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The question and its related data are in French. Also, the Logger Pro software must be installed to produce graphs 3 and 4. Rsultats de
The question and its related data are in French. Also, the Logger Pro software must be installed to produce graphs 3 and 4.
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File Edit Experiment Data Analyze Insert Options Page Help Page 1 Collect No device connected Latest Time X 1.0- (s) (m) (m/s) 0.05 0. 184 ).0354 0.10 0.184 ).067 0.8 U A W N - 0. 15 0.177 ).069 0.20 0.174).016 0.25 0.174 ).053 0.6- Position (m) 6 0.30 0.182 ).077 0.35 0.188 ).000 0.4 0.40 0.177 ).008 (0 00 0.45 0. 185).021 10 0.50 0.184 ).022 0.2- 11 0.55 0. 181).043 12 0.60 0.178).029 0 5 10 13 0.65 0.177 ).001 (7.066, 0.121) Time (s) 14 0.70 0.176).051 15 0.75 0.188).010 16 0.80 0.179).056 17 0.85 0.178).049 18 0.90 0.174).041 19 0.95 0.172).003 0.5- 20 1.00 0.175).011 21 1.05 0. 174).018 22 1.10 0.174).122 Velocity (m/s) 23 1.15 0.178).388 24 1.20 0.202).815 0.0- MA Position m 0 5 10 Time (s)Table 1 - Acceleration d'un chariot glissant differents plans inclines Distance Acceleration Elevation Hauteur entre les Acceleration mesuree, h sin 0 du rail pattes du Essai 1 Essai 2 Essai 3 moyenne (m) rail, d (h/d) (m/$2) ( m / 5 2 ) (m/$2) (m/s?) (m) ~ 1 cm 1.000 0101 - 0, 09648 0, 09600 -0,09595 -0,0.96 14 ~ 2 cm 01 02 1.000 0, 02 0,1923 1913 45 1- 0,1939 1- 01 1936 ~ 3 cm 01 03 1.000 0103 0 2865 - 0, 2884 -0,2862 - 012870 ~ 4 cm 0, 04 1.000 0, 04 - 01 3863 - 0, 3835 - 0 3834 - 0, 38 44 ~ 5 cm 01 05 1.000 0105 -0,4727 -048201-0, 4822 -0, 4806Supposons que nous avons une situation combinant l'acceleration due a un plan incline et celle due a une masse en chute libre telle qu'illustree a la Figure 1: Derivez une equation qui predit l'acceleration totale du chariot. Derivez une equation qui permettra au systeme d'etre en equilibre (chariot et masse stationnaires) pour une hauteur, h. Figure 1 - Chariot tire par une force constante sur un rail a coussin d'air inclineStep by Step Solution
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