.2 C-BAND SAR BACKSCATTER FROM BURNED BOREAL FORESTS 2.3 C-BAND SAR BACKSCATTER FROM UNBURNED BOREAL FORESTS 2.4 PREVIOUS FIRE-DANGER ANALYSIS USING ERS-SAR DATA 3.0 PROJECT SITE DESCRIPTIONS AND SAMPLING STRATEGY 3.1 STUDY AREA DESCRIPTIONS 3.2 EXPERIMENTAL APPROACH 4.0 RESULTS OF FIELD MEASUREMENTS 4.1 PERMANENT SITES 4.2 SURFACE MOISTURE MEASUREMENTS 5.0 RESULTS OF SAR VERSUS FIRE DANGER CODES 5.1 ANALYSIS OF DONNELLY FLATS SAR BACKSCATTER VERSUS FIRE CODES 5.2 ANALYSIS OF SAR BACKSCATTER FROM 1HE HAJDUKOVICH CREEK 94 BURN VERSUS FIRE DANGER 5.3 COMBINATION OF TOK, HAJDUKOVICH CREEK, AND DONNELLY FLATS BACKSCATTER FOR FIRE DANGER ASSESSMENT 6.0 SUMMARY AND CONCLUSIONS 6.0 OUTREACH ACTIVITIES REFERENCES Figures 1,3,4,5
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  • 10
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    Unknown
    IUGG Secretariat, CIRES Cooperative Institute for Research in Environmental Sciences, University of Colorado
    In:  IUGG Annual Report
    Publication Date: 2023-03-02
    Language: English
    Type: info:eu-repo/semantics/report
    Format: application/pdf
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