Automated Author ProfileSchiebel, Ralf
0000-0002-6252-7647
Schiebel, Ralf
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 26215.3 (sum of 875 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES24C11, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Heins, Lena ;
- Englert, Jana ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES23C17, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Heins, Lena ;
- Härri, Jana ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES22C19, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Calleja, Maria Ll ;
- Heins, Lena ;
- Hrabe de Angelis, Isabella ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf
Authors
- Arns, Anthea Ivana ;
- Evans, David ;
- Schiebel, Ralf ;
- Wolf, Stephan E. ;
- Jantschke, Anne ;
- Hansen, Maximilian ;
- Leitner, Jan ;
- Vonhof, Hubert ;
- Haug, Gerald H.
Authors
- Arns, Anthea Ivana ;
- Evans, David ;
- Schiebel, Ralf ;
- Wolf, Stephan E. ;
- Jantschke, Anne ;
- Hansen, Maximilian ;
- Leitner, Jan ;
- Vonhof, Hubert ;
- Haug, Gerald H.
Global maps of the Ocean microbiome: Carbon biomass of two eukaryotic calcifying taxa (pteropoda and foraminifera) in the epipelagic layer (0-200 m), available as monthly climatologies projected under contemporary (2005-2017) environmental conditions, using an ensemble of habitat suitability models.
This collection of global maps provides two NetCDF files that record the ensemble predictions of global monthly (12 time levels) biomass concentrations of calcifying Pteropoda (in mg C m-3) and Foraminifera (in µg C m-3). The monthly biomass concentration fields were obtained by training a suite of five distribution models tailored for predicting plankton biomass data obtained from traditional sampling techniques (see Knecht et al., 2023 for details). The observational data and the environmental layers used to train the biomass models were integrated over the epipelagic layer (0-200m) of the global ocean. Therefore, the predicted values are representative of the conditions prevailing in the epipelagic layer. The two NetCDF files thus record the: minimum (Min), maximum (Max), mean, median and the standard deviation (Stdev) of the monthly predictions issued from these five models.This collection, and other collections of Global maps of the Ocean microbiome are described in the AtlantECO-MAPS publication (https://doi.org/10.5281/zenodo.18696236).
Authors
- Knecht, Nielja S. ;
- Benedetti, Fabio ;
- Hofmann Elizondo, Urs ;
- Bednarsek, Nina ;
- Chaabane, Sonia ;
- de Weerd, Catharina ;
- Peijnenburg, Katja T.C.A. ;
- Schiebel, Ralf ;
- Vogt, Meike
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES22C03, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Calleja, Maria Ll ;
- Heins, Lena ;
- Hrabe de Angelis, Isabella ;
- Weber, Jens ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES22C06, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Calleja, Maria Ll ;
- Heins, Lena ;
- Hrabe de Angelis, Isabella ;
- Weber, Jens ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES22C04, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Calleja, Maria Ll ;
- Heins, Lena ;
- Hrabe de Angelis, Isabella ;
- Weber, Jens ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf
This dataset contains the validated master track of the S/Y Eugen Seibold during expedition ES22C05, with a time resolution of about 10 seconds. This master track can be used as reference for further expedition data. For creating the master track, the 1-second resolution raw data acquired by the GPS position sensor on board S/Y Eugen Seibold were processed, averaging latitude and longitude within equidistant 10-second intervals. Quality control was performed visually and by checking the maximum speed calculated between neighbouring positions. In case of unrealistically high speeds, data points have been removed.
Authors
- Walter, David ;
- Slagter, Hans A ;
- Aardema, Hedy M ;
- Calleja, Maria Ll ;
- Heins, Lena ;
- Hrabe de Angelis, Isabella ;
- Dragoneas, Antonis ;
- Pöhlker, Christopher ;
- Schiebel, Ralf