18,591 to 18,600 of 18,791 Results
Plain Text - 298.4 KB -
MD5: e8157ef7bad821fec51972a7a8cb5610
|
Plain Text - 2.5 MB -
MD5: 6812b2defc9fca77b83cd407ba372de8
|
Plain Text - 619.5 KB -
MD5: d96947be140b7b88f45c815b02826daa
|
Plain Text - 608.5 KB -
MD5: 4b8f378f6ba86531ee9518d10901e367
|
Plain Text - 614.2 KB -
MD5: 66fe8d4a920fc8d654b96ac37ba362c1
|
Jan 17, 2023 - Institute of Microbiology
Funaro, Daniele Pasquale, 2023, "Particle area analysis of crystals formed via urease-dependent, microbially induced calcite precipitation (MICP) in a microfluidic cell", https://doi.org/10.18419/DARUS-3298, DaRUS, V1
Note: This dataset belongs to the master’s thesis “Investigation of urease-dependent, microbially induced calcite precipitation by Sporosarcina pasteurii” (see below). The chapters of interest regarding this dataset are chapter 2.7 (method), 3.5 (results) and 4.5 (discussion). Folder content: This dataset is stored in three separate folders. The re... |
Jan 17, 2023 -
Particle area analysis of crystals formed via urease-dependent, microbially induced calcite precipitation (MICP) in a microfluidic cell
ZIP Archive - 8.3 GB -
MD5: 7f1bf76eb52f2f2db51e7655494f56a8
Images and results of the particle analysis of the crystals formed by MICP due to 1,5 M urea and CaCl2 |
Jan 17, 2023 -
Particle area analysis of crystals formed via urease-dependent, microbially induced calcite precipitation (MICP) in a microfluidic cell
ZIP Archive - 6.8 GB -
MD5: 688dbc512fcbf76431df32ffc23ba69a
Images and results of the particle analysis of the crystals formed by MICP due to 3 M urea and CaCl2 |
Jan 17, 2023 -
Particle area analysis of crystals formed via urease-dependent, microbially induced calcite precipitation (MICP) in a microfluidic cell
Adobe PDF - 89.9 MB -
MD5: 4494fc1cfa7752a15a20ee0b81aeded3
Master's thesis |
Jan 17, 2023 -
Particle area analysis of crystals formed via urease-dependent, microbially induced calcite precipitation (MICP) in a microfluidic cell
ZIP Archive - 6.0 KB -
MD5: c459192cb10df97f967bb72d3a984cb9
Used scripts to analyze the particle areas of the formed crystals via MICP |