Elements Of Electromagnetics
7th Edition
ISBN: 9780190698614
Author: Sadiku, Matthew N. O.
Publisher: Oxford University Press
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Determine the magnitude of force F so that the resultant force of the three forces is as small as possible.
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- Q1/ As shown in Fig.( 1 ) draw the Free Body Diagram and express the force F as a Cartesian vector. Determine its coordinate direction angles of the force. 45° -30° F= 801b Fig.( 1 )arrow_forwardSuppose that w = 220 kN/m. Determine the magnitude of the resultant force.arrow_forwardFind the resultant of the forces F1, F2, and F3? F2=100 N F3=100 N 45° F1=100Narrow_forward
- Given a system made of the force F, couple M and distributed loads defined by w1 and w2, find the equivalent system at B.Take F = 8 kN, M = 5 kN.m, w1 = 8 kN/m, and w2 = 4 kN/m.Also, d = 1 m.arrow_forwardDetermine the magnitude of the resultant force in 0 = 31 degrees and T = 5 kN. Provide the answer in kN. 8 kN 10 kN 5 kNarrow_forwardDetermine the resultant R of the system of distributed loads and locate its line of action with respect to the left support for 5.0 kN/m 2.5 kN/m A 2 m 4 marrow_forward
- Determine the magnitude of the smallest force F3 so that the resultant force of all three forces has a magnitude of 26.5 lb.arrow_forwardFind the Resultant Force for the Forces shown by resolving the Forces into their X & Y components. Draw the Resultant Force on the lower X& Y cross and show the resultant angle in relation to the +X axis. Show all your work. Make sure to box all your answers F2=30N F1=15N 15 30° `F3=20N Yarrow_forwardDetermine the magnitude of the resultant force in N of a coplanar force . The horizontal force P=231N and the couple M=501Nmarrow_forward
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