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| author | Claudius "keldu" Holeksa <mail@keldu.de> | 2025-11-11 21:13:47 +0100 |
|---|---|---|
| committer | Claudius "keldu" Holeksa <mail@keldu.de> | 2025-11-11 21:13:47 +0100 |
| commit | 2dc911de55794419182b3df7c8d3fd19b131ca10 (patch) | |
| tree | e613f9a1efa3b27bee04fccb1e3d9a25b76701b8 /typst | |
| parent | 0287bed83df93f10cdda25e4e14a48105f57d11b (diff) | |
| download | phd-fluid_mechanics_report-2dc911de55794419182b3df7c8d3fd19b131ca10.tar.gz | |
progress
Diffstat (limited to 'typst')
| -rw-r--r-- | typst/main.typ | 2 |
1 files changed, 1 insertions, 1 deletions
diff --git a/typst/main.typ b/typst/main.typ index 1162980..51c8147 100644 --- a/typst/main.typ +++ b/typst/main.typ @@ -142,7 +142,7 @@ pore. While bridiging occurs when multiple particles arrive at a passage at the Aggregation involves the deposition of particles gradually narrowing the channel. And while sieving and bridging results from purely mechanical forces aggregation results from electrostatic interactions between particles, the fluid and surface boundaries at micrometer scales@laurez2025bridging. -The arches resulting from clogging are often inherently unstable, but with the progression of aggregation arrive at more less unstable states. +The arches resulting from clogging are often inherently unstable, but with the progression of aggregation arrive at less unstable states. // Insert png |
