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author | Prefetch | 2021-05-28 15:27:37 +0200 |
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committer | Prefetch | 2021-05-28 15:27:37 +0200 |
commit | 9657833b115c8a61509295d2296c6f89e81fd219 (patch) | |
tree | 957ac6c1eb897c13939d849513508145d7d258f7 /content/know/concept/partial-fraction-decomposition/index.pdc | |
parent | 4780106a4f191c41d3b82ca9d1327a1c95a72055 (diff) |
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diff --git a/content/know/concept/partial-fraction-decomposition/index.pdc b/content/know/concept/partial-fraction-decomposition/index.pdc index 1f4207f..7a3847b 100644 --- a/content/know/concept/partial-fraction-decomposition/index.pdc +++ b/content/know/concept/partial-fraction-decomposition/index.pdc @@ -58,3 +58,10 @@ $$\begin{aligned} And then, using the linear independence of $x^0, x^1, x^2, ...$, solving a system of $m$ equations to find all $c_{1,1}, ..., c_{1,m}$. + + + +## References +1. O. Bang, + *Applied mathematics for physicists: lecture notes*, 2019, + unpublished. |