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        <title>Piment Noir Wiki - en:cs</title>
        <description>Piment Noir Wiki</description>
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        <item>
            <title>k-nn_multiple_imputation</title>
            <link>https://www.wiki.piment-noir.org/doku.php/en:cs:k-nn_multiple_imputation?rev=1716816863&amp;do=diff</link>
            <description>Definitions

	*  $A$ and $B$ two sets, $g: A \longrightarrow B$ a function:
		*  $g$ is injective $\iff \forall x, y \in A, f(x) =_{B} f(y) \implies x =_{A} y$
		*  $g$ is surjective $\iff \forall y \in B, \exists x \in A, y =_{B} f(x)$ 
		*  $g$ is bijective $\iff g$ is injective and  surjective $\iff \forall y \in B, \exists! x \in A, y =_{B} f(x) \iff \exists g^{-1}: B \longrightarrow A, g \circ g^{-1} = id_A \land g^{-1} \circ g = id_B$
		*  Subset $g$ image : $A^{\prime} \subset A, g(A^{\pr…</description>
            <author>anonymous@undisclosed.example.com (Anonymous)</author>
            <pubDate>Mon, 27 May 2024 13:34:23 +0000</pubDate>
        </item>
        <item>
            <title>modelling_multi-phased_electrical_system_interconnexion</title>
            <link>https://www.wiki.piment-noir.org/doku.php/en:cs:modelling_multi-phased_electrical_system_interconnexion?rev=1713465581&amp;do=diff</link>
            <description>Modelling multi-phased AC electrical system interconnexion

Quick and dirty mathematics background and rationale

We suppose that all the multi-phased electrical systems are properly balanced: $ \forall n \in \{1,2\}; Iph_{n} = Iph_{n+1} $. 

Let&#039;s call $ A = (p_{a}, V_{a}, I_{a}, Iph_{a}) $ and $ B = (p_{b}, V_{b}, I_{b}, Iph_{b}) $ two multi-phased electrical systems where $ p_{a},p_{b} \in \mathbb{N} $$ V_{a}, V_{b} \in \mathbb{N} $$ I_{a}, I_{b} \in \mathbb{N} $$ Iph_{a}, Iph_{b} \in \mathbb…</description>
            <author>anonymous@undisclosed.example.com (Anonymous)</author>
            <pubDate>Thu, 18 Apr 2024 18:39:41 +0000</pubDate>
        </item>
        <item>
            <title>quality_report</title>
            <link>https://www.wiki.piment-noir.org/doku.php/en:cs:quality_report?rev=1640625925&amp;do=diff</link>
            <description>Quality at SAP

SAP corporation is an international software company that have developed its own requirements regarding the quality of products it develop, maintain and support. Some of them comes from the ISO or other quality organisation around the world but SAP as a world leading company in software development have developed its owns over time.</description>
            <author>anonymous@undisclosed.example.com (Anonymous)</author>
            <pubDate>Mon, 27 Dec 2021 17:25:25 +0000</pubDate>
        </item>
        <item>
            <title>tp-link_tl-wa901n_nd_v3_multiple_ssid_and_multiple_vlan</title>
            <link>https://www.wiki.piment-noir.org/doku.php/en:cs:tp-link_tl-wa901n_nd_v3_multiple_ssid_and_multiple_vlan?rev=1640625925&amp;do=diff</link>
            <description>Example configuration

The LAN is considered DHCP powered and the TP-Link is OpenWRT powered.

This configuration is for two tagged VLANs to isolate two SSIDs.


--- 8&lt; --- /etc/config/network
...
config interface &#039;lan&#039;                                                                               
        option ifname &#039;eth0&#039;                                                                                                                                 
        option proto &#039;dhcp&#039;                …</description>
            <author>anonymous@undisclosed.example.com (Anonymous)</author>
            <pubDate>Mon, 27 Dec 2021 17:25:25 +0000</pubDate>
        </item>
        <item>
            <title>web_applications_threats_modeling</title>
            <link>https://www.wiki.piment-noir.org/doku.php/en:cs:web_applications_threats_modeling?rev=1640625925&amp;do=diff</link>
            <description>Introduction

The whole purpose of this draft is to propose an assessment model for each threat class.

We will follow the OWASP top ten list. 

Threats

Threats class: A1 injection

Each web applications has a finite set of visibles parameters being in forms, $ \mathcal{P} = \{p_{1},\dots,p_{n}\}, \, n \in \mathbb{N} $$ p_{i} $$ \mathcal{P} $$ \mathcal{P} $$ \mathcal{L} $$ \{l_{1},\dots,l_{p}\}, \, p \in \mathbb{N} $$ l_{i} $$ p_{i} $</description>
            <author>anonymous@undisclosed.example.com (Anonymous)</author>
            <pubDate>Mon, 27 Dec 2021 17:25:25 +0000</pubDate>
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