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        <dc:date>2021-03-09T11:29:49+00:00</dc:date>
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        <title>teaching:progappchim:game_of_life_conway-2012</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:game_of_life_conway-2012?rev=1615285789&amp;do=diff</link>
        <description>Jeu de la vie de Conway
Game of Life with Python


#!/usr/bin/env python 
# -*- coding: utf-8 -*-
&quot;&quot;&quot;A minimal implementation of Conway&#039;s Game of Life.

source : http://www.exolete.com/code/life
modified by par Jérémie Knoops, BA2 chimie UMONS, 2011-2012
cf. http://fr.wikipedia.org/wiki/Jeu_de_la_vie
&amp; http://en.wikipedia.org/wiki/Conway%27s_Game_of_Life
Each cell&#039;s survival depends on the number of occupied nearest and
next-nearest neighbours (calculated in Grid::step). A living cell dies
of ov…</description>
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        <dc:date>2023-05-03T08:39:20+00:00</dc:date>
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        <title>teaching:progappchim:notions_fondamentales</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:notions_fondamentales?rev=1683095960&amp;do=diff</link>
        <description>Notions fondamentales

Aide mémoire synthétique sur le langage Python.

Règles de base

Ces règles peuvent être testées via le mode interactif de Python (en utilisant la fenêtre “Shell” ou console de l&#039;éditeur Idle ou Idle3 par exemple).</description>
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        <title>teaching:progappchim:codes_presentation</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:codes_presentation?rev=1611853121&amp;do=diff</link>
        <description>Codes de la présentation

Turtle

Cf. la documentation officielle.


#!/usr/bin/python
# -*- coding: UTF-8 -*-

# exemple de base turtle
#
from turtle import *
import sys
import time

reset()
x=-100
y=-100
i=0
while i &lt; 10:
    j=0
    while j &lt;10:
        up()
        goto(x+i*20,y+j*20)
        down()
        fill(1)
        n=0
        while n &lt;4 :
            forward(16)
            left(90)
            n=n+1
        color([i*0.1,j*0.1,0])
        fill(0)
        color(0,0,0)
        j=j+1
 …</description>
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        <title>teaching:progappchim:jupyter</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:jupyter?rev=1654844164&amp;do=diff</link>
        <description>Jupyter, IPython Notebooks et JupyterLab

	*  Jupyter a succédé à IPython Notebook
	*  Jupyter est installé par défaut avec la distribution python Anaconda. C&#039;est la manière la plus adéquate d&#039;utiliser Jupyter.
	*  Sinon, on peut utiliser facilement les notebooks Jupyter sur la plateforme</description>
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        <dc:date>2022-11-15T10:08:25+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>teaching:progappchim:pandas</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:pandas?rev=1668503305&amp;do=diff</link>
        <description>Pandas

Module pour l&#039;analyse de données, pouvant se substituer à l&#039;utilisation d&#039;un tableur. Une différence fondamentale de la librairie pandas avec NumPy, c&#039;est que les tableaux NumPy (NumPy arrays) ont le même type (dtype) pour le tableau entier, tandis que les tableaux pandas (pandas DataFrames) sont caractérisés par un type unique (dtype) par colonne.$X$$x$$P(x)$$X$$x$$x_1, x_2, x_3, ...$$X$$P(x_i)$$X$$x$$P(x)$$x$$x+dx$$P(x)$$x$$P(x) dx$$P(x) dx = P(x \le X &lt; x+dx)$$P(x_i) \ge 0$$x_i$$P(x) …</description>
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        <title>teaching:progappchim:periodical_table_electronegativity</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:periodical_table_electronegativity?rev=1585726012&amp;do=diff</link>
        <description>Vue 3D de l&#039;électronégativité


#!/usr/bin/env python
# -*- coding: utf-8 -*-
&quot;&quot;&quot;
Periodical table
3D view of electronegativity
&quot;&quot;&quot;

from mpl_toolkits.mplot3d import Axes3D
import matplotlib.pyplot as plt
import numpy as np


data = np.array([
[2.2,1,0.9,0.8,0.8,0.8,0.7],
[0,1.6,1.3,1,1,0.9,0.9],
[0,0,0,1.4,1.2,1.3,0],
[0,0,0,1.5,1.3,1.3,0],
[0,0,0,1.6,1.6,1.5,0],
[0,0,0,1.6,2.2,2.4,0],
[0,0,0,1.6,1.9,1.9,0],
[0,0,0,1.8,2.2,2.2,0],
[0,0,0,1.9,2.3,2.2,0],
[0,0,0,1.8,2.2,2.3,0],
[0,0,0,1.9,1.9,2.5…</description>
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        <dc:date>2023-05-02T10:38:45+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>teaching:progappchim:plotly_simple</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:plotly_simple?rev=1683016725&amp;do=diff</link>
        <description>Les bases de Plotly

Plotly (&lt;https://Plot.ly&gt; est une société développant des outils analytiques et de visualisation. La librairie python Plotly permet de créer des graphes dans l&#039;environnement de Jupyter. FIXME : à compléter

Références

	*  plot.ly, le site officiel</description>
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        <dc:date>2023-02-21T14:56:20+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>teaching:progappchim:presentation_principes</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:presentation_principes?rev=1676987780&amp;do=diff</link>
        <description>~~REVEAL transition=convex&amp;controls=1&amp;show_progress_bar=1&amp;build_all_lists=1&amp;open_in_new_window=1~~

Programmer en Python

Généralités

	*  Qu&#039;est-ce qu&#039;un langage de programmation ?
	*  Compilation ou interprétation, ou... ?

Rôle des langages de programmation</description>
    </item>
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        <dc:format>text/html</dc:format>
        <dc:date>2017-02-24T08:51:15+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>teaching:progappchim:suite_de_fibonacci-2</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:suite_de_fibonacci-2?rev=1487922675&amp;do=diff</link>
        <description>Suite de Fibonacci : un premier programme

Voici un embryon non fonctionnel de programme. Il y manque alors des éléments (à la place des “???”)


#! /usr/bin/env python
# -*- coding: utf-8 -*-
&quot;&quot;&quot;
Calculs des premiers éléments de la suite de Fibonacci.
Référence : http://fr.wikipedia.org/wiki/Suite_de_Fibonacci
&quot;&quot;&quot;
# élément d&#039;indice 0
i = 0
a = 0
print(i,a)
# élément d&#039;indice 1
i = 1
b = 1
print(i,b)

# structure de répétition pour appliquer la règle de récurrence
max = 100 # indice du dernier …</description>
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