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A Novel Approach Combining GRACE(-FO) and Altimetry Reveals a Recent East-to-West Shift in the Slowdown of Glacier-Scale Mass Loss in the Greenland Ice Sheet. <i>JGR: Solid Earth 130(5)</i>. <a href=\"https://dx.doi.org/10.1029/2024JB030862\" target=\"_blank\">https://dx.doi.org/10.1029/2024JB030862</a>","StandardTitle":"A Novel Approach Combining GRACE(-FO) and Altimetry Reveals a Recent East-to-West Shift in the Slowdown of Glacier-Scale Mass Loss in the Greenland Ice Sheet","AuthorsString":"Wu, H.T. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":362442,"RR":"<b>Simons, W.; Broerse, T.; Shen, L.; Kleptsova, O.; Nijholt, N.; Hooper, A.; Pietrzak, J.; Morishita, Y.; Naeije, M.; Lhermitte, S.; Herman, M.; Sarsito, D.A.; Efendi, J.; Sofian; Govers, R.; Vigny, C.; Abidin, H.Z.; Pramono, G.H.; Nugroho, C.; Visser, P.; Riva, R.</b> (2022). 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An atypical shallow Mw 5.3, 2021 earthquake in the Western Corinth Rift (Greece). <i>JGR: Solid Earth 127(9)</i>: e2022JB024221. <a href=\"https://dx.doi.org/10.1029/2022jb024221\" target=\"_blank\">https://dx.doi.org/10.1029/2022jb024221</a>","StandardTitle":"An atypical shallow Mw 5.3, 2021 earthquake in the Western Corinth Rift (Greece)","AuthorsString":"Zahradník, J. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":338843,"RR":"<b>Jiang, Y.; Wu, X.; van den Broeke, M.R.; Kuipers Munneke, P.; Simonsen, S.B.; van der Wal, W.; Vermeersen, B.L.A.</b> (2021). Assessing global present‐day surface mass transport and glacial isostatic adjustment From inversion of geodetic observations. <i>JGR: Solid Earth 126(5)</i>: e2020JB020713. <a href=\"https://doi.org/10.1029/2020jb020713\" target=\"_blank\">https://doi.org/10.1029/2020jb020713</a>","StandardTitle":"Assessing global present‐day surface mass transport and glacial isostatic adjustment From inversion of geodetic observations","AuthorsString":"Jiang, Y. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":330763,"RR":"<b>Qian, Y.; Roberts, A.P.; Liu, Y.; Hu, P.; Zhao, X.; Heslop, D.; Grant, K.M.; Rohling, E.J.; Hennekam, R.; Li, J.</b> (2020). Assessment and integration of bulk and component‐specific methods for identifying mineral magnetic assemblages in environmental magnetism. <i>JGR: Solid Earth 125(8)</i>: e2019JB019024. <a href=\"https://doi.org/10.1029/2019jb019024\" target=\"_blank\">https://doi.org/10.1029/2019jb019024</a>","StandardTitle":"Assessment and integration of bulk and component‐specific methods for identifying mineral magnetic assemblages in environmental magnetism","AuthorsString":"Qian, Y. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":361214,"RR":"<b>Salaree, A.; Huang, Y.</b> (2023). Excitation of back‐arc tsunamis from megathrust ruptures: theory and application to the Sea of Japan. <i>JGR: Solid Earth 128(2)</i>: e2022JB024750. <a href=\"https://dx.doi.org/10.1029/2022jb024750\" target=\"_blank\">https://dx.doi.org/10.1029/2022jb024750</a>","StandardTitle":"Excitation of back‐arc tsunamis from megathrust ruptures: theory and application to the Sea of Japan","AuthorsString":"Salaree, A.; Huang, Y.","BibLvlCode":"AS"},{"BRefID":337430,"RR":"<b>Mock, D.; Neave, D.A.; Müller, S.; Garbe-Schönberg, D.; Namur, O.; Ildefonse, B.; Koepke, J.</b> (2021). Formation of igneous layering in the lower oceanic crust from the Samail ophiolite, Sultanate of Oman. <i>JGR: Solid Earth 126(1)</i>: e2020JB019573. <a href=\"https://hdl.handle.net/10.1029/2020JB019573\" target=\"_blank\">https://hdl.handle.net/10.1029/2020JB019573</a>","StandardTitle":"Formation of igneous layering in the lower oceanic crust from the Samail ophiolite, Sultanate of Oman","AuthorsString":"Mock, D. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":355161,"RR":"<b>Simon, K.M.; Riva, R.E.M.; Broerse, T.</b> (2022). Identifying geographical patterns of transient deformation in the geological sea level record. <i>JGR: Solid Earth 127(7)</i>: e2021JB023693. <a href=\"https://dx.doi.org/10.1029/2021jb023693\" target=\"_blank\">https://dx.doi.org/10.1029/2021jb023693</a>","StandardTitle":"Identifying geographical patterns of transient deformation in the geological sea level record","AuthorsString":"Simon, K.M.; Riva, R.E.M.; Broerse, T.","BibLvlCode":"AS"},{"BRefID":353256,"RR":"<b>Gobron, K.; Rebischung, P.; Van Camp, M.; Demoulin, A.; de Viron, O.</b> (2021). Influence of aperiodic non-tidal atmospheric and oceanic loading deformations on the stochastic properties of global GNSS vertical land motion time series. <i>JGR: Solid Earth 126(9)</i>: e2021JB022370. <a href=\"https://dx.doi.org/10.1029/2021JB022370\" target=\"_blank\">https://dx.doi.org/10.1029/2021JB022370</a>","StandardTitle":"Influence of aperiodic non-tidal atmospheric and oceanic loading deformations on the stochastic properties of global GNSS vertical land motion time series","AuthorsString":"Gobron, K. