If the magnitude of the couple moment acting on the pipe assembly is M, determine the magnitude of the couple forces applied to each wrench. The pipe assembly lies in the x-y plane. The parameters in the figure are defined in the table below. Parameter M Magnitude 5365+250 Unit Nm 5+0.5 5+0.2 5+0.6 b 5+0.7 m 5+0.9 e m
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Q: - Find The couple moment acting on the pipe assembly using Cartesian vector notation. |15 N 300 mm…
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Q: Find The couple moment acting on the pipe assembly using Cartesian vector notation. 15 N 300 mm 300…
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Q: F = 200 N F3=300N M. 100 Nm 0.4 m 300N 0.5 m 0.6 m The pipe system shown in the figure is supported…
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Q: H, =0.40 Hz = 0.30 D 150 mm 150 mm B E 300 mm 300 mm M 150 mm 150 mm 250 mm
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Q: SAMPLE PROBLEM 2/5 2m A. Calculate the magnitude of the moment about the base point O of the 600-N…
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- Q-7: This question have two different approaches. Solve for both. (a) Determine the resultant couple moment of the two couples that act on the pipe assembly. The distance from A to B is d = 420 mm. Express the result as a Cartesian vector. (b) Determine the distance d between A and B so that the resultant couple moment has a magnitude of MR = 28 Nm. {35k} N B 250 mm d {-50i} N. {-35k} N 30 350 mm A {50i} NTwo couple forces F = 67N, F - 61N, act on the frame and given that d- 4m and 0- 28". The other length parameters are a = 4m, b- 8m, C- 12m, and e- 12m. Compute the moment by the following methods: -F, -F1 F1 a) Find the moment of each couple by using cross product and add them up. M: kị N m b) Sum up the moments of all forces component about point B resolve forces into a and y components N- mA force couple acting on the rod. Find: The couple moment acting on the rod in Cartesian vector notation. F= (-14i + 8j + 6k)N 0.5 m 0.8 m 1.5 m 0.5 m F = (14i - 8j - 6k )N
- Help Save & Exit Check Required information A rope connecting points A and B supports the force Fshown in the figure. Write expressions using Cartesian vector representation for the following. Take L= 8 ft and F= 12 lb. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. B 30° F T AB : the position vector from A to B. TAB of 17 Next > < Prev 6. 9. 41The figure shows a wire cutter. Detemine the cutting force on the wire at A when the 75-N forces are applied to the handgrips. (Hint: The horizontal components of pin forces at B and D are zero due to symmetry.) 75 N A. B E |-27- 80 24 -72 75 N Dimensions in mmCan 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.
- touch & OL166% 00:27 MENG250 - Practice Assi... Not saved yet •2-77. Determine the magnitude and coordinate direction angles of F, so that the resultant of the two forces is zero. Y2 B2 a2 y 60° 15°. F= 180 N O4:48 68 O E B18 Statics_Moment.. o 240 N 2. A prybar is used to remove a nail as 15° shown. Determine 350 mm the moment of the 240 N force about the point o of 65° contact between the prybar and the small support block. 30 mm PROBLEMS 240cos10=236.35 N Mo=? 240 N 15° 65 240sin 10=41.68 N 350 mm M=236.35(0.35) +41.68(0.03)=83.97 N -m 65 (clockwise direction) 30 mm PROBLEMS 900 mm 700 mm 3. An experimental device imparts a force of magnitude F = 225 N to the front edge of the rim at A to simulate the F 300 mm effect of a slam dunk. Determine the moments of the force F about point O and about point B. Finally, locate, 3050 mmAn eye bolt is used to attach 3 cables to a steel plate. The tension in the three cables create F1=200 lbf, F2=250 lbf, and F3=100 lbf with 0 = 30 degrees and p=24.1 degrees. If the eye bolt is in equilibrium, what is the x-component of the sum of other forces on the bolt (force from the nut and plate on the bolt) ? If you add up the three force vectors, the sum other force you are looking for will just be in the opposite direction to put the eye bolt in equilibrium. The x-direction is positive to the right. For example, if you find the sum of forces 1, 2, and 3 are 100 Ibf to the right, then the other forces in the x-direction must be pointing to the left (-100 lbf) to put the eye bolt in equilibrium. Eye bolt 2steel 3 plate Nut t Wonsher
- A cargo ship is tied down to marine boll arts at a number of points along its length while its cargo is unloaded by a container handling crane. Each bollard is fastened to the wharf using anchor bolts. Three cables having known tension force magnitudes F, = ll0 kN.F, = 85kN.and F, 9OkNare secured to one bollard at a point A with coordinates (0.0.45 m. 0) in the x-r-: coordinate system shown in the figure part b. Each cable force is directed at an attachment point on the ship. Force F, is directed from point A to a point on the ship having coordinates (3 m, 9 m. 0) force F, is directed at a point with coordinates (6.5 m. 8.5 m. 2 m) and force F, is directed at a point with coordinates (8 m. 9 m. S m). The diameter of each anchor bolts is 4 24 mm. (a) Find the reaction forces and reaction moments at the base of the bollard. (b) Calculate the average shear stress in the anchor bolts (in the x-: plane). Assume each bolt cart ics an equal share of the total force.Q4: The force in the Figure acts on the hook. Express it as a Cartesian vector. F = 675N (총)(S m) 2 m FB.uB (675)(0.7936i + 0.5151j+0.3282k) O FB.uB = (675)(-0.7936i + 0.5151j-0.3282k) FB.uB = (675)(-0.7936i - 0.5151j+0.3282k) FB-uB = (675)(-0.7936i + 0.5151j+0.3282k) OProblem 4 From the figure, w1 =13kN/m, w2=10kN/m, F1 =7kN 1. Find the resultant of the forces 2. Find the location of the resultant from point B. 7m 4m 2m