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        <dc:date>2020-12-07T17:22:27+00:00</dc:date>
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        <title>teaching:progappchim:matplotlib_gallery:potentiel_energy_surface</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:matplotlib_gallery:potentiel_energy_surface?rev=1607358147&amp;do=diff</link>
        <description>Surface d&#039;énergie potentielle

Historique

Eyring et Polanyi ont publié en 1931 l&#039;article On Simple Gas Reactions dans lequel ils décrivent les trajets des atomes dans la réaction  + H --&gt; H +  (échange d&#039;atomes). Ces travaux aboutiront au développement des notions de $E_{bond}= D_e [\exp(-2\beta(r-r_e))-2\exp(-\beta(r-r_e))]$$E_{ant}= \frac{D_e}{2} [\exp(-2\beta(r-r_e))+2\exp(-\beta(r-r_e))]$$r_e$$D_e$$\beta$$E_{bond}= \frac{Q_{AB}+\alpha_{AB}}{1+S^2_{AB}} = \frac{Q_{AB}+\alpha_{AB}}{1+k}$$E_{a…</description>
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        <dc:date>2020-02-25T10:04:25+00:00</dc:date>
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        <title>teaching:progappchim:matplotlib_gallery:potentiel_morse</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:matplotlib_gallery:potentiel_morse?rev=1582621465&amp;do=diff</link>
        <description>Potentiel de Morse

Potentiel de Morse et approximation harmonique, avec représentation des niveaux d&#039;énergie des modèles quantiques correspondants.

Code source : 


#! /usr/bin/env python
# -*- coding: utf-8 -*-
&quot;&quot;&quot;
Représentation du potentiel de Morse pour H2
http://en.wikipedia.org/wiki/Morse_potential
http://en.wikipedia.org/wiki/Quantum_harmonic_oscillator approximation harmonique
D_e = 7.6E-19 J
a = 19.3E-15 m
r_e= 74.1E-12 m
dérivée de seconde d2V/dr2 = 2 * D_e * a**2.
&quot;&quot;&quot;
import matplot…</description>
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        <dc:date>2015-05-12T10:04:44+00:00</dc:date>
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        <title>teaching:progappchim:matplotlib_gallery:ir_spectrum_co</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:matplotlib_gallery:ir_spectrum_co?rev=1431417884&amp;do=diff</link>
        <description>Spectre IR du CO

Différentes techniques de spectroscopie utilisent des représentations standardisées des spectres. En spectroscopie Infrarouge, l&#039;absorbance est traditionnellement représentée en fonction des nombres d&#039;ondes décroissants exprimés en $cm^{-1}$. Pour rappel, en spectroscopie, le $\tilde{\nu}$$\tilde{\nu} = 1/\lambda = \nu/c$$\Delta J = \pm 1$$cm^{-1}$</description>
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        <dc:date>2018-02-20T10:00:26+00:00</dc:date>
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        <title>teaching:progappchim:matplotlib_gallery:rotateur_biatomique</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:matplotlib_gallery:rotateur_biatomique?rev=1519117226&amp;do=diff</link>
        <description>Rotateur biatomique

Cf. cette page.

Code source, en Python 3 : 


#!/usr/bin/env python
# -*- coding: utf-8 -*-
&quot;&quot;&quot;
Somme d&#039;état (ensemble canonique) de rotation (rotateur biatomique)

Les impressions sont à récrire avec l&#039;instruction format() de python 3
&quot;&quot;&quot;

from math import exp    # on a juste besoin de l&#039;exponentielle
import matplotlib.pyplot as plt  # directive d&#039;importation standard de Matplotlib

T = 100. # (température réduite = T / Theta)
Zrot = 0.  # somme d&#039;état
Jmax = 30  # valeur …</description>
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        <dc:date>2018-07-08T01:58:35+00:00</dc:date>
        <dc:creator>Anonymous (anonymous@undisclosed.example.com)</dc:creator>
        <title>teaching:progappchim:matplotlib_gallery:histogramme_simple</title>
        <link>https://dvillers.umons.ac.be/wiki/teaching:progappchim:matplotlib_gallery:histogramme_simple?rev=1531007915&amp;do=diff</link>
        <description>Histogramme simple

&lt;sxh python; title : simple-histogram-random_numbers.py&gt;
#! /usr/bin/env python
# -*- coding: utf-8 -*-
“”“
Matplotib : histogramme simple de nombres aléatoires
”“”
from pylab import randn, hist, show  #importation simplifiée</description>
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        <dc:date>2020-06-02T15:05:22+00:00</dc:date>
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        <title>teaching:progappchim:matplotlib_gallery:pka_pkb_plane</title>
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        <description>Couples acide-base dans le plan pKa/pKb

	*  Conventions sur les acides forts et les bases fortes : cf. Les acides, les bases et les sels qui nous entourent - Acide fort, base forte


#!/usr/bin/env python3
# -*- coding: utf-8 -*-

&quot;&quot;&quot;
Library references :
  * 

&quot;&quot;&quot;
import matplotlib.pyplot as plt  # directive d&#039;importation standard de Matplotlib
import numpy as np               # directive d&#039;importation standard de numpy

def cm2inch(*tupl):
    # https://stackoverflow.com/questions/14708695/sp…</description>
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