Determine all forces acting on member ABC of the linkage shown in Fig. 500 N B 300 mm 250 N 200 mm + 200 mm - 200 mm
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- Determine the magnitude and direction of each force. In the figure shown, a = 8 in and F= 100 lbf. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. = -10 in- B -10 in- -10 in F C What are the values of the x and y forces at point O in lbf? Rox lbf lbf RoyA tower has a wire (AB) attached to the tower at point B and it is anchored to a bolt at A. The tension in the wire is 993 N. Call the Force in AB FAB Calculate the x, y and z components of FAB What is the direction of FAB in terms of alpha ⍺, beta β and gamma ? ? What is the x component of FAB ? Round your answer to the nearest whole number. What is the y component of FAB ? Round your answer to the nearest whole number. What is the z component of FAB ? Round your answer to the nearest whole number. What is alpha ⍺ for FAB ? Enter answer rounded to one decimal place. What is beta β for FAB ? Enter answer rounded to one decimal place. What is gamma ? for FAB ? Enter answer rounded to one decimal place.The 50-ft measuring tape weighs 2.4 lb. Compute the span L of the tape to four significant figures.
- 'Two Forces Shown in Fig. (1) acts on the bracket, determine the effect of these two forces (using Parallelogram method). 100 F₂=150N F₁-200 N3. At temperature T₁, the two rigidly connected rods just fit the rigid supports. If both sections are identical except for the diameter, prove that the following equations are true when temperature rises to T₂. a. F= b. OAB C. OBC A x(T₂-T₁)лd²E 20 x(T₂-T₁)E 5 9x(T₂-T₁)E 5 -1/2- d B 1/12- d CCompound axial member ABC has a uniform diameter of d-2.4 in. Segment (1) is an aluminum [E₁ - 10,000 ksi] alloy and segment (2) is a copper [E₂ - 17,000 ksi] alloy. The lengths of segments (1) and (2) are L₁ - 78 in. and L₂ - 150 in., respectively. Determine the force P required to stretch compound member ABC by a total of 0.35 in. L₁ A Part 1 Aluminum Answer: A- B Save for Later Calculate the cross-sectional area of the compound member. L2 (2) Copper in.² C P Attempts: 0 of 1 used Submit Answer Part 2 The parts of this question must be completed in order. This part will be available when you complete the part above. Part 3 The parts of this question must be completed in order. This part will be available when you complete the part above.
- The two rods (A-B and B-C) shown in the left panel are connected by pins at A, B, and C. The cross sections of A-B and B-C are 10mm×13mm and 10mm×10mm, respectively. The bilinear stress-strain relation shown in the right panel is for the material used to make the two rods, where Ei is the slope of the stress-strain curve for stresses between 0 and 80 MPa and E2 is the slope for stresses larger than 80 MPa. Note that Hooke's law is only valid for stresses up to 80 MPa. A 1 1 B 0.900 m 3 P = 30 kN 2.44 m C σ MPa 80 E₂ = 40 GPa E₁ = 80 GPa E a) Given the conditions above, find the axial elongation for each rod when subjected to P=30KN. b) Find the final position of Point B due to the applied load P at that location. Hint: Assume point B moves by unknown amounts Ax and Ay from its initial position, and then use right triangles to write the known final lengths of the cables in terms of Ax and Ay. The equations can be simplified by assuming terms Ax² and Ay² are so small they can be…Replace the loading on the frame by a single resultant force. Suppose that F = 300N F = 500 N, F3 = 900 N, and F = 250 N. (Figure 1) Part A Determine the magnitude of the resultant force. Express your answer to three significant figures and include the appropriate units. ? FR = Value Units Submit Request Answer Figure 1 of 1 Part B 0.5 m -1 m Determine the angle between the resultant force and the x axis. F, B Express your answer using three significant figures. _[0.5m ? 3. 14 ΑΣφ It vec F1 1.5 m measured clockwise F3 from the positive x axis 1 m A Submit Request Answer 圓Part A What is the minimum tension P of the cord? Express your answer in pounds to three significant figures. ANSWER: P = Part B lb What is the orientation ? Express your answer in degrees to three significant figures. ANSWER: 0 = -P 10 lb A 15 in. 45 15 in. D 30° 10 lb
- The drawing shows a rectangular piece of wood. The forces applied to corners B and D have the same magnitude of 20 N and are directed parallel to the long and short sides of the rectangle. The long side of the rectangle is twice as long as the short side. An axis of rotation is shown perpendicular to the plane of the rectangle at its center. A third force (not shown in the drawing) is applied to corner A, directed along the short side of the rectangle (either toward B or away from B), such that the piece of wood is at equilibrium. Find the magnitude and direction of the force applied to corner A.F1=603N F2 =818N show a detailed solution pleaseReplace the loading on the frame by a single resultant force. Suppose that F = 300N F = 500 N. F3 = 900 N , and F = 250 N . (Figure 1) Part C Figure 1 of 1 Specify where its line of action intersects a vertical line along member AB, measured from A. Express your answer to three significant figures and include the appropriate units. Enter positive value if the line of action intersects a vertical line AB above point A and negative value if the line of action intersects a vertical line AB below point A. 1 0.5 m 1m- B HA ? [0.5m y = Value Units F1 1.5 m F3 Submit Request Answer 1'm 4 A