EBK ENGINEERING MECHANICS
15th Edition
ISBN: 9780137616909
Author: HIBBELER
Publisher: VST
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Determine the magnitude of the resultant force and its direction measured counterclockwise from the positive x axis.
Determine the magnitude of the resultant force and its direction measured counterclockwise from the positive x-axis.
Determine the magnitude and the coordinate direction angles of the resultant force acting on the ring.
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- IF phi = 30° , F 1 = 5kN and the resultant force is to be directed along positive y-axis , determine the magnitude of the resultant force if F2 is to be minimum . Also what is F2 and angle theta?arrow_forwardDetermine coordinate direction angle a of the resultant force acting at A. Given that FB = 726 N and FC = 756N . B. 2 m 3.5 m FB Fc 0.5 m 1.5 m 1m 0.5 m 1.5 m yarrow_forwardThree forces act on the bracket. The resultant force is directed along the positive x* axis and has a magnitude of 8 kN. Determine the magnitude of F. Determine the direction θ of F.arrow_forward
- The mast is subjected to three forces shown. Determine all the coordinate direction angles of F1 So that the resultant force action on the mast is zeroarrow_forwardDraw the FBD. Determine the magnitude of the resultant force and its direction, measured clockwise from the positive y-axis. F = 750 N 45 30 F = 625 N F = 850 Narrow_forwardThe truck shown below is to be towed using two ropes. If the resultant force is to be 950 N, directed along the positive x axis, determine the magnitudes of forces Fa and Fp acting in each rope and the angle 6 of Fp so that the magnitude of Fp is a minimum. Fa acts at 20° from the x axis as shown.arrow_forward
- If the magnitude of the resultant force is to be 500 N, directed along the positive y axis, determine the magnitude of force F and its direction 0. 15 700 Narrow_forwardIf o = 30°, F, = 5 kN, and the resultant force is to be directed along the positive y axis, determine the magnitude of the resultant force if F2 is to be a minimum. Also, what is F2 and the angle 0? F1 Farrow_forwardIf F = 30 lb and F = 40 lb, determine the angles 0 ana o so that the resultant force is directed along the positive x axis and has a magnitude of FR=60 lb.arrow_forward
- Since F1 = 200 N Theta = 15 °, determine the magnitude of the resultant force acting on the bracket and its direction measured counterclockwise from the positive x 'axis.arrow_forwardDetermine the resultant vector Fr = Fs +Fb and the angle theta so that the resultant vector lies on the postive X axiesarrow_forwardThe 700-Ib force acting on the frame is to be resolved into the two components acting along the axis of the struts AB and AC. If the component of force along AC is required to be 300 Ib, directed from A to C, determine the magnitude of the force acting along AB and the angle e of the 700-Ib force.arrow_forward
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