Differences in the lithosphere structure along the Brazilian continental margin in theSouth Atlantic from travel time seismic tomography (2016)
- Authors:
- Autor USP: ASSUMPCAO, MARCELO SOUSA DE - IAG
- Unidade: IAG
- Subjects: MARGENS CONTINENTAIS; LITOSFERA
- Language: Inglês
- Imprenta:
- Publisher: American Geophysical Union
- Publisher place: Washington
- Date published: 2016
- Conference titles: AGU Fall Meeting
-
ABNT
ROCHA, Marcelo Peres e AZEVEDO, Paulo Araújo de e ASSUMPÇÃO, Marcelo Sousa de. Differences in the lithosphere structure along the Brazilian continental margin in theSouth Atlantic from travel time seismic tomography. 2016, Anais.. Washington: American Geophysical Union, 2016. . Acesso em: 23 jan. 2026. -
APA
Rocha, M. P., Azevedo, P. A. de, & Assumpção, M. S. de. (2016). Differences in the lithosphere structure along the Brazilian continental margin in theSouth Atlantic from travel time seismic tomography. In . Washington: American Geophysical Union. -
NLM
Rocha MP, Azevedo PA de, Assumpção MS de. Differences in the lithosphere structure along the Brazilian continental margin in theSouth Atlantic from travel time seismic tomography. 2016 ;[citado 2026 jan. 23 ] -
Vancouver
Rocha MP, Azevedo PA de, Assumpção MS de. Differences in the lithosphere structure along the Brazilian continental margin in theSouth Atlantic from travel time seismic tomography. 2016 ;[citado 2026 jan. 23 ] - Intraplate stress field in Northeast Brazil
- Seismic studies of continental lithosphere beneath SE Brazil
- Reservoir-triggered seismicity in Brazil: statistical characteristics in a midplate environment
- Terremotos no Brasil: preparando-se para eventos raros
- Intraplate stresses in south america: data and models. [em CD-ROM]
- Preliminary crustal model for se brazilian shield based on local earthquakes in southern Minas Gerais
- Focal mechanisms around potiguar marginal basin, NE Brazil
- The intraplate Porto dos Gaúchos seismic zone in the Amazon craton-Brazil
- Determination of the fault plane and rupture size of the 2013 Santa Cruz earthquake, Bolivia, 5.2 Mw, by relative location of the aftershocks
- Surface wave dispersion inversion using improved genetic algorithm. [CD-ROM]
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