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1) The net force is 16 N to the right
2) The net force is 98 N to the left
3) The net force is 0.5 N downward
4) The net force is 170 N to the right
5) The net force is 175 N to the right
Explanation:
1)
To find the net force, we have to analyze all the forces acting on the box.
We have:
Therefore, the horizontal net force is
[tex]F_x = F_a - F_f = 20 - 4 = 16 N[/tex] (to the right)
While the vertical force is
[tex]F_y = F_N - F_g = 400 - 400 = 0[/tex]
So the net force is 16 N to the right.
2)
In this case, we have the following forces:
Therefore, the horizontal net force is
[tex]F_x =F_a - F_f = 100 -2 = 98 N[/tex] (to the left)
While the vertical force is
[tex]F_y = F_g - F_N = 4 - 4 = 0[/tex] (downward)
And so, the net force is 98 N to the left.
3)
The force acting on the squirrel in this problem are:
Both forces act vertically and there are no other forces acting in other directions, therefore the net force on the squirrel is simply equal to the net force on the vertical direction, which is:
[tex]F_y = F_g - F_f = 8 - 7.5 = 0.5 N[/tex]
And since the weight is larger than the air resistance, the direction of the net force is downward.
4)
The forces acting on Monkey are:
So, the net force in the horizontal direction is
[tex]F_x = F_1 + F_2 = 95+75=170 N[/tex] (to the right)
While the net force in the vertical direction is
[tex]F_y = F_N - F_g = 50 - 50 = 0[/tex]
And therefore the net force is 170 N to the right
5)
The forces acting on Deer are:
So the net horizontal force is
[tex]F_x = F_a - F_f = 200 - 25 = 175 N[/tex] to the right
While the net vertical force is
[tex]F_y = F_N - F_g = 150 - 150 = 0[/tex]
So the net force is 175 N to the right.
Learn more about vector addition:
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