calculate total moment at... At point O in this system. 500 N Choose... 3 m Choose.. 2234NM 1060NM 4070NM 3111NM 1805NM 1254NM
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- (page 7 of 30) - Google Chrome m/mod/quiz/attempt.php?attempt=518520&cmid 102873&page=6 e dashboard on 7 Calculate the moment about point O for the force system shown in the figure below. (To the closest answered significant number) out of 3.50 2 m aquestion 40 4 m 600 N Beer 2013 O a 1609.85 N.m (Clockwise Direction) O b. 1609.85 N.m (Counterclockwise Direction) Oc 2609.85 N.m (Counterclockwise Direction) O d. 2609.85 N.m (Clockwise Direction) Nevt nann P Type here to search TOSHIBA =2 F3 F4 F5 BVD F6 F7 F8 F9 C/B F10 F11 F12 #3 %$4 & 7 * 3r V 9. E T Y Y ! U と FIGYH J K:L!Calculte the moment at point A using the Varigons TheoramThe piston of a reciprocating engine exerts a firce of 180 kN on crosshead when the crank is 35 degree (angle beta) past TDC. If the stroke of the piston is 800 mm and the length of the connecting rod is 1.65 m, find, in kN. a) the guide force FG and , b) the firce on the connecting rod Rc .hint: radius AC is 1/2 of the stroke and Angle "phi" may be solved using sine law. Draw FBD
- Can you explain to me through words how the summation of moment becomes like that. Generally please break it down to me one by one how is the summation of moment done in the posted solution. For example why is Rc being multiplied by 40, why is 400 being multiplied by 60, why is 800 being multiplied by 30, why is 1000 being multiplied by 20 and why is 600 being multiplied by 20. And lastly why is Rc(40) and 600(20) are positive in the moment equation and the rest are negative Please refer to the picture of solutions I uploaded and break it down for me pleasee why the pin comes up to 1400 lbQ3: Find the moment a bout at point A 100mm 100mm 200N 150N 45 15N.m 200mm 40N.m 8ONCan I have the method in vector mathematics. In lifting a heavy box, a man uses a block and tackle attached to the bottom of an I beam at hook B. The man applies 195 N force to end A of the rope. Given: X1 : 2.943 m Z1 : 1.655 m Z2 : 4.167 m a.) Determine the value of Y1 if the z-component of the moment at the origin is 254.558 N·m b.) Determine the x-component pf the Force Vector F. c.) Determine the mass of the box. If you believe that there is no possible way to solve the problem, justify on why the problem is invalid.
- Find box for the given Plane, where by =120m, d=25m, bz=25m, d2=100m, b3=80m & d3=25 m (Enter only the values in the boxes by referring the unit given in brackets. Also upload your hand written answers in the link provided) b2 dz di bị The value of X= (unit in m) The value of Y= (unit in m) The moment of inertia for sec 1 = lyyi = (unit in m) The moment of inertia for sec 2 = lyy2 = (unit in m4) The moment of inertia for sec 3 = lyya = (unit in m4) The moment of inertia of the given plate = lyy = (unit in m)Consider the pipe assembly in .. {30i+20j30k} N and {60i 10j 55k} N. F₁ F2 = = Part A (Mia),(Mia)y, (M₁A) z = Submit Determine the moment of force F₁ about point A. Enter the components of the moment separated by commas. Express your answers in newton-meters to three significant figures. Part B Request Answer (M2A), (M2A)y, (M₂A) z = Submit Request Answer Part C. Complete previous part(s) VE ΑΣΦ | 41 vec 0.8 m IVE ΑΣΦ Determine the moment of force F2 about point A. Enter the components of the moment separated by commas. Express your answer in newton-meters to three significant figures. vec 1.20 m 0.4 m y ↓↑ ? N.m ? N.mA flag pole has a staked line to keep it from tipping over. The height of the flagpole is 17 ft. The cable can hold a maximum tension of 1500 lb. Determine the moment created at the support Q by the tension in cable. Enter your answer in Cartesian components with units of kip-ft (1 kip = 1000 lb). Round to 3 significant digits. top T a y Values for dimensions on the figure are given in the table below. R. Variable Value a 13 ft b 18 ft M i + а. A = (| k) kip-ft