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image/x-panasonic-raw - 1.4 GB -
MD5: 9aeeac6ea7405245748ebda7eb489f27
LC-MS analysis of whole blood sample on SAS without plasma separation membrane |
image/x-panasonic-raw - 1.4 GB -
MD5: dd0de57f40c86dab0571ba8e3e165308
LC-MS analysis of whole blood sample on SAS without plasma separation membrane |
image/x-panasonic-raw - 1.4 GB -
MD5: b2985b80ff5d62bf23e04f45be842b80
LC-MS analysis of whole blood sample on SAS without plasma separation membrane |
image/x-panasonic-raw - 1.3 GB -
MD5: 742c7b5cd036d160839e5b832f49824f
LC-MS analysis of whole blood sample on SAS with plasma separation membrane |
image/x-panasonic-raw - 1.3 GB -
MD5: 972f1ae67b94ee9e3c1737d367eaae3d
LC-MS analysis of whole blood sample on SAS with plasma separation membrane |
image/x-panasonic-raw - 1.3 GB -
MD5: 13324372a1653037fb5827e50e32252b
LC-MS analysis of whole blood sample on SAS with plasma separation membrane |
Mar 5, 2026
Biswas, Uddalak; Galland, Olivier; Carlson, Andreas, 2026, "Supporting Data for: Laponite® RD and Hydroxy-ethyl Cellulose as host and magma analogue to simulate a wide range of rheological combinations in the volcanic plumbing system", https://doi.org/10.18710/WXIYJQ, DataverseNO, V1
Laponite® RD and Hydroxy-ethyl Cellulose are two complex rheological materials. We measured several rheological parameters of these two materials using a rheometer to characterise their rheological behaviours. This dataset contains all measurements in the form of .csv file. |
Plain Text - 7.7 KB -
MD5: 2c44244f8e4f789890815822e9870806
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Comma Separated Values - 39.3 KB -
MD5: 64701cb981a4c67199d6c5006cd1661d
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Comma Separated Values - 20.3 KB -
MD5: 641cdfbf99abdea184624c7671acf51b
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