Three forces acting on a spherical mass M are depicted in the diagram below. 50 8 se Force, Vertical-component (8) 40 30

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Three forces acting on a spherical mass M are depicted in the diagram below. 50 8 se Force, Vertical-component (8) 40 30

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Three Forces Acting On A Spherical Mass M Are Depicted In The Diagram Below 50 8 Se Force Vertical Component 8 40 30 1
Three Forces Acting On A Spherical Mass M Are Depicted In The Diagram Below 50 8 Se Force Vertical Component 8 40 30 1 (25.6 KiB) Viewed 19 times
Three Forces Acting On A Spherical Mass M Are Depicted In The Diagram Below 50 8 Se Force Vertical Component 8 40 30 2
Three Forces Acting On A Spherical Mass M Are Depicted In The Diagram Below 50 8 Se Force Vertical Component 8 40 30 2 (38.08 KiB) Viewed 19 times
Three forces acting on a spherical mass M are depicted in the diagram below. 50 8 se Force, Vertical-component (8) 40 30 20 10 -10 -30 -30-20-10 10 20 30 40 50 60 70 80 Force, Horizontal-component (N) A. Calculate the magnitude and direction (.e., the angle with respect to the positive H-axis, measured positive as counter- clockwise) of the total force acting on M. Notice that the arrows representing the forces end on grid intersections. Magnitude: Direction! SA Tries 0/20 B. When a fourth force is applied to the mass, it is observed that the velocity of the mass stops changing and remains constant. What are the horizontal and vertical components of that fourth force? Horizontal: Vertical: S
Force, Vertical-component (N) 60 50 40 30 20 10 0 -10 -20 -30 | -30 -20 -10 0 10 20 30 40 50 60 70 80 Force, Horizontal-component (N)
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