Determine the resultant of the Forces shown. The Coordinate are in met
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Q: • A system of four forces acting at a point on a body is as shown in Fig. Determine the resultant.
A: TO FIND THE RESULTANT OF THE ABOVE FORCE SYSTEM:
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A: Step‐1 Given that
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Q: Determine the resultant of concurrent coplanar forces system shown in fig.
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Q: Determine the magnitude and location of the resultant of the force systems shown
A: The given force is, F1→=10 j^F2→=-20 j^F3→=-40 i^ The resultant force is, FR→=F1→+F2→+F3→FR→=10…
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A: Given data as per question Force applied at point D =632 lb Force applied at pointE =1000 lb Force…
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Q: Find the magnitude, location and slope of the resultant of the force system shown below.
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Q: Determine the resultant of the force system shown in Fig. 1 and locate it with respect to point G.
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Q: Determine the resultant of the three forces acting on the gusset plate of a truss. Verify results…
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Q: Compute the value and the direction of the resultant of the concurrent forces shown in the figure.
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Q: Determine the resultant of the force system shown in fig. and the angle e which ?the resultant makes…
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Q: Determine the resultant of the force system shown in Fig. (1) and locate it with respect to point A
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Q: Determine the resultant of four forces and one couple which act on the plant shown in Fig. below
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Q: Determine the resultant of the force system shown in fig. and its diarection if F1= 750 N ?and the…
A: F1=750 Nθ=35°F2=400 Nθ2=30°F3=600 N
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Q: Calculate the components of resultant force of the three coplanar concurrent forces, as shown.
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Q: : Determine the resultant of the force system shown in Fig. (1) and locate it with respect to polnt…
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Determine the resultant of the Forces shown. The Coordinate are in meters.
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- It can be show that a plane area may he represented by a vector A=A, where A is the area and represents a unit vector normal to the piano: of the area. Show that the area vector of the parallelogram formed by the vectors a and b shown in the figure is A=ab.Compute the dot product A - B for each of the following cases. Identify the units of each product. A=12j+8kftB=4i2j+3kftA=5i+3jmB=7i12kNA=3j+2j-kmB=6i+2j8kmThe intensity of the line loading acting on a quarter circle is w=w0(2/). Use intergration to determine the resultant of the loading and its line of action.
- The force R is the resultant of P and 0. Determine Q and the angle .The length of the position vector r is 240 mm. Determine the rectangular components of (a) r; and (b) the unit vector directed from O toward A.Determine the position of the resultant along the x-axis of the system of concurrent forces having the following magnitudes and passing through the origin and the indicated points: P=520 lb (+8,-6,+5), T=270 lb (-3,-4, +10), F=280 lb (+5,-3,-6). a.) 131.38° b.) None of the above c.) 48.62° d.) 49.61° e.) 67.73°
- Determine the position of the resultant along the z-axis of the system of concurrent forces having the following magnitudes and passing through the origin and the indicated points: P=520 lb (+8,-6,+5), T=270 lb (-3,-4, +10), F=280 lb (+5,-3,-6). a.)131.38° b.)48.62° c.)49.61° d.)67.73° e.) None of the abovePoints C and D are located at (1, 2, 4) m and (2, -1, 1) m respectively. Determine the length of DC and the angle COD, where O is the origin of the coordinates.What is the corresponding magnitude of the resultant?
- calculate the resultant of the following two forces: A = 30 g @ 45ᴼ B = 70 g @ 60ᴼKnowing that P = 120 lb and that the resultant of P and Q lies in the positive x-direction,determine Q and the magnitude of the resultant.Determine the resultant of the following concurrent forces: 8 N, 60o N of E and 40N, 45o N of W using: a. law of sine and cosine, andb. parallelogram method For b use the scale: 2N =1 cm.