minor fixes have been carried out

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Krishna
2024-09-26 21:24:07 -05:00
parent c95f5efd91
commit 9b116665c4

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@@ -221,6 +221,11 @@ $$
||\vec{F}_d||=6\pi\eta Rv ||\vec{F}_d||=6\pi\eta Rv
$$ $$
Furthermore, the terminal velocity of an object is when its weight is equal in magnitude and fully opposite in direction to its drag:
$$
||\vec{F}_\mathrm{net}||=mg-||\vec{F}_D||=m\vec{a}=0
$$
# Circular motion # Circular motion
An object that moves in a circle at a constant speed $||\vec{v}||$ experiences **uniform circular motion**. The most important part of that sentence is the constant speed part; the measurement $||\vec{v}||$ is reference to the center of the circle. An object that moves in a circle at a constant speed $||\vec{v}||$ experiences **uniform circular motion**. The most important part of that sentence is the constant speed part; the measurement $||\vec{v}||$ is reference to the center of the circle.
@@ -273,7 +278,7 @@ Additionally - if the net force experienced by an object at any time $t$ is expr
$$ $$
\Delta p = J = \int_{t_1}^{t_2}{F(t)\mathrm{d}t} \Delta p = J = \int_{t_1}^{t_2}{F(t)\mathrm{d}t}
$$ $$
$j$ is also something called the *impulse.* $J$ is also something called the *impulse.*