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author | Prefetch | 2021-05-27 20:46:01 +0200 |
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committer | Prefetch | 2021-05-27 20:46:01 +0200 |
commit | 4780106a4f191c41d3b82ca9d1327a1c95a72055 (patch) | |
tree | c6a2bd91c5ab9721a008078cafd9e36e608395a0 /content/know/concept/bernoullis-theorem | |
parent | d3b96730bd01263098bbb96c15148878e5633a04 (diff) |
Expand knowledge base
Diffstat (limited to 'content/know/concept/bernoullis-theorem')
-rw-r--r-- | content/know/concept/bernoullis-theorem/index.pdc | 9 |
1 files changed, 2 insertions, 7 deletions
diff --git a/content/know/concept/bernoullis-theorem/index.pdc b/content/know/concept/bernoullis-theorem/index.pdc index 5ff5225..fbabff2 100644 --- a/content/know/concept/bernoullis-theorem/index.pdc +++ b/content/know/concept/bernoullis-theorem/index.pdc @@ -27,13 +27,8 @@ $$\begin{aligned} = \va{g} - \frac{\nabla p}{\rho} \end{aligned}$$ -Assuming that $\va{v}$ and $\va{g}$ are constant in $t$, -it becomes clear that a higher $\va{v}$ requires a lower $p$: - -$$\begin{aligned} - \frac{1}{2} \nabla \va{v}^2 - = \va{g} - \frac{\nabla p}{\rho} -\end{aligned}$$ +Assuming that $\va{v}$ is constant in $t$, +it becomes clear that a higher $\va{v}$ requires a lower $p$. ## Simple form |