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Please use this identifier to cite or link to this item: https://oldena.lpnu.ua/handle/ntb/40540
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dc.contributor.authorShylo, Olha
dc.contributor.authorShylo, Yevhenii
dc.coverage.temporal23–25 листопада 2017 року
dc.coverage.temporal23–25 November, 2017
dc.date.accessioned2018-04-12T13:07:21Z-
dc.date.available2018-04-12T13:07:21Z-
dc.date.created2017-12-23
dc.date.issued2017-12-23
dc.identifier.citationShylo O. The definition of deviation of “Geoevolutionary” plumb line based on data from the transformation of the Earth / Olha Shylo, Yevhenii Shylo // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 202–205. — (8th International academic conference «Geodesy, architecture & construction 2017» (GAC-2017)).
dc.identifier.isbn978-966-941-108-2
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/40540-
dc.description.abstractThis article is about dynamic transformation of the litosphere relative to the geoid. Calculated of deviation of “geoevolutionary” plump line, which is interpret as the angle between the normal to the surfaces of ellipsoids approximating the shape of the litosphere and the geoid. These values are converted into tangential force and determine the stress-strain state in the Earth’s crust.
dc.format.extent202-205
dc.language.isoen
dc.publisherВидавництво Львівської політехніки
dc.publisherLviv Polytechnic Publishing House
dc.relation.ispartofLitteris et Artibus : матеріали, 2017
dc.relation.ispartofLitteris et Artibus : proceedings, 2017
dc.subjectthe geodynamic evolution of the Earth's
dc.subjectthe deflection of the plumb line
dc.subjecttransformation of Earth
dc.subjecttangencial forces
dc.titleThe definition of deviation of “Geoevolutionary” plumb line based on data from the transformation of the Earth
dc.typeConference Abstract
dc.rights.holder© Національний університет “Львівська політехніка”, 2017
dc.contributor.affiliationLviv Polytechnic National University
dc.format.pages4
dc.identifier.citationenShylo O. The definition of deviation of “Geoevolutionary” plumb line based on data from the transformation of the Earth / Olha Shylo, Yevhenii Shylo // Litteris et Artibus : proceedings, 23–25 November, 2017. — Lviv : Lviv Polytechnic Publishing House, 2017. — P. 202–205. — (8th International academic conference «Geodesy, architecture & construction 2017» (GAC-2017)).
dc.relation.references[1] Maloof, A.C., Halverson, G.P., Kirschvink J.L. at al. Combined paleomagnetic, isotopic, and stratigraphic evidence for true polar wander from the Neoproterozoic Akademikerbreen Group, Svalbard, Norway // Geological Society of America Bulletin. – 2006. – v. 118, no. 9/10. – P. 1099-1124.
dc.relation.references[2] Menard G.U. Geologiya dna Tihogo okeana [Geology of the bottom of the Pacific Ocean]. – M.: Mir, 1966. – 275 p.
dc.relation.references[3] Mescheryakov G.A., Tserklevich A.L. Gravitatsionnoe pole, figura i vnutrennee stroenie Marsa [Gravitational field, figure and internal structure of Mars].–Kiev: Naukova dumka, 1987. – 240 s.
dc.relation.references[4] Tserklevych A.L., Zayats O.S. and Shylo Y.O. Dynamics of the Earth Shape Transformation Kinematics and Physics of Celestial Bodies, 2017, Vol. 33, No. 3, pp. 130–141.
dc.relation.references[5] Tserklevych A.L., Zayats' O.S. Heodynamichna evolyutsiya fihury Zemli ta Marsa [Geodynamic evolution shapes Earth and Mars]// Heodynamika. – 2012. – v. 2(13). – P. 38–42.
dc.relation.references[6] Tyapkin K.F., Kivelyuk K.F. Izuchenie razlomnyih struktur geologo-geofizicheskimi metodami [Study of fault structures by geological and geophysical methods]. – M.: Nedra, 1982. – 239 p.
dc.relation.referencesen[1] Maloof, A.C., Halverson, G.P., Kirschvink J.L. at al. Combined paleomagnetic, isotopic, and stratigraphic evidence for true polar wander from the Neoproterozoic Akademikerbreen Group, Svalbard, Norway, Geological Society of America Bulletin, 2006, v. 118, no. 9/10, P. 1099-1124.
dc.relation.referencesen[2] Menard G.U. Geologiya dna Tihogo okeana [Geology of the bottom of the Pacific Ocean], M., Mir, 1966, 275 p.
dc.relation.referencesen[3] Mescheryakov G.A., Tserklevich A.L. Gravitatsionnoe pole, figura i vnutrennee stroenie Marsa [Gravitational field, figure and internal structure of Mars].–Kiev: Naukova dumka, 1987, 240 s.
dc.relation.referencesen[4] Tserklevych A.L., Zayats O.S. and Shylo Y.O. Dynamics of the Earth Shape Transformation Kinematics and Physics of Celestial Bodies, 2017, Vol. 33, No. 3, pp. 130–141.
dc.relation.referencesen[5] Tserklevych A.L., Zayats' O.S. Heodynamichna evolyutsiya fihury Zemli ta Marsa [Geodynamic evolution shapes Earth and Mars]// Heodynamika, 2012, v. 2(13), P. 38–42.
dc.relation.referencesen[6] Tyapkin K.F., Kivelyuk K.F. Izuchenie razlomnyih struktur geologo-geofizicheskimi metodami [Study of fault structures by geological and geophysical methods], M., Nedra, 1982, 239 p.
dc.citation.conference7th International youth science forum «Litteris et Artibus»
dc.citation.journalTitleLitteris et Artibus : матеріали
dc.citation.spage202
dc.citation.epage205
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
Appears in Collections:Litteris et Artibus. – 2017 р.

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