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Schéma 1

V A 2/0 = V A 2/1 + V A 1/0. Schéma 1. V C 3/0. V C 2/0. V A 2/0 V C 2/0. V D 4/0 V F 4/0. V A 2/0. V A 2/1. Echelle 1:1. 1cm <=> 1m/s. V D 3/0 = V C 3/0. V A 1/0. V C 3/0 = V C 3/2 + V C 2/0. 4. 3. V D 4/0 = V D 4/3 + V D 3/0. = 0.

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Schéma 1

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  1. VA2/0 = VA2/1 + VA1/0 Schéma 1 VC3/0 VC2/0 VA2/0VC2/0 VD4/0VF4/0 VA2/0 VA2/1 Echelle 1:1 1cm <=> 1m/s VD3/0 = VC3/0 VA1/0 VC3/0 = VC3/2 + VC2/0 4 3 VD4/0 = VD4/3 + VD3/0 = 0 VD3/0 VD4/0 = 0 VC3/0 = VC2/0 D C VC3/0 = VC2/0 D 1 O A D VF6/0 = VF6/4 + VF4/0 2 E B 2 1 0 6 F ||VA1/0|| = w1/0 . OA 2.p.N1/0 VF4/0 . OA ||VA1/0|| = 60 VF6/4 VF6/0 2.p.3000 ||VA1/0|| = 314 x 22 ||VA1/0|| = . 22 60 ||VA1/0|| = 6910 mm/s = 6,91 m/s D 3 Commande de soupape indirecte DCBE paral- lélogramme déformable Mvt de 3/0 translation circulaire Par équi- projectivité Par équi- projectivité  (AB) // D3  D2  D1 Connue Connue Connue Connue  (BC)  (EF) Connue Connue  (OA)

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