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":311480,"RR":"<b>Vanneste, K.; Wils, K.; Van Daele, M.</b> (2018). Probabilistic evaluation of fault sources based on paleoseismic evidence from mass-transport deposits: the example of Aysen Fjord, Chile. <i>JGR: Solid Earth 123(11)</i>: 9842-9865. <a href=\"https://dx.doi.org/10.1029/2018JB016289\" target=\"_blank\">https://dx.doi.org/10.1029/2018JB016289</a>","StandardTitle":"Probabilistic evaluation of fault sources based on paleoseismic evidence from mass-transport deposits: the example of Aysen Fjord, Chile","AuthorsString":"Vanneste, K. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":296024,"RR":"<b>Van Camp, M.; de Viron, O.; Scherneck, H.-G.; Hinzen, K.-G.; Williams, S.D.P.; Lecocq, T.; Quinif, Y.; Camelbeeck, T.</b> (2011). Repeated absolute gravity measurements for monitoring slow intraplate vertical deformation in western Europe. <i>JGR: Solid Earth 116(B8)</i>: 13. <a href=\"https://dx.doi.org/10.1029/2010JB008174\" target=\"_blank\">https://dx.doi.org/10.1029/2010JB008174</a>","StandardTitle":"Repeated absolute gravity measurements for monitoring slow intraplate vertical deformation in western Europe","AuthorsString":"Van Camp, M. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":329401,"RR":"<b>Wils, K.; Van Daele, M.; Kissel, C.; Moernaut, J.; Schmidt, S.; Siani, G.; Lastras, G.</b> (2020). Seismo‐turbidites in Aysén Fjord (southern Chile) reveal a complex pattern of rupture modes along the 1960 megathrust earthquake segment. <i>JGR: Solid Earth 125(9)</i>: e2020JB019405. <a href=\"https://dx.doi.org/10.1029/2020jb019405\" target=\"_blank\">https://dx.doi.org/10.1029/2020jb019405</a>","StandardTitle":"Seismo‐turbidites in Aysén Fjord (southern Chile) reveal a complex pattern of rupture modes along the 1960 megathrust earthquake segment","AuthorsString":"Wils, K. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":323242,"RR":"<b>Slobbe, C.; Klees, R.; Farahani, H.H.; Huisman, L.; Alberts, B.; Voet, P.; De Doncker, F.</b> (2019). 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The potential of marine ferromanganese nodules from Eastern Pacific as recorders of Earth's magnetic field changes during the past 4.7 Myr: a geochronological study by magnetic scanning and authigenic <sup>10</sup>Be/<sup>9</sup>Be dating. <i>JGR: Solid Earth 125(7)</i>: e2019JB018639. <a href=\"https://dx.doi.org/10.1029/2019jb018639\" target=\"_blank\">https://dx.doi.org/10.1029/2019jb018639</a>","StandardTitle":"The potential of marine ferromanganese nodules from Eastern Pacific as recorders of Earth's magnetic field changes during the past 4.7 Myr: a geochronological study by magnetic scanning and authigenic <sup>10</sup>Be/<sup>9</sup>Be dating","AuthorsString":"Yi, L. <i>et al.</i>","BibLvlCode":"AS"},{"BRefID":331400,"RR":"<b>Simon, K.M.; Riva, R.E.M.</b> (2020). Uncertainty estimation in regional models of long‐term GIA uplift and sea level change: An overview. <i>JGR: Solid Earth 125(8)</i>: e2019JB018983. <a href=\"https://doi.org/10.1029/2019JB018983\" target=\"_blank\">https://doi.org/10.1029/2019JB018983</a>","StandardTitle":"Uncertainty estimation in regional models of long‐term GIA uplift and sea level change: An overview","AuthorsString":"Simon, K.M.; Riva, R.E.M.","BibLvlCode":"AS"}],"BEntOpen":264113,"BEntPrivate":null,"availability":null,"litstyles":null,"thespers":null,"arch2discl":805,"SERpubls":null,"MONpubls":null,"pictures":[],"thestermsPath":null,"thestermsASFA":null,"taxtermsASFA":null,"geotermsASFA":null,"collections":null,"conf":null,"proj":null,"Physdatasets":null,"spcols":{"805":{"SpName":"Koninklijk Nederlands Instituut voor Onderzoek der Zee","SpColID":805,"ParSpColID":null,"TopParID":null,"ShortName":"NIOZ","URLLocation":"https://www.vliz.be/imis/nioz/imis.php?refid=","LibID":2779,"OpenRepoFlag":1,"SpTypID":1,"TopParIDNotWebsite":null,"SpColPath":"NIOZ"}},"doi":null,"publs":[{"PublID":16420,"PublName":"AMER GEOPHYSICAL UNION","InsID":null,"PersID":null,"INBOID":null,"OrderNr":1}],"serparttypes":["A"],"monauthors":null,"MParts":null,"SParts":null,"hLibs":null,"langs":null,"urls":null,"thesterms":null,"taxterms":null,"geoterms":null,"othterms":null,"asfacodes":null,"asfa2codes":null,"thestermsFRIS":null,"taxtermsFRIS":null,"geotermsFRIS":null,"othtermsFRIS":null,"resmessage":"","complete":1,"sessions":{"newSesName":"T'Jampens, Roeland, R.","newSesDate":{"date":"2016-10-07 15:17:03.940000","timezone_type":3,"timezone":"Europe/Brussels"},"updSesName":"Lust, Heike, H.","updSesDate":{"date":"2019-03-18 10:33:30.697000","timezone_type":3,"timezone":"Europe/Brussels"}}}
