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  • Other Sources  (1,357)
  • Elsevier  (1,333)
  • American Chemical Society
  • 2015-2019  (1,333)
  • 1975-1979  (24)
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Year
  • 1
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    Elsevier
    In:  Amsterdam, 440 pp., Elsevier, vol. 231, no. 3, pp. 2-203, (ISBN 0-470-02298-1)
    Publication Date: 1977
    Keywords: Textbook of geophysics ; Nuclear explosion ; Seismology
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  • 2
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    Elsevier
    In:  Amsterdam, 490 pp., Elsevier, vol. 11, no. Publ. No. 12, pp. 127, (3-540-43395-3)
    Publication Date: 1979
    Keywords: Seismology ; Textbook of geophysics
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  • 3
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    Elsevier
    In:  Amsterdam, 357+IX pp., Elsevier, vol. 121, no. Publ. No. 12, pp. 127, (ISBN 0-521-66034-3, ISBN 0-521-66948-0 paper)
    Publication Date: 1976
    Keywords: Earthquake precursor: prediction research ; Textbook of geophysics
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  • 4
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    Elsevier
    In:  New York, Elsevier, vol. 5, no. Publ. No. 12, pp. 127, (ISBN 0 465 07009 4)
    Publication Date: 1979
    Keywords: Inversion
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  • 5
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    Elsevier
    In:  Amsterdam, Elsevier, vol. 1, no. 22, pp. 65-70, (ISBN 3-7643-0253-4)
    Publication Date: 1976
    Keywords: Textbook of geophysics ; Filter- ; Recursive filters
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  • 6
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    Elsevier
    In:  Bull., Open-File Rept., Selected Papers on Rheology, New York, Elsevier, vol. 4, no. 1, pp. 158-167, (ISBN 0080419208)
    Publication Date: 1975
    Keywords: Textbook of geophysics ; Rheology ; Rock mechanics ; Inelastic ; Fracture
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  • 7
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    Elsevier
    In:  Professional Paper, Computer-aided seismic analysis and discrimination, Washington, D. C., Elsevier, vol. 16, no. 16, pp. 133-146, (ISBN 1-86239-165-3, vi + 330 pp.)
    Publication Date: 1978
    Keywords: Data analysis / ~ processing ; Discrimination ; Seismics (controlled source seismology) ; Pattern recognition ; Detectors
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  • 8
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    Elsevier
    In:  Bull., Polar Proj. OP-O3A4, Computer-Aided Seismic Analysis and Discrimination, London, Elsevier, vol. 16, no. 4, pp. 97-109, (ISBN 0080419208)
    Publication Date: 1978
    Keywords: Earthquake ; Seismics (controlled source seismology) ; Discrimination ; Velocity analysis
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  • 9
    Publication Date: 2020-02-06
    Description: Highlights • The Fram Slide Complex has been active from late Miocene to late Pleistocene. • Local processes were critical for slope stability in the Fram Strait area. • Toe erosion caused by normal faulting may have led to retrogressive failure. • Low gradient contourite drifts might smooth and stabilize submarine slopes. • Low tsunami potential from the Fram Slide Complex could increase in the future. Abstract The best known submarine landslides on the glaciated NW European continental margins are those at the front of cross-shelf troughs, where the alternation of rapidly deposited glycogenic and hemi pelagic material generates sedimentary overpressure. Here, we investigate landslides in two areas built of contourite drifts bounded seaward by a ridge-transform junction. Seismic and bathymetric data from the Fram Slide Complex are compared with the tectonically similar Vastness area ~ 120 km to the south, to analyze the influence of local and regional processes on slope stability. These processes include tectonic activity, changes of climate and oceanography, gas hydrates and fluid migration systems, slope gradient, toe erosion and style of contourite deposition. Two areas within the Fram Slide Complex underwent different phases of slope failures, whereas there is no evidence at all for major slope failures in the Vastness area. The comparison cannot reveal the distinct reason for slope failure but demonstrates the strong impact of variation in the local controls on slope stability. The different failure chronologies suggest that toe erosion, which is dependent on the throw of normal faults, and the different thickness and geometry of contourite deposits can result in a critical slope morphology and exert pronounced effects on slope stability. These results highlight the limitations of regional hazard assessments and the need for multi-disciplinary investigations, as small differences in local controlling factors led to substantially different slope failure histories.
    Type: Article , PeerReviewed
    Format: text
    Format: text
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  • 10
    Publication Date: 2020-02-06
    Description: We used a new sedimentary record from a small kettle wetland to reconstruct the Late Glacial and Holocene vegetation and fire history of the Krutoberegovo-Ust Kamchatsk region in eastern Kamchatka Peninsula (Russia). Pollen and charcoal data suggest that the Late Glacial landscape was dominated by a relatively fire-prone Larix forest-tundra during the Greenland Interstadial complex (GI 1) and a subarctic steppe during the Younger Dryas (GS1). The onset of the Holocene is marked by the reappearance of trees (mainly Alnus incana) within a fern and shrub dominated landscape. The Holocene Thermal Maximum (HTM) features shifting vegetational communities dominated by Alnus shrubs, diverse forb species, and locally abundant aquatic plants. The HTM is further defined by the first appearance of stone birch forests (Betula ermanii) – Kamchatka's most abundant modern tree species. The Late Holocene is marked by shifts in forest dynamics and forest-graminoid ratio and the appearance of new non-arboreal taxa such as bayberry (Myrica) and meadow rue (Filipendula). Kamchatka is one of Earth's most active volcanic regions. During the Late Glacial and Holocene, Kamchatka's volcanoes spread large quantities of tephra over the study region. Thirty-four tephra falls have been identified at the site. The events represented by most of these tephra falls have not left evidence of major impacts on the vegetation although some of the thicker tephras caused expansion of grasses (Poaceae) and, at least in one case, forest die-out and increased fire activity.
    Type: Article , PeerReviewed
    Format: text
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