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- Resolve the force F2 into components acting along the u and v axes and determine the magnitudes of the components.Num what is the minimum distance x at which force F can be applied? B F =1004Question 1 Which direction does the normal force on the point in? M Ms Mx O Impossible to determine Directly upward Angle 0 from the horizontal Angle 0 from the vertical
- A. Express the force F in Cartesian vector notations; if the force F =400 N B. Express the position vector RON in Cartesian vector notation if point N has a coordinates (1,2,0) C. Determine the magnitude of the projection of force along the u axis. F = 600 N A 4 m 4m- y N (1,2,0) Acti Go toA) Prove by analytical method that the parallel forces in the same direction in a plane are a.P1 = b.P2.Determine the magnitude of the y-component of force Q (N) if P=108.8 N, Q = 72.5 N , θ= 42.25° and α = 43.45°. Round off only on the final answer expressed in 3 decimal places. Instead of units, indicate the direction of the y-component.
- i'm doing chapter 4 problem 12p in the college physics 11th edition text book. On bartleby it says that "total force along the x axis is fx= f1sin30degrees - f2sin10degrees" my question is that wouldnt it be the cosine since it is the x axis and not sin?? i put a image below7a. You pull a wagon along a level floor using a rope oriented horizontally in the positive x-direction. Draw a force diagram for the wagon.Draw the vectors starting at the black dot. The angle of the vectors will be graded. The length of your vectors will not be graded.30 ft _6 ft- 5 ft B ft The boy pulls on the rope with a force of 80 lb.
- Learning Goal: A man wishes to spin a merry-go-round in the x-y plane centered at the origin (0.000, 0.000, 0.000). (Figure 1) Because he must pull upward and cannot stand on the merry-go-round, he must apply a force in the direction of the unit vector u =(-1/3)i + (2/3)j + (2/3)k. He pulls with a force F= 324 N from point A [(1.10, 1.40, 0.000) m]. Figure 1 of 1 4Three forces act at point O. If it is known that the y-component of the resultant R is -5.4 kN and that the z-component is 4.3 kN, determine F3, 0, and R. F2 = 5.7 kN F = 6.7 kN y Answers: F3 = kN i R = i kNSolve for the coefficient of static friction (which is the same everywhere regardless of the surface), such that the blocks don't slide. Assume the blocks can be treated as points. Put your answer in terms of må, m³, g, and theta. TTT тв MA Ө E