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Ezen az oldalon az NKFI Elektronikus Pályázatkezelő Rendszerében nyilvánosságra hozott projektjeit tekintheti meg.
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Kis M., Gribovszky K., Kiszely M., Koppán A: Analysis of an earthquake based on extensometric and seismological measurements, In: Cvetkovic, M., Zelenika, K.N., Geiger, J., (Eds) Proceedings of 6th Croatian-Hungarian and 17th Hungarian Geomathematical Congress, p. 129-134 ISBN: 978-953-95130-8-3, 2014 | Koppán A., Kis M., Kovács P., Merényi L., Vadász G.: Observatory gravimeter calibration results with magnetic correction, In: Cvetkovic, M., Zelenika, K.N., Geiger, J., (Eds) Proceedings of 6th Croatian-Hungarian and 17th Hungarian Geomathematical Congress, p. 145-150 ISBN: 978-953-95130-8-3, 2014 | Varga, P., Krumm, F. W., Grafarend, E. W., Sneeuw, N., Schreider, A. A., Horváth, F.: Evolution of the oceanic and continental crust during Neo-Proterozoic and Phanerozoic, Rend. Fis. Acc. Lincei, 25, 255–263. DOI 10.1007/s12210-014-0298-9., 2014 | Mentes Gy., Eper-Pápai I., Kis M., Koppán A.,: Analysis of long-term extensometric data of Sopron and Budapest geodynamical observatories, In: Cvetkovic, M., Zelenika, K.N., Geiger, J., (Eds) Proceedings of 6th Croatian-Hungarian and 17th Hungarian Geomathematical Congress, p. 135-136. ISBN: 978-953-95130-8-, 2014 | Eper-Pápai I., Mentes Gy., Kis M., Koppán A.: Comparison of two extensometric stations in Hungary, Journal of Geodynamics, 80, 3-11. DOI: 10.1016/j.jog.2014.02.007., 2014 | Mentes Gy: Artificial neural network model as a potential alternative for barometric correction of extensometric data, MARÉES TERRESTRES: BULLETIN D INFORMATIONS 149: pp. 12001-12012., 2015 | Mentes Gy, Eper-Pápai I: Investigation of temperature and barometric pressure variation effects on radon concentration in the Sopronbánfalva Geodynamic Observatory, Hungary, JOURNAL OF ENVIRONMENTAL RADIOACTIVITY 149: pp. 64-72, 2015 | Schreider A. A., Schreider Al. A., Varga P., Denis, C.: Evolution of the virtual dipole moment through the Paleoarchean–Phanerozoic, Oceanology, 55, 2, 245-252, 2015 | Varga P.: Long-term variations of the gravitational potential and of the geodynamical properties of a deformable Earth due to axial despinning, Leibniz Online, Jahrgang 2015, Nr. 19, 1-8, Zeitschrift der Leibniz-Sozietät e. V., ISSN 1863-3285, 2015 | Varga P.: On the physical meaning of the zonal components of the geopotential, Geophysical Research Abstracts. Vol.17, EGU2015-15409, EGU General Assembly 2015, 2015 | Bán D., Mentes Gy.: Observation of the Earth liquid core resonance by extensometers, GEOPHYSICAL RESEARCH ABSTRACTS 18: Paper EGU2016-14901., 2016 | Varga, P., Grafarend E.: Lunisolar tidal and tidal load elastic stress tensor components within the Earth's mantle and their influence on earthquake occurrences, GEOPHYSICAL RESEARCH ABSTRACTS 18: Paper EGU2016-3297., 2016 | Mentes Gy.: Tidal strain variations recorded by a quartz-tube extensometer in the Sopronbánfalva Geodynamic Observatory, Hungary, World Multidisciplinary Earth Sciences Symposium, WMESS-2016, September 5-9 2016, Prague, Czech Republic, Abstract Collection Book. p. 18. ISBN: 978-80-270-0316-7., 2016 | Schreider A. A., Ignatova A. A., Schreider A. A., Sajneva A. A., Varga P., Denis C.: Evolution of the virtual dipole moment calculation for reconstruction of the oceanic inversion magnetic layer parameters, Oceanology, 56, 3, 463-470, 2016 | Varga P., Mentes Gy.: Deformációmérések és kapcsolatuk a földrengésekkel., Természet Világa 2016/I. különszáma, „EMBER ÉS KÖRNYEZET KAPCSOLATA A KÁRPÁT-MEDENCÉBEN”, 12-16., 2016 | Brimich L., Bednarik M., Bezak V., Kohut I., Bán D., Eper-Pápai I., Mentes Gy.: Extensometric observation of Earth tides and local tectonic processes at the Vyhne station, Slovakia, Contributions to Geophysics and Geodesy 46 (2), 75–90, 2016 | Varga P., Grafarend E., Engels J.: Relation of Different Type Love–Shida Numbers Determined with the Use of Time-Varying Incremental Gravitational Potential, Pure and Applied Geophysics (online first, DOI 10.1007/s00024-017-1532-z), 2017 | Varga P., Grafarend, E.: Influence of Tidal Forces on the Triggering of Seismic Events, Pure and Applied Geophysics, (online first, DOI 10.1007 / s00024 -017- 1563-5.), 2017 | Varga P., Rogozhin E. A., Süle B., Andreeva N. V.: A Study of the Energy Released by Great (M ≥ 7) Deep Focus Seismic Events with Allowance for the Mw 8.3 Earthquake of May 24, 2013 in the Sea of Okhotsk, Russia, Physics of the Solid Earth, 53, 3, 385–409, 2017 | Varga P., Grafarend E., Engels J.: Relation of Different Type Love–Shida Numbers Determined with the Use of Time-Varying Incremental Gravitational Potential, Pure and Applied Geophysics, 175, 1643–1648, 2018 | Varga P., Grafarend, E.: Influence of Tidal Forces on the Triggering of Seismic Events, Pure and Applied Geophysics, 175, 1649–1657, 2018 | Bán D., Mentes Gy., Kis M., Koppán A.: Observation of the Earth liquid core resonance by extensometers, Pure and Applied Geophysics, 175 (5), 1631–1642, 2018 | Mentes Gy.: Investigation of the relationship between rock strain and radon concentration in the tidal frequency-range, Journal of Applied Geophysics 155, 232–236, 2018 | Mentes Gy., Kiszely M.: Local tectonic deformations measured by extensometer at the eastern foothills of the Alps at the Sopronbánfalva Geodynamic Observatory, Hungary, Tectonophysics (közlemény elküldve), 2018 |
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