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Cables T1 and T2 have values of 800 and 300 respectively. Determine the components of T1...
Cables T1 and T2 have values of 800 and 300 respectively. Determine the components of T1 along the u and v axes. Find the magnitude of the resultant force T. T2 15° 80" 30 T
Cables T1 and T2 have values of 800 and 300 respectively. Determine the components of T1 along the u and v axes. Find the magnitude of the resultant force T. Tz 15° ►u 80° 30° T1
10. Vector Operations Cables T1 and T2 have values of 800 and 300 respectively. Determine the components of T1 along the u and v axes. Find the magnitude of the resultant force T. 15° ►u 30 80 Ti
2-6. Determine the magnitude of the resultant force FR = F1 + F2 and its direction, measured clockwise from the positive u axis. 2-7. Resolve the force F1 into components acting along the u and v axes and determine the magnitudes of the components. 2-8. Resolve the force F2 into components acting along the u and v axes and determine the magnitudes of the components.
Resolve the 29-lb force F into components along the u and v axes. 0 15% 30° lu Part A Determine the magnitude of u component. Express your answer to three significant figures and include the appropriate units. Part B Determine the magnitude of v component. Express your answer to three significant figures and include the appropriate units.
If the tensions in cables DA and DB are TDA=8.49 lb and TDB=5.64 lb, respectively, what is the tension in cable DC? Express your answer to three significant figures and include the appropriate units. Learning Goal: To determine Cartesian force components from magnitude and determine position and resultant vectors by summing Cartesian components. As shown, a 2.9-lb ball is suspended at point D inside a box with dimensions w = 8.70 ft, d = 6.60 ft. and h = 4.50...
1Two particles have a mass of 800 kg and 1200 kg, respectively. If they are 3m apart, determine: a) the force of gravity acting between them and b) the weight of each particle. 21 Determine the magnitude and coordinate direction angles of the resultant force acting at A. 2 m Fy = 600 N 3.5 m 0.5 m Fc 450 N 1.5 m 1 m 1.5 m 0.5 m
Any vector can be resolved into unique components along any pair of axes, even when those axes are not orthogonal. Determine the components of T along the u-and v-axes shown, knowing that T = 1.6 kN and = 43. Enter the magnitude of the u-component below. Express you answer in KN to the nearest 10 N. Your written solution submission must include calculations for both the u-component and the v-component.
1. In the design of an experiment we have a treatment T with four levels T1,T2,T3, T4. We are planning to use CRD model and we have only n-20 observations available. Gj, Г, 2, 3, 4:3 How should we allocate the n observations to the four treatments to minimize the average variance of the estimated treatment effects AV = 슷 (var(T1) + var(T2) + var(fs) + var(T4)) UaT T4 Hint: Find the values of r, by minimizing AV subject to...
11200 Determine the components of the 1600 Rb force along directions, p and respectively 250 V 1600 lb