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5,121 to 5,130 of 5,165 Results
ZIP Archive - 80.9 MB - MD5: 94b3ac357673a53909cea8365eddb6b0
The flow cytometry files that include the fluorescence and scatter values for all of the triggered events. These have been compressed into a single zip archive containing all the flow cytometry files from the study.
ZIP Archive - 48.3 GB - MD5: 178e3cb05f74202eb7faa1b395eb4ee7
Images of particles that fell within gating strategy. These have been compressed into a single zip archive containing all the image files from the study.
Plain Text - 1.4 KB - MD5: 2fe557bdc6f423bcda0b9e95e32f556a
ReadMe file containing descriptive information about the files in this dataset.
Tabular Data - 586.9 KB - 30 Variables, 2365 Observations - UNF:6:A3dKuAkyNYLCjtT2Ky8Kkg==
Summary statistics of each gate in each sample
Aug 11, 2025 - Applied Ocean Physics & Engineering
Michel, Anna, 2025, "Spatial mapping of dissolved methane using an in situ sensor in Puget Sound", https://doi.org/10.26027/DATAZAL2SC, MBLWHOI Library Dataverse, V1
Release of methane, as gas bubbles or in the dissolved phase, from the seafloor has been observed in coastal waters (<200 m) and deep ocean basins (>1000 m). Methane dissolution within the water column affects the geochemistry of the surrounding water, leading to localized oxygen loss and ocean acidification. Traditional methods for detecting and q...
Plain Text - 1020.2 KB - MD5: dff6531675f5eea0b641c93c3997fae4
This file contains the Date, Time, and methane concentration measured in uatm.
Adobe PDF - 63.4 KB - MD5: 016ad2a114237047a9711f8e0fa01cc5
ReadMe file describing the other files in this dataset.
Plain Text - 86.0 MB - MD5: 75fb26cdaca8d1495c56c91ef299567d
Includes the data collected on the CTD rosette on R/V Thomas G. Thompson cruise TN410 used in the related publication.
Unknown - 86.0 MB - MD5: c46904b29ae33687d85b94dbc60257a7
Header data for TN410_CTD02_CTD_Data.txt data file.
Jul 21, 2025 - Applied Ocean Physics & Engineering
Jason Kapit; Farr, Norman; Schmitt, Raymond, 2025, "A Refractometer for Measuring Thermohaline Density Microstructure in the Ocean", https://doi.org/10.26027/DATAVI1X45, MBLWHOI Library Dataverse, V1, UNF:6:epQsmNnadTTL3W7CWhGEyA== [fileUNF]
Here we report an optical sensor for measuring millimeter-scale thermohaline density variations in the ocean. The instrument is based on a fiber Fabry-Perot white light interferometer which can resolve the refractive index of water to better than 2 x 10-8 within a sample volume smaller than 1 mm3 at a sample rate of 500 Hz. This equates to detectab...
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