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When two forces act in opposite directions, what is the net force acting on the object?
  • a)
    Sum of the two forces
  • b)
    Difference between the two forces
  • c)
    Both of these
  • d)
    None of these
Correct answer is option 'B'. Can you explain this answer?
Most Upvoted Answer
When two forces act in opposite directions, what is the net force acti...
Understanding Net Force
When two forces act in opposite directions on an object, it is essential to determine the net force to understand how the object will move.
What is Net Force?
- Net force is the overall force acting on an object when all individual forces are combined.
- It determines the object's acceleration and direction of motion according to Newton's Second Law of Motion.
Forces Acting in Opposite Directions
- When two forces are applied in opposite directions, they can be thought of as competing against each other.
- For instance, if one force is pushing to the right and another is pushing to the left, the net effect is determined by the difference between these two forces.
Calculating the Net Force
- To find the net force, you take the difference between the magnitudes of the two forces.
- If Force A is 5 N to the right and Force B is 3 N to the left, the net force would be calculated as follows:
- Net Force = 5 N (right) - 3 N (left) = 2 N (right)
Conclusion
- Therefore, when two forces act in opposite directions, the correct way to find the net force is by calculating the difference between the two forces (option B).
- This difference will determine the direction and magnitude of the net force acting on the object, influencing its motion effectively.
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Community Answer
When two forces act in opposite directions, what is the net force acti...
When two forces act in opposite directions, the net force is found by subtracting the smaller force from the larger one. The direction of the net force will be in the direction of the larger force. If both forces were acting in the same direction, you would add them. Therefore, the net force is the difference between the two forces when they act in opposite directions.
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