Please show FBD and this must be the TA=TB=278 N, TC = 2
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Please show FBD and this must be the TA=TB=278 N, TC = 262 N
![Determine the tensions in the three cables which
support the uniform 80-kg plate whose shape is that
of an equilateral triangle. The mass center G of the
plate is located one-third of the distance MC from M.
20°
| A
0.6 m
M
0.6 m
20°
B
G
1.2 m
1.2 m
C](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F188b4c87-3de5-40e5-a005-709d9c10153f%2Fcb6bedc7-a248-42eb-bd52-05da4e9fb892%2Fhas8iqn_processed.jpeg&w=3840&q=75)
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- Two blocks hanging vertically are connected by a heavy uniform rope of mass 3 kg . The blocks are pulled by an upward force of 300 N . Determine the tension at the top and midpoint of the heavy rope in N . The mass of the upper block is 6 kg while the lower box has a mass of 8 kg .Locate mass A at 35 mm from support X.Locate mass B at 96.5 mm from support X. Locate mass C at 122.7 mm from support X.Position mass A at zero degrees and D at 90o from A. A B C D mass(kg) 0.021 0.044 0.059 0.019 essentric length(r) m 0.036 0.025 0.034 0.036 6.1. Use the graphical method to determine the angular position of masses B and C.6.2. Calculate the position of mass D from support X.6.3. If the shaft rotates at 150 r.p.m calculate the dynamic force experienced by the bearings.Two uniform spheres are positioned as shown. Determine the gravitational force F which the titanium sphere exerts on the copper sphere. The value of R is 40 mm. Assume a - 5.0, b - 2.7, 0-38° y R Part 1 bR Your answer is partially correct. Titanium aR Copper Calculate the mass of each sphere. Assume a - 5.0, b - 2.7, 0-38. aR R Titanium Copper --x Answers: Titanium sphere m₂- i 1.1847 Copper sphere mc- 47.17 bR kg kg
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