16,511 to 16,520 of 17,318 Results
Tab-Separated Values - 20.2 KB - SHA-256: af5cdad1c3e4135004a898068c95dcfe2913cb30770e690fc2e1a5723c6c00ea
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Unknown - 46.7 MB - SHA-256: 0e56eabc69036bf3808ef1ace1303f9bdba89f9efffe075d6858e34bf036f1d7
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Unknown - 1.1 MB - SHA-256: 3ad43e460222bbe989071bea238264e330ef5b323e82dd560ef3a8cb3b0b184a
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Tab-Separated Values - 20.1 KB - SHA-256: 25d30ee5027f4efea4e80100e69c716d625f9abce6fb69e88b0f3003aed6cde2
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Unknown - 61.4 MB - SHA-256: 787ec51dd596f5d75f2fd22b4e52c4d52e642d073d18ab42135ab01deb9a2a42
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Unknown - 1.3 MB - SHA-256: 6dc19f8fc75059308bc3a567555aff67c31b9f90cf6906f4c8f4e7bec738969f
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Tab-Separated Values - 25.7 KB - SHA-256: 6ba60e2f73d403beecd5e50afa8affa824e21150558f0b333e209dc4427604c8
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Nov 20, 2020 - CLaMS Dataverse
Grooß, Jens-Uwe, 2020, "Replication Data for: Trajectory Data Set from the study on the 2017 BC wildfire detection", https://doi.org/10.26165/JUELICH-DATA/ATC1MZ, Jülich DATA, V1
These are trajectory data calculated for the study by Hooghiem et al. (Atmos Chem. Phys. , 2020). In this study, wildfire-influenced airmasses were observed and the trajectories were used to trace back the origin. |
Nov 20, 2020 -
Replication Data for: Trajectory Data Set from the study on the 2017 BC wildfire detection
Network Common Data Form - 33.3 KB - SHA-256: 4f7ce89a44e789735921a27cefb9bbda2a50d4c887cc896c09347b1eb1943859
Trajectory from observation on 4 Sep |
Nov 20, 2020 -
Replication Data for: Trajectory Data Set from the study on the 2017 BC wildfire detection
Network Common Data Form - 33.3 KB - SHA-256: 0adb333fbb3678849ad03416b5e36685e6633f70a4a54465d0354887827a495c
Trajectory from observation on 5 Sep |