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Topographically Predicted Vertical Gravity Gradient Field and Its Applicability in 3D and 4D Microgravimetry: Etna (Italy) Case Study

  1. TitleTopographically Predicted Vertical Gravity Gradient Field and Its Applicability in 3D and 4D Microgravimetry: Etna (Italy) Case Study
    Author Vajda Peter 1966 SAVUVOZ ; SAVGEOF - Ústav vied o Zemi SAV    SCOPUS    RID    ORCID
    Co-authors Zahorec Pavol 1975 SAVUVOZ ; SAVGEOF - Ústav vied o Zemi SAV    SCOPUS    SCOPUS    ORCID

    Papčo Juraj

    Carbone Daniele

    Greco Filippo

    Cantarero Massimo

    Source document Pure and Applied Geophysics. Vol. 177, no. 7 (2020), p. 3315-333
    Languageeng - English
    CountryCH - Switzerland
    Document kindrozpis článkov z periodík (rbx)
    CitationsTAN, Xuli - WANG, Qingbin - FENG, Jinkai - HUANG, Yan - HUANG, Ziyan. Fast modeling of gravity gradients from topographic surface data using GPU parallel algorithm. In GEODESY AND GEODYNAMICS. ISSN 1674-9847, 2021, vol. 12, no. 4, p. 288-297.
    AKDOGAN, Y. A. - AHI, G. O. - YILDIZ, H. Free-air vertical gravity gradient modelling and its validation. In BULLETIN OF GEOPHYSICS AND OCEANOGRAPHY. ISSN 2785-339X, 2022, vol., no., pp. Dostupné na: https://doi.org/10.4430/bgo00385.
    CategoryADCA - Scientific papers in foreign journals registered in Current Contents Connect with IF (impacted)
    Category of document (from 2022)V3 - Vedecký výstup publikačnej činnosti z časopisu
    Type of documentčlánok
    Year2020
    Registered inWOS
    Registered inSCOPUS
    Registered inCCC
    DOI 10.1007/s00024-020-02435-x
    article

    article

    File nameAccessSizeDownloadedTypeLicense
    topografically.pdfavailable6.3 MB0Postprint
    Topographically PredictedVertic.pdfNeprístupný/archív6.3 MB0Publisher's version
    rokCCIFIF Q (best)JCR Av Jour IF PercSJRSJR Q (best)CiteScore
    A
    rok vydaniarok metrikyIFIF Q (best)SJRSJR Q (best)
    202020191.586Q30.593Q2
Number of the records: 1  

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