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Dans la formule : T ( S / \mathcal{R}_g )= \frac{1}{2} m \overrightarrow{V} (...

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Dans la formule :

T ( S / \mathcal{R}_g )= \frac{1}{2} m \overrightarrow{V} ( G / \mathcal{R}_g ) \cdot \overrightarrow{V} ( G / \mathcal{R}_g ) + \frac{1}{2} \overrightarrow{\Omega} ( S / \mathcal{R}_g ) \cdot ( I [G; S] \cdot \overrightarrow{\Omega} ( S / \mathcal{R}_g ) )T ( S / \mathcal{R}_g )= \frac{1}{2} m \overrightarrow{V} ( G / \mathcal{R}_g ) \cdot \overrightarrow{V} ( G / \mathcal{R}_g ) + \frac{1}{2} \overrightarrow{\Omega} ( S / \mathcal{R}_g ) \cdot ( I [G; S] \cdot \overrightarrow{\Omega} ( S / \mathcal{R}_g ) ),

que représente le terme \frac{1}{2} \overrightarrow{\Omega} ( S / \mathcal{R}_g ) \cdot ( I [G; S] \cdot \overrightarrow{\Omega} ( S / \mathcal{R}_g ) )\frac{1}{2} \overrightarrow{\Omega} ( S / \mathcal{R}_g ) \cdot ( I [G; S] \cdot \overrightarrow{\Omega} ( S / \mathcal{R}_g ) ) ?

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