Over the past decade the analysis of sedimentary cyclic rhythmites of tidal origin, i.e., stacked thin beds or laminae usually of sandstone, siltstone, and mudstone that display periodic variations in thickness reflecting a strong tidal influence on sedimentation, has provided information on Earth's paleorotation and the evolving lunar orbit for Precambrian time (before 540 Ma). Depositional environments of tidal rhythmites range from estuarine to tidal delta, with a wave-protected, distal ebb tidal delta setting being particularly favorable for the deposition and preservation of long, detailed rhythmite records. The potential sediment load of nearshore tidal currents and the effectiveness of the tide as an agent of sediment entrainment and...
Due to tidal interactions in the Earth-Moon system, the spin of the Earth slows down and the Moon dr...
International audienceThe theoretical prediction of Earth-Moon dynamics in deep geologic time is ham...
Tidal rhythmites/bundles are facies that can encode process-related depositional information and lun...
Over the past decade the analysis of sedimentary cyclic rhythmites of tidal origin, i.e., stacked th...
Abstract. Over the past decade the analysis of sedi-mentary cyclic rhythmites of tidal origin, i.e.,...
Abstract: Sedimentary rhythmites of siltstone and fine sandstone from late Precambrian (c. 650-800 M...
Over the past decade the study of Precambrian clastic tidal rhythmites - stacked laminae of sandston...
The angular momentum of the Earth‐Moon system was initially dominated by Earth's rotation with a sho...
Paleotidal records obtained from sedimentary tidal rhythmites may be systematically abbreviated and ...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a sho...
The long-term history of the Earth-Moon system as reconstructed from the geological record remains u...
The study of tides from the sedimentary record of tidal rhythmites, applying fast Fourier transform ...
International audienceDue to tidal interactions in the Earth-Moon system, the spin of the Earth slow...
Regardless of one's favorite model for the origin of the Earth-Moon system (fission, coformation, ti...
Due to tidal interactions in the Earth-Moon system, the spin of the Earth slows down and the Moon dr...
International audienceThe theoretical prediction of Earth-Moon dynamics in deep geologic time is ham...
Tidal rhythmites/bundles are facies that can encode process-related depositional information and lun...
Over the past decade the analysis of sedimentary cyclic rhythmites of tidal origin, i.e., stacked th...
Abstract. Over the past decade the analysis of sedi-mentary cyclic rhythmites of tidal origin, i.e.,...
Abstract: Sedimentary rhythmites of siltstone and fine sandstone from late Precambrian (c. 650-800 M...
Over the past decade the study of Precambrian clastic tidal rhythmites - stacked laminae of sandston...
The angular momentum of the Earth‐Moon system was initially dominated by Earth's rotation with a sho...
Paleotidal records obtained from sedimentary tidal rhythmites may be systematically abbreviated and ...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a sho...
The long-term history of the Earth-Moon system as reconstructed from the geological record remains u...
The study of tides from the sedimentary record of tidal rhythmites, applying fast Fourier transform ...
International audienceDue to tidal interactions in the Earth-Moon system, the spin of the Earth slow...
Regardless of one's favorite model for the origin of the Earth-Moon system (fission, coformation, ti...
Due to tidal interactions in the Earth-Moon system, the spin of the Earth slows down and the Moon dr...
International audienceThe theoretical prediction of Earth-Moon dynamics in deep geologic time is ham...
Tidal rhythmites/bundles are facies that can encode process-related depositional information and lun...