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-rw-r--r--content/know/concept/stokes-law/index.pdc6
1 files changed, 4 insertions, 2 deletions
diff --git a/content/know/concept/stokes-law/index.pdc b/content/know/concept/stokes-law/index.pdc
index acc98af..dee40d6 100644
--- a/content/know/concept/stokes-law/index.pdc
+++ b/content/know/concept/stokes-law/index.pdc
@@ -356,8 +356,10 @@ This is an equation for the **terminal velocity** $U_t$,
which we find to be as follows:
$$\begin{aligned}
- U_t
- = \frac{2 a^2 (\rho_s - \rho_f) g_0}{9 \eta}
+ \boxed{
+ U_t
+ = \frac{2 a^2 (\rho_s - \rho_f) g_0}{9 \eta}
+ }
\end{aligned}$$
The falling sphere will accelerate until $U_t$,