Elements Of Electromagnetics
7th Edition
ISBN: 9780190698614
Author: Sadiku, Matthew N. O.
Publisher: Oxford University Press
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- Please include a drawingarrow_forwardQ7. Determine the resultant force and angle of the forces as shown in figure by (components method the x-horizontal component and y-vertical components)? F2= 80 N 20 F = 150 N 30° 15° F=100 N F=110 Narrow_forwarda) As shown in the image given, a 69-kg crate is supported at equilibrium. The angles alpha=112 degrees. beta=145 degrees and the V =64.3 degrees. The coordinates of point D are (-2.2, 5.6, 3.2)m, and the spring constant k=1170N/m. Determine the stretch in the spring, in m which must be rounded to 3 places after the decimal point. Take g=9.81m/s^2. b) As shown in the image given, a 63-kg crate is supported at equilibrium. The angles alpha=112 degrees. beta=145 degrees and the V =64.3 degrees. The coordinates of point D are (-2.4, 5.5, 3.7)m. Determine the tension force in cable AC, in N. Take g=9.81m/s^2. c) As shown in the image given, a 64-kg crate is supported at equilibrium. The angles alpha=112 degrees. beta=145 degrees and the V =64.3 degrees. The coordinates of point D are (-2.2, 5.4, 3.2)m. Determine the tension force in cable AD, in N. Take g=9.81m/s^2.arrow_forward
- Also, find Resultant at A Determine the magnitude and direction of the resultant force A by resolving Ax and Ay Expected answers- Dx=0kN, neither Dy=3.22kN, up Ax=2kN Ay=1.778kN F=2.676kN, 138.37degreearrow_forward9 m 10 m FC=1,500 N F E FA= 900 N 14 m 6 m 0 FB=2,000 N B 13 m 3 m 4 m X Determine the magnitude of the resultant force R = FA+ FB (N with no decimal places)arrow_forward5. Need help, only use 3 sig figs for answers pleasearrow_forward
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