Why does an attractive force always have a negative sign?

In summary, the use of a negative sign in equations of physics, specifically for attraction forces, is due to the convention of using positive and negative signs to represent direction in a coordinate system. In the case of gravitational force, the negative sign is used to indicate the attractive nature of the force, as it acts in the opposite direction of the positive r axis. This convention can also be applied to charged particles, where like charges give a positive force and unlike charges give a negative force. The negative sign is also used in equations for work done by an attraction force, such as gravitational potential, to indicate that the work is done by the force itself and not an external force. This is due to the relationship between the direction of the force and the sign
  • #1
Shafia Zahin
31
1
I've seen in many equations of physics that whenever we demonstrate an attraction force we tend to use a negative sign before it,why is that? In case of coulomb force it makes sense because when the charged particles are of opposite signs a negative sign is sure to be appeared.But why do we necessarily use it for gravitational force?Well,I know that we use the negative sign for gravitational force for vector representation only.That's all right,but I want to know whenever we use a work done by an attraction force we use a negative sign,viz: the gravitational potential.It is written in books that the gravitational potential is negative because the work to bring an object from infinity to the gravitational field is done by the gravitational force itself,no external force is provided.But what's the relation between the gravitational force's doing the work and the sign's becoming negative?
Shafia.
 
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  • #2
In the usual radial coordinate system the positive r direction is outward. So a repulsive force is in the positive r direction and an attractive force is in the negative r direction .
 
  • #3
Think of it like this Positive(P) x Negative(N) always gives you a Negative(N), whereas when you times PxP or NxN It always equals to P. you can apply this to Charged Particles Two postives give a Repulsive force ( P) and two non-alike charges give a Negative, therefore you can say that attraction is negative.
 
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1. Why does an attractive force always have a negative sign?

The negative sign in an attractive force represents the direction of the force, which is towards the center of the objects involved. This is due to the fact that attractive forces, such as gravity or electromagnetism, pull objects towards each other rather than pushing them away.

2. Is there a specific reason for the negative sign in an attractive force?

Yes, the negative sign in an attractive force is a mathematical convention used to indicate direction. In physics, it is important to specify both the magnitude and direction of a force, and the negative sign helps us do so.

3. Does the negative sign in an attractive force always mean the force is "bad" or "negative"?

No, the negative sign in an attractive force has nothing to do with the force itself being negative or bad. It is simply a mathematical symbol used to indicate direction, and it does not affect the nature or strength of the force.

4. Can an attractive force have a positive sign instead?

No, attractive forces cannot have a positive sign because they always pull objects towards each other. The positive sign is typically used to represent repulsive forces, which push objects away from each other.

5. How does the negative sign in an attractive force affect the equations and calculations involving the force?

The negative sign in an attractive force is crucial in accurately representing the direction and magnitude of the force in equations and calculations. It ensures that the correct vector operations are performed and the correct result is obtained.

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