3,641 to 3,650 of 4,499 Results
Dec 15, 2020 -
Uninterpreted seismic reflection profiles (time)
JPEG Image - 10.0 MB -
MD5: 6c3ed5b326598c345539afb418ecb9f9
Full-resolution profile in TWTT |
Dec 15, 2020 -
Uninterpreted seismic reflection profiles (time)
JPEG Image - 15.4 MB -
MD5: f4de3ec4d3c3798cf8490793616f500f
Full-resolution profile in TWTT |
Dec 15, 2020 -
Uninterpreted seismic reflection profiles (time)
JPEG Image - 25.8 MB -
MD5: 98bb06a94c6dfee08d0441fb1d2974d2
Full-resolution profile in TWTT |
Dec 15, 2020 -
Uninterpreted seismic reflection profiles (time)
JPEG Image - 16.9 MB -
MD5: ceced1b909f81a1fa69cb183e795ecb4
Full-resolution profile in TWTT |
Dec 15, 2020 -
Uninterpreted seismic reflection profiles (time)
JPEG Image - 24.6 MB -
MD5: 3ca713418e05ca96b6f383adce960169
Full-resolution profile in TWTT |
Plain Text - 342.3 KB -
MD5: 6a1c53f168f95e8b4c8b30c4dc00b615
satellite-based CDOM data |
Nov 26, 2020 - Manta Fabio
Manta, Fabio; Occhipinti, Giovanni; Hill, Emma; Perttu, Anna; Assink, Jelle; Taisne, Benoit, 2020, "Correlation between GNSS-TEC and eruption magnitude supports the use of ionospheric sensing to complement volcanic hazard assessment", https://doi.org/10.21979/N9/GIP5TJ, DR-NTU (Data), V1
This dataset contains all the outputs obtained during the GNSS data processing aiming to explore the relationship between the power of volcanic explosion and ionospheric TEC perturbation. This dataset also contain the codes used to process the data |
Nov 26, 2020 -
Correlation between GNSS-TEC and eruption magnitude supports the use of ionospheric sensing to complement volcanic hazard assessment
MATLAB Source Code - 948 B -
MD5: 29855063f663be3c5cd0ca79ef16c712
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Nov 26, 2020 -
Correlation between GNSS-TEC and eruption magnitude supports the use of ionospheric sensing to complement volcanic hazard assessment
MATLAB Source Code - 470 B -
MD5: 426775c6da1c686312bf6eee32d5a8da
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