Pages that link to "Item:Q141451"
From geokb
The following pages link to Hans F. Schwaiger (Q141451):
Displayed 14 items.
- Hail formation triggers rapid ash aggregation in volcanic plumes (Q234662) (← links)
- Injection, transport, and deposition of tephra during event 5 at Redoubt Volcano, 23 March, 2009 (Q244806) (← links)
- Evolving infrasound detections from Bogoslof volcano, Alaska: Insights from atmospheric propagation modeling (Q253226) (← links)
- Constraints on eruption processes and event masses for the 2016–2017 eruption of Bogoslof volcano, Alaska, through evaluation of IASI satellite SO2 masses and complementary datasets (Q253598) (← links)
- Application of an updated atmospheric model to explore volcano infrasound propagation and detection in Alaska (Q253990) (← links)
- Atmospheric waves and global seismoacoustic observations of the January 2022 Hunga eruption, Tonga (Q262335) (← links)
- A Bayesian method to rank different model forecasts of the same volcanic ash cloud: Chapter 24 (Q269980) (← links)
- No evidence for tephra in Greenland from the historic eruption of Vesuvius in 79 CE: Implications for geochronology and paleoclimatology (Q273248) (← links)
- Short-term forecasting and detection of explosions during the 2016–2017 eruption of Bogoslof volcano, Alaska (Q283800) (← links)
- 2021 Volcanic activity in Alaska and the Commonwealth of the Northern Mariana Islands—Summary of events and response of the Alaska Volcano Observatory (Q290336) (← links)
- AVO-G2S: A modified, open-source Ground-to-Space atmospheric specification for infrasound modeling (Q308789) (← links)
- Infrasound generated by the 2016-2017 shallow submarine eruption of Bogoslof volcano, Alaska (Q310923) (← links)
- Ash3d: A finite-volume, conservative numerical model for ash transport and tephra deposition (Q311138) (← links)
- Data used to develop a probabilistic assessment of tephra-fall hazards at Hanford, Washington (Q330301) (← links)