Calculating Net Force and Resistive Force on a Boulder

In summary, three forces (F1=(600N, 130 degrees), F2=(780N, 200 degrees), and F3=(550N, 165 degrees)) were applied to a large boulder in an attempt to move it. By using the equations Vx= Vcos and Vy= Vsin for each force, the resultant or net force was calculated to be 1622(-i) + 325 (j). The second part of the question asked about the resistive force acting on the boulder, but this cannot be determined without additional information. It is important to note that the net force does not necessarily indicate movement, as there may be a resistive force that is equal to the net force.
  • #1
Ricky006
2
0

Homework Statement


Three Forces are applied to a large boulder in an attempt to move it. The Forces are F1=(600N, 130 degrees), F2=(780N, 200 degrees), and F3=(550N, 165 degrees). What is the net force acting on the boulder? If the boulder does not move, what is the resistive force acting



Homework Equations


Vx= Vcos
Vy= Vsin



The Attempt at a Solution


Used Vx= Vcos and Vy= Vsin for each force and got

y: 450+(-267)+(142) = 325
x: (-386)+(-705)+(-531) = -1622

1622(-i) + 325 (j) for the resulatant or net force.

the second part of the question is what I am stuck on. i guess from the resultant the boulder is moving so there has to be a resistive force but i don't know how to get there.
 
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  • #2
It seems part of your question is missing. But in finding your net force from the 3 forces, it doesn't require that the rock moves, if that is your thinking.

There's that action reaction thing to keep in mind and knowing their net force doesn't mean that the rock necessarily moves. Press down on your desk. Let's say it doesn't move, but in not moving it doesn't mean that you applied no force. In not moving it merely indicates that the resistive force was up to the task of not allowing the object to move. If the net of the 3 forces and the resistive force is positive, then it will begin to move by F = m*a.
 
  • #3
i don't think I'm missing anything from the question cause that's all it says for me. i did the net force part right though?
 

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