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authorPrefetch2022-12-17 18:19:26 +0100
committerPrefetch2022-12-17 18:20:50 +0100
commita39bb3b8aab1aeb4fceaedc54c756703819776c3 (patch)
treeb21ecb4677745fb8c275e54f2ad9d4c2e775a3d8 /source/know/concept/debye-length
parent49cc36648b489f7d1c75e1fde79f0990e08dd514 (diff)
Rewrite "Lagrange multiplier", various improvements
Diffstat (limited to 'source/know/concept/debye-length')
-rw-r--r--source/know/concept/debye-length/index.md2
1 files changed, 1 insertions, 1 deletions
diff --git a/source/know/concept/debye-length/index.md b/source/know/concept/debye-length/index.md
index e226ad9..5961c4f 100644
--- a/source/know/concept/debye-length/index.md
+++ b/source/know/concept/debye-length/index.md
@@ -123,7 +123,7 @@ This treatment only makes sense
if the plasma is sufficiently dense,
such that there is a large number of particles
in a sphere with radius $$\lambda_D$$.
-This corresponds to a large [Coulomb logarithm](/know/concept/coulomb-logarithm/) $$\ln\!(\Lambda)$$:
+This corresponds to a large [Coulomb logarithm](/know/concept/coulomb-logarithm/) $$\ln(\Lambda)$$:
$$\begin{aligned}
1 \ll \frac{4 \pi}{3} n_0 \lambda_D^3 = \frac{2}{9} \Lambda