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- 6 in 60° 20 in Statics Instructor A vertical force of P = 100 lb is required to remove the nail at C from the board. Determine the magnitude of the moment about B exerted by the 100 lb vertical force. Draw a free body diagram for the system. Then, use what you know about moments to solve for Mp What is the magnitude of the moment at point B due to P if P = 100 lb and 9 = 10"? Round to the nearest whole number. Enter a response then click Submit below lb inKe-45 Homework-3- 1. Calculate the moment at point (A) of the forces shown in figure. T;-10 2.5 m 1-25 m-I T-3N --- T T3=6 N M=5 N.m T=4 N T;=2 N 0=45° 3 m 5 m 2. Determine the moment of a 90 N force about point C for the condition 0 = 15°. 600mm A 90N 3. Find the forces in member AB and BC by component method. A TAK Tc 45 30 45° 30° Ring Pulley 60° 200 N Pulley 200 N 200 N 200 N 800mm9 - In the cage system connection in the figure; Rod forcesS1 = 100 kN,S2 = 40 kN,S3 = - 60 kN,S4 = 50 kN,If S5 = 80 kN, Calculate the resultant force acting on joint D.If the vector representation of the resultant force is R = Rx i + Ry j, Ry =? Note: The (-) sign of the bar force S3 indicates that the force is pressure. A) 12.93B) 3.64C) -36.36D) 27,07E) -12.93
- НОМE WORK 3 Determine the resultant force at A. for the figure below Hint : 1- Find the position of all points A,B.C (x, y., z) 2. Find Fas und FAC 3. Find Tanl and Iracl 4. Find FAg = F UA and Fac = F UAC 5- Finally find R and a, B.y 3m Fc= 500N FB= 500N 3m 5m 3m B 2m 4m 5mThe shelf bracket is subjected to the force F = 336 Newtons at an angle 0 = 25.5°. Compute the moment (in N-m) that this force exerts about each of the two attachment points (screw locations in the figure). Take counterclockwise moments to be positive. a F 2013 cc CC Michael Swanbom BY NC SA Values for dimensions on the figure are given in the following table. Note the figure may not be to scale. Variable Value a 48.0 cm 45.6 cm 4.10 cm The moment about the upper attachment point is N-m. The moment about the lower attachment point is N-m. luk-Find the magnitude and direction of the resultant force for the system of forces shown in the figure. Where F1 =10 N, F2 =35N, F3 =30 N, F4 =10N, F5 %3D = 70N & F6 =70N. The angles 0, =25°, 03 =20° , 04 = 50°, 06 = 30 ° (Enter only the values in the boxes by referring the units given in bracket. Also upload the hand written copy in the link provided) F2 F3 F1 F6 F4 F5
- 3-4 Sketch a free-body diagram of each element in the figure. Compute the magnitude and direction of each force using an algebraic or vector method, as specified. F=400 N. 30° B 60° 2 1.9 m 0 9 m C D 60° E x4. Forces F =F-20N and the third force F3 25N act on a cube with the side of a=2m. a. Find the screw driver (wrench) that is created by these forces i.e pitch, Mparallel, Mpapendicular b. Find the point of intersection of the axis of the wrench with the x-y plane. How do you check your answer is correct? G F D A B.3 - In the cage system connection in the figure; Rod forcesS1= 100 kN,S2= 40 kN,S3= - 60 kN,S4= 50 kN,If S5= 80 kN, Calculate the resultant force acting on joint point D.If the vector representation of the resultant force is R= Rx i + Ry j, ry = ? Note: The (-) sign of the rod force S3 indicates that the force is pressure. A) 12.93B) -36.36C) 3.64D) 27.07E) -12.93
- estion 12 Find the moment about B and D for the loaded section as shown in figure. The forces F1 =10 N, F2 = 50 N, F3 = 28N, F4 =30 N. AB =14 m, BC=10m, CD = 9 m, 0, =45°. ot yet nswered (ENTER ONLY THE VALUES BY REFERRING THE UNITS GIVEN I | BRACKET. ALSO SUBMIT THE HAND WRITTEN ANSWER SHEET IN THE LINK PROVIDED) arked out of 00 F3 Flag Jestion F4 D F2 O The moment about 'B' (in Nm) = (i) The moment about D' (in Nm) =3-7 The bending moment in the beam at point A is equal to the moment of the 800-N force about point A. Calculate the moment about point A (Figure P3-7). 800 N 38 Figure P3-7Q) A simplified model as shown in figure below of a planar robotic arm. You may assume that each segment has length 1.5 m, and the applied force is 250 N. 01 = 35 degree and 02 = 03 = 20 degree. Calculate the %3D moment that the force, F, exerts .about the point A F A. M = -1042 O M = -1055 M = -1046 M = -1050 O