Updated 9.1.10-9.1.15

astrosander edited
revision #9852 parent #9073 GitHub 13df3ac ← older newer →
@@ -89,7 +89,7 @@
$$\frac{dV}{dt} = \pi r(t)^2 v_0$$
From Geometry,
−$$r(t) = v_0 t \cdot tg(\alpha)$$
+$$r(t) = v_0 t \cdot \tan\alpha $$
By definition, the velocity of incoming water is equal to
$$v = \frac{dV}{sdt}$$
unchanged lines 37