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EP ENGR.MECH.-MOD.MASTERING ACCESS
15th Edition
ISBN: 9780134867267
Author: HIBBELER
Publisher: PEARSON CO
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Replace the force system acting on the pipe assembly by a resultant force and couple moment at point O. Express the results in Cartesian vector form.
3. Replace the two forces acting on the post by a resultant force and couple moment at point
O. Express the results in Cartesian vector form.
C
FB=5 kN
Fp =7 kN
6 m
8m
2 m
3 m.
6 m.
Replace the two forces with an equivalent resultant force and couple moment at point O. Let F = 20 lb.
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- If the resultant force of the loads passes through point B, find the equivalent force-couple system (moment) at point Oarrow_forwardExpress the moment of the couple acting on theframe in Cartesian vector form. The forces are appliedperpendicular to the frame. What is the magnitude of thecouple moment? Take F = 50 N.arrow_forwardReplace the three forces acting on the rectangular solid with a wrench. Specify the magnitude of the moment Massociated with the wrench. Enter a positive number for M if the wrench acts in a positive sense, enter a negative number if it acts in the negative sense. Specify the (x,y,z) coordinates of the point P in plane ABCD through which the line of action of the wrench passes. Illustrate the wrench moment and resultant in an appropriate sketch. 25 N 95 mm. Answers: M= y= 55 mm, 29 40 mm 20 N 110 mm. B N-m mm mm mm 35 mm 30 Narrow_forward
- Determine the moment of force F about the door hinge at B. Express the result as a Cartesian vector.arrow_forwardReplace the beam's system of forces and moments with a resultant force and a moment at point A.arrow_forwardReplace the two wrenches and the force, acting on the pipe assembly, by an equivalent resultant force and couple moment at point O. Determine the equivalent force at point O and the couple moment at point O.arrow_forward
- Replace the force and couple moment system acting on the beam by an equivalent resultant force, and find where its line of action intersects the beam, measured from point O. Set F1= 7 kN, F2= 20 kN and M= 16 kN.marrow_forwardAll three forces act on a tube assembly. If f1 = 50N and f2 = 80N, replace this force system with a resultant force and equivalent couple moment acting at point O. Express the results in cartecian vector formarrow_forwardUse Varignon's method. Determine the moment about point P from the 4 kN force. P 2 m 4 m 30° x 4 kNarrow_forward
- Handle forces F1 and F2 are applied to the electric drill. Replace this force system by an equivalent resultant force and couple moment acting at point O. Express the results in Cartesian vector from. Determine the resultant force and the moment of the resultant forse about the point O. Express your answer in terms of the unit vectors i, j and k.arrow_forwardHandle forces F¡ and F2 are applied to the electric drill. Replace this force system by an equivalent resultant force and couple moment acting at point 0. Express the results in Cartesian vector form. Set F, = { 3j - 6k } N and F2 = { 9i - 4.5j - 15k } N 0.15 m- 0.25 m 0.3 marrow_forwardReplace the force system acting on the beam by an equivalent resultant force and couple moment at point B.arrow_forward
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