Free Body Diagram Problems Problem 1 Draw a proper free body diagram for the curved bar shown below. Cable 30°
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Q: can you please resend the answers it says math error and i cant see the whole answer
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A: The step by step solution for this problem is shown below.
Q: Hi, please complete the last three subparts of this question.
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Q: Hi, can you please help me with C and D as well?
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Q: please answer final two parts thank you
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Q: Solve correctly will upvote
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- 60 l all ۱۲:۰۱ ص EQUILIBRUIM2&3D.pdf -> supporte ny pan connection at A and fixed pin in smooth slot at B. Load L Figure 3/A Page5 3/B In each of the five following examples, the body to be isolated is shown in the left-hand diagram, and either a urang or an incomplete free-body diagram (FBD) is shown on the right. Make whutever changes or addi tions are necessary in each case to form a correct and complete free-body diagram. The weights of the bodies ure negligible unless otherwise indicated. Dimensions und numerieal valueu are omitted for aimplicity. Body Wrong or Incomplete FBD 1. Lawn roller of mare m being do paesnd incline e. 2. Prybar lining body A having smooth horizantal surface. Bar reste on horizontal rough surface. 3. Unifarm pele of mass w being hoisted into po i- tion by winch. Hariaontal aup- porting surface Totohed to prevent slipping of pale. mg Notrh 4. Supporting angle bracket for fnime; Pin joints 5. Bent rod welded to upport at A ond subiected ta two forc and…E T-50" 60 C Force ? Suppose rod AB is hinged to a fixed wall. Rope CDE is attached to the rod at C, 4 from the hinge. The rope passes over a pulley D. which is mounted on another fixed wall. The angle ACD is 60 degree. The other end of the rope is connected to a mechanism (not shown), which requires 50 lb. force to be actuated. How much downward hand force will be required at point B. 5' from the hinge, to actuate the mechanism? When the hand force is applied, what reaction force will be developed in hinge A? Assume the rod is weightless, rigid and amply strong and the rope is flexible and amply strong.The spring clamping force Fg = 2 N. The contact pressure force FA and the joint forces Fg at the jump piece 1 should be determined for the toggle mechanism with a straight guide shown in figure. C 26 mm B 2 10 mm A 1 8 mm 7 mm D 10 mm 15 10 ww ww
- Calculate the reaction forces on the bearing near the pulley and bearing at the far end of the shaft. Include a free body diagram and coordinates. Given the shaft length is 1 meter= Mass=40Kg Static load = 8600N Dynamic (running load) = 8400N Some hints:1. This solution will require you to draw known forces and find unknown reactions in 2perpendicular planes and then add the horizontal and vertical reaction forces asvectors to find the reaction force (hypotenuse).2. Bearings are usually mounted as near as possible to the ends of the shaft withoutfouling the other machine elements. The bearing at the far shaft end can be mountedat the 1 meter point. The bearing at the pulley end should allow clearance to assemblethe pulley.3. Bearing reaction forces are typically simplified as a single point load through thebearing centre.Calculate Strain energy for truss DC. Enter your answer in J to 2 decimal places.Data: r=0.25 inch, d=0.4 pig and h=0.5 inch, wi=2.5 inch and w= 1.5 inch.The forces fluctuate between a tension of 14 Kips and a compression of 5 Kips. It is made of AISI 1018 CD. steel.The connecting element in the figure is failing. What is the most critical point and give recommendations to improve the situation.
- or the spring system given in Figure 1, create the clement matrices as well as the global stiffness and force matrix, note that k-1. -ww- Figure 1Provide step-by-step solution with complete given and formula to this problem. Draw sketch also. A mine hoist is to carry a cage loaded with ore at a total load of 8 tons. The depthof mine shaft is 328 ft. A 6 x 19 IPS wire rope with rope diameter of 1.75 in is to beuse with sheave diameter of 39 in. The cage loaded is to start from rest and will attaina maximum velocity of 525 fpm in 10 seconds. Find the total load of the rope. A. 12,086 lbs B. 14,086 lbs C. 16,086 D. 18, 086 lbsStructure type #1 Find the internal forces in each member of the truss A * 35 8 15 3 C * O 15 d N X 18
- Solve for Problem 2, when RN1 = 0145Part A Determine the greatest force F that can be applied to the ring if each cable in (Figure 1) can support a maximum force of 880lb. Express your answer to three significant figures and include the appropriate units. • View Available Hint(s) HA Fmax = Value Units Submit Previous Answers X Incorrect; Try Again; 7 attempts remaining Provide Feedback Figure <) 1 of 1 AF 1 ft D ft 3ft - 3 ftProblem 1: Find the load in member BD 4m 3m 4 +R Hippo For Sale 30 kN