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I NEED HELP ON WHETHER THESE TORQUES ARE UP AND DOWN? rigid body at an equilibrium. Put up or down for each torque in Table

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I NEED HELP ON WHETHER THESE TORQUES ARE UP AND DOWN?

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rigid body at an equilibrium. Put "up" or "down" for each torque in Table 4. the right-hand rule to determine the directions (up or down) of all the non-zero torques. (i) If the % difference between two non-zero torques about the same point (O or P) is less tha (h) Calculate % difference between the non-zero torques and record the results in Tables 3 and then we can conclude that t=0 (about point O or P), which is one of the two condition 6) If the % difference between two non-zero torques about the same point (O or P/) is greater 10%, you should check your data analysis to reduce errors in your drawings and calculatio Table 1 Provided and calculated magnitudes of the forces (with units) from your drawing of F2 T.SN you get less than 10% difference. ELSN e 7.5N F N LAP) L (P) 100 Table 2 Measured lengths of the lever arms (with units) from your drawing of Fig. 1 LA(0) LA (0) I(O) LA(P) 10.042m 0.042m OM 0.092 mo.ort Table 3 Magnitudes (with units) and directions of torques about point o in measurement + Tj(O) % differenc between tw 70 up or 1790 up or Ex(O) down down down torques 10.063 10010 Nim TAO) 7,0) up or non-zero 10.063 Nm ON.M non- Table 4 Magnitudes (with units) and directions of torques about point P, in measurem TA(P) T(P) IP) % diffe betwee up or up or (P) up or down down down tor 10.14 N.M 10.14 N.M e O 73 (P) om (b) Tighten or loosen a screw using a wrench Table 5 Provided and calculated magnitudes of the forces (with units) from your drawing of Fig. 2 F2 1.5N hud of moments to compare an unknown mass with a arms, and others do not. Fig. 4(a) shows where mi is the unknown mass, F N I (0) L0.078M L(P) 0.053 M . 1000 3.IN Table 6 Measured lengths of the lever arms (with units) from your drawing of Fig. 2 LA (0) I (0) L(P) L (P) OM 0.118 M 10.06in Table 7 Magnitudes (with units) and directions of torques about point o in measurement #2 TA(O) TO) % difference 1990 FO Exo 4.990 TO) up or down up or down up or down between two non-zero torques 10.084 N.M 10.080 Non O N.M non-zero Table 8 Magnitudes (with units) and directions of torques about point P, in measurement #2 TA (P) TEP) Tj(P) % difference between two up or up or EN (P) up or down down down torques O Nom 0.18 N.M 10.19 Nom 177, (P) 5.4% struction for your Exp 7 lab report Your drawings of Figs, 1 and 2 must be included in your lab report. Tables 1 to 8 must be included in your lab report. Answers to the 5 questions at the end of Exp 7 lab manual must be included in your R2 - Erio -1 dorm (200m) -65 AM (6.5cm 55M (5.5cm Figure Fon (F2=1.5N) Apapes 2) TER FIF LF LNPU G-1000 pines (F1=151 Figure a (F2= 105N) Fl=ht o pa legal 6 LF20 LNPI) o ILFIO 0 = 1000 Velper (FIP) re Retwee tip and PI=120 AM 212000 rigid body at an equilibrium. Put "up" or "down" for each torque in Table 4. the right-hand rule to determine the directions (up or down) of all the non-zero torques. (i) If the % difference between two non-zero torques about the same point (O or P) is less tha (h) Calculate % difference between the non-zero torques and record the results in Tables 3 and then we can conclude that t=0 (about point O or P), which is one of the two condition 6) If the % difference between two non-zero torques about the same point (O or P/) is greater 10%, you should check your data analysis to reduce errors in your drawings and calculatio Table 1 Provided and calculated magnitudes of the forces (with units) from your drawing of F2 T.SN you get less than 10% difference. ELSN e 7.5N F N LAP) L (P) 100 Table 2 Measured lengths of the lever arms (with units) from your drawing of Fig. 1 LA(0) LA (0) I(O) LA(P) 10.042m 0.042m OM 0.092 mo.ort Table 3 Magnitudes (with units) and directions of torques about point o in measurement + Tj(O) % differenc between tw 70 up or 1790 up or Ex(O) down down down torques 10.063 10010 Nim TAO) 7,0) up or non-zero 10.063 Nm ON.M non- Table 4 Magnitudes (with units) and directions of torques about point P, in measurem TA(P) T(P) IP) % diffe betwee up or up or (P) up or down down down tor 10.14 N.M 10.14 N.M e O 73 (P) om (b) Tighten or loosen a screw using a wrench Table 5 Provided and calculated magnitudes of the forces (with units) from your drawing of Fig. 2 F2 1.5N hud of moments to compare an unknown mass with a arms, and others do not. Fig. 4(a) shows where mi is the unknown mass, F N I (0) L0.078M L(P) 0.053 M . 1000 3.IN Table 6 Measured lengths of the lever arms (with units) from your drawing of Fig. 2 LA (0) I (0) L(P) L (P) OM 0.118 M 10.06in Table 7 Magnitudes (with units) and directions of torques about point o in measurement #2 TA(O) TO) % difference 1990 FO Exo 4.990 TO) up or down up or down up or down between two non-zero torques 10.084 N.M 10.080 Non O N.M non-zero Table 8 Magnitudes (with units) and directions of torques about point P, in measurement #2 TA (P) TEP) Tj(P) % difference between two up or up or EN (P) up or down down down torques O Nom 0.18 N.M 10.19 Nom 177, (P) 5.4% struction for your Exp 7 lab report Your drawings of Figs, 1 and 2 must be included in your lab report. Tables 1 to 8 must be included in your lab report. Answers to the 5 questions at the end of Exp 7 lab manual must be included in your R2 - Erio -1 dorm (200m) -65 AM (6.5cm 55M (5.5cm Figure Fon (F2=1.5N) Apapes 2) TER FIF LF LNPU G-1000 pines (F1=151 Figure a (F2= 105N) Fl=ht o pa legal 6 LF20 LNPI) o ILFIO 0 = 1000 Velper (FIP) re Retwee tip and PI=120 AM 212000

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