Article
Open Access
On Vening Meinesz-Moritz and flexural theories of isostasy and their comparison over Tibet Plateau
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Mehdi Eshagh
Published/Copyright:
December 30, 2016
Received: 2016-11-14
Accepted: 2016-12-14
Published Online: 2016-12-30
© 2016 Mehdi Eshagh
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- Götterdämmerung over total least squares
- Homogenizing surface pressure time-series from operational numerical weather prediction models for geodetic applications
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- RFCAG2013: Russian-Finnish comparison of absolute gravimeters in 2013
- GNSS-SNR water level estimation using global optimization based on interval analysis
- Space geodetic activities at the Astronomical Observatory of Mongolia
- Scaled weighted total least-squares adjustment for partial errors-in-variables model
- Thermosteric contribution of warming oceans to the global sea level variations
- On Vening Meinesz-Moritz and flexural theories of isostasy and their comparison over Tibet Plateau
Keywords for this article
elastic thickness;
hydrostatic and flexural models;
mean compensation depth;
Tibet Plateau
Creative Commons
BY-NC-ND 3.0
Articles in the same Issue
- The NKG2008 GPS campaign – final transformation results and a new common Nordic reference frame
- Relative performance of AUSGeoid09 in mountainous terrain
- Götterdämmerung over total least squares
- Homogenizing surface pressure time-series from operational numerical weather prediction models for geodetic applications
- The Effect of Warming Oceans at a Tide Gauge Station
- Investigation of GPS draconitic year effect on GPS time series of eliminated eclipsing GPS satellite data
- RFCAG2013: Russian-Finnish comparison of absolute gravimeters in 2013
- GNSS-SNR water level estimation using global optimization based on interval analysis
- Space geodetic activities at the Astronomical Observatory of Mongolia
- Scaled weighted total least-squares adjustment for partial errors-in-variables model
- Thermosteric contribution of warming oceans to the global sea level variations
- On Vening Meinesz-Moritz and flexural theories of isostasy and their comparison over Tibet Plateau