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authorClaudius "keldu" Holeksa <mail@keldu.de>2025-11-12 10:45:51 +0100
committerClaudius "keldu" Holeksa <mail@keldu.de>2025-11-12 10:45:51 +0100
commit8e1fbdff6f18e3df53f731343f579609cdb85c08 (patch)
tree0bbb03e4b6e5f4486b1180343967c97a6d690866
parent515fffbb013c0cfc67b1d45ae0630cfe5dfab081 (diff)
downloadphd-fluid_mechanics_report-8e1fbdff6f18e3df53f731343f579609cdb85c08.tar.gz
progress
-rw-r--r--typst/main.typ8
1 files changed, 4 insertions, 4 deletions
diff --git a/typst/main.typ b/typst/main.typ
index fa68f02..3032a4b 100644
--- a/typst/main.typ
+++ b/typst/main.typ
@@ -124,10 +124,10 @@ $
where according to Proudman and Pearson@proudman_pearson_1957 at a Reynolds number of 0.05 the predicted drag is two percent lower
than the possibly more correct value by Proudman and Pearson@proudman_pearson_1957.
-#math.equation(
-block: true,
-$ F = F_S ( 1 + (3/8)"Re" + (9/40)("Re")^2 * (log "Re" + gamma + (5/3) log 2 - (323/360)) + (27/80)*"Re"^3 log "Re" ) $
-)
+//#math.equation(
+//block: true,
+//$ F = F_S ( 1 + (3/8)"Re" + (9/40)("Re")^2 * (log "Re" + gamma + (5/3) log 2 - (323/360)) + (27/80)*"Re"^3 log "Re" ) $
+//)
//Using spherical coordinates $(r,theta,phi.alt)$ and no external force we receive the velocity components