Feat(1ST): init chapitre sur la fonction derivée
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1ST/05_Fonction_derivee/1E_fonction_derivee.pdf
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1ST/05_Fonction_derivee/1E_fonction_derivee.pdf
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1ST/05_Fonction_derivee/1E_fonction_derivee.tex
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1ST/05_Fonction_derivee/1E_fonction_derivee.tex
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\documentclass[a4paper,10pt]{article}
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\usepackage{myXsim}
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\usepackage{tikz}
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\usepackage{pgfplots}
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\author{Benjamin Bertrand}
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\title{Fonction derivé - Exercices}
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\date{Janvier 2023}
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\DeclareExerciseCollection[step=1]{banque}
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\xsimsetup{collect}
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\pagestyle{empty}
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\begin{document}
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\input{exercises.tex}
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\printcollection{banque}
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\vfill
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\printcollection{banque}
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\end{document}
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1ST/05_Fonction_derivee/exercises.tex
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1ST/05_Fonction_derivee/exercises.tex
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\begin{exercise}[subtitle={Construction de la fonction derivée}, step={1}, origin={Ma tête}, topics={ Fonction dérivée }, tags={ Dérivation }]
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Pour chacun des graphiques ci-dessous compléter les tableaux pour trouver les nombres dérivés.
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\begin{enumerate}
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\item ~
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\begin{minipage}{0.4\textwidth}
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\begin{tikzpicture}[yscale=.45, xscale=1]
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\tkzInit[xmin=-3,xmax=3,xstep=1,
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ymin=-5,ymax=5,ystep=1]
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\tkzGrid
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\tkzAxeXY[up space=0.5,right space=.5]
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\tkzFct[domain = -3:3, line width=1pt]{-x**2}
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\end{tikzpicture}
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\end{minipage}
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\hfill
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\begin{minipage}{0.5\textwidth}
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\begin{tabular}{|m{2cm}|c|}
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\hline
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x & Nombre dérivé $f'(x)$\\
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\hline
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-2 & \\
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\hline
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-1 & \\
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\hline
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0 & \\
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\hline
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1 & \\
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\hline
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2 & \\
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\hline
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\end{tabular}
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\end{minipage}
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\item ~
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\begin{minipage}{0.4\textwidth}
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\begin{tikzpicture}[yscale=.35, xscale=1]
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\tkzInit[xmin=-3,xmax=3,xstep=1,
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ymin=-7,ymax=7,ystep=1]
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\tkzGrid
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\tkzAxeXY[up space=0.5,right space=.5]
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\tkzFct[domain = -3:3, line width=1pt]{0.5*x**2 - 2}
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\end{tikzpicture}
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\end{minipage}
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\hfill
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\begin{minipage}{0.5\textwidth}
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\begin{tabular}{|m{2cm}|c|}
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\hline
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x & Nombre dérivé $f'(x)$\\
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\hline
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-2 & \\
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\hline
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-1 & \\
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\hline
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0 & \\
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\hline
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1 & \\
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\hline
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2 & \\
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\hline
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\end{tabular}
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\end{minipage}
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\item Pour les deux fonctions précédentes, à partir des valeurs déjà trouvées, ne pourrait-on pas trouver une formule qui pourrait calculer tous les nombres dérivés de ces fonctions? \\ Combien vaudrait dans chacun des cas $f'(10)$? $f'(0,5)$?
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\end{enumerate}
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\end{exercise}
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\begin{solution}
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<++>
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\end{solution}
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1ST/05_Fonction_derivee/index.rst
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1ST/05_Fonction_derivee/index.rst
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Fonction dérivée
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################
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:date: 2023-01-04
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:modified: 2023-01-04
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:authors: Benjamin Bertrand
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:tags: Dérivation
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:category: 1ST
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:summary: Calculs de la fonction dérivée et lien avec la croissance de la fonction.
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Éléments du programme
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=====================
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Contenus
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--------
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Capacités attendues
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-------------------
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Commentaires
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------------
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Progression
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===========
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Étape 1:
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--------
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1ST/05_Fonction_derivee/plan_de_travail.tex
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1ST/05_Fonction_derivee/plan_de_travail.tex
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\documentclass[a4paper,12pt]{article}
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\usepackage{myXsim}
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\author{Benjamin Bertrand}
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\title{Fonction dérivée - Plan de travail}
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\tribe{1ST}
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\date{janvier 2023}
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\pagestyle{empty}
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\DeclareExerciseCollection{banque}
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\xsimsetup{
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}
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\begin{document}
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\maketitle
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% Résumé
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\bigskip
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Savoir-faire de la séquence
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\begin{itemize}
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\item
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\end{itemize}
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\bigskip
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Ordre des étapes à respecter
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\section{}
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\listsectionexercises
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\pagebreak
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\input{exercises.tex}
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\printcollection{banque}
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\end{document}
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1ST/05_Fonction_derivee/solutions.tex
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1ST/05_Fonction_derivee/solutions.tex
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\documentclass[a4paper,10pt]{article}
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\usepackage{myXsim}
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\usetikzlibrary{shapes.geometric}
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\author{Benjamin Bertrand}
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\title{Fonction dérivée - Solutions}
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\tribe{1ST}
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\date{janvier 2023}
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\DeclareExerciseCollection{banque}
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\xsimsetup{
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exercise/print=false,
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solution/print=true,
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}
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\pagestyle{empty}
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\begin{document}
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\maketitle
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\input{exercises.tex}
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%\printcollection{banque}
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%\printsolutions{exercises}
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\end{document}
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