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authorAmlal El Mahrouss <amlal@nekernel.org>2026-02-22 15:33:14 +0100
committerAmlal El Mahrouss <amlal@nekernel.org>2026-02-22 15:33:14 +0100
commit29991414330b6690dc178e8d2f725cea8591142a (patch)
tree132de95d38f16418747bbc86d89c3d38dfa12f46
parentc7146b149987572f53566656ac2d4027ace85d22 (diff)
chore: update wg04 paper with more definition.
Signed-off-by: Amlal El Mahrouss <amlal@nekernel.org>
-rw-r--r--source/wg04/paper.tex2
1 files changed, 1 insertions, 1 deletions
diff --git a/source/wg04/paper.tex b/source/wg04/paper.tex
index e983b2c..55954bf 100644
--- a/source/wg04/paper.tex
+++ b/source/wg04/paper.tex
@@ -47,7 +47,7 @@ We assume $x, y, z \in \mathbb{R}, \quad n \in \mathbb{N}, \quad \cos(\pi) < a <
Where $\Delta t \in \mathbb{R}$ if and only if $0 < \Delta t$.
\subsection{DEFINITION OF THE K-EQUATION:}
\begin{equation}
- K_{n}(u_{n}, a, b) \coloneqq \int_{a}^{b} S_{n}(u_{n}) \quad d \cdot u_{n}, \quad \forall u_{n} \in \mathbb{R}
+ K_{n}(u_{n}, a, b) \coloneqq \int_{a}^{b} S_{n}(u_{n}) \quad d \cdot u_{n}, \quad \forall u_{n}, S_{n}(u_{n}) \in \mathbb{R}
\end{equation}
Where $K_{n} > 0$ and $S_{n}(u_{n})$ is an A-Function of index $n$ at $u$.