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Yes, when forces are in the same direction, they can add together to create a push force that is stronger than each force individually. This is known as a "push" force.

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1y ago

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How two forces are added if they are not concurrent but acting in same direction?

When they are acting on the same object at the exact same spot. For example pressure pushes in every direction at 14.7 psi, say there is a box and you push it upward the force pushing up is more than the force pushing down.


When finding net force why must you the direction of the forces acting on an object?

To find the net force on an object, you must consider the directions of the individual forces because forces are vector quantities, meaning they have both magnitude and direction. Adding forces that are in the same direction leads to a larger net force, while forces in opposite directions can cancel each other out, affecting the object's overall motion.


If forces are working in the same direction you what?

If forces are working in the same direction, they will result in a net force that is the sum of the individual forces. This will cause an acceleration in the direction of the combined forces.


Why are vectors used to represt forces?

That simply means that when analyzing forces, the direction is quite often relevant. For example, if two people push an object in the same direction, the result will not be the same as if they push in opposite direction. A vector is simply a physical measurement that has both a magnitude (number) and a direction.


What happens when forces act in the same direction?

They will be added together and will create a larger force than either alone. This is similar to when two people push on a large box in the same direction as opposed to one person pushing alone.

Related Questions

How two forces are added if they are not concurrent but acting in same direction?

When they are acting on the same object at the exact same spot. For example pressure pushes in every direction at 14.7 psi, say there is a box and you push it upward the force pushing up is more than the force pushing down.


When finding net force why must you the direction of the forces acting on an object?

To find the net force on an object, you must consider the directions of the individual forces because forces are vector quantities, meaning they have both magnitude and direction. Adding forces that are in the same direction leads to a larger net force, while forces in opposite directions can cancel each other out, affecting the object's overall motion.


What direction do the gravitational forces act?

they not only push down on you but they push you from all directions


If forces are working in the same direction you what?

If forces are working in the same direction, they will result in a net force that is the sum of the individual forces. This will cause an acceleration in the direction of the combined forces.


Why are vectors used to represt forces?

That simply means that when analyzing forces, the direction is quite often relevant. For example, if two people push an object in the same direction, the result will not be the same as if they push in opposite direction. A vector is simply a physical measurement that has both a magnitude (number) and a direction.


What happens when forces act in the same direction?

They will be added together and will create a larger force than either alone. This is similar to when two people push on a large box in the same direction as opposed to one person pushing alone.


Would it be easier to push or pull something if the angle mass force applied and friction coefficient were the same for both?

If two forces are in the same direction, they aid one another, making it easier to push or pull.


If two forces push on object from opposite direction with exactly the same force what is the net force?

The net force on the object will be zero because the forces cancel each other out.


How do you calculate the net forces when two or more forces act in the same direction?

To calculate the net force when forces act in the same direction, simply add the magnitudes of all the individual forces together. The direction of the net force will remain the same as the direction of the individual forces.


How do you solve for the resultant if two forces are in the same direction?

To find the resultant of two forces that are in the same direction, simply add the magnitudes of the two forces together. The resultant will have a magnitude equal to the sum of the two forces, and it will also be in the same direction as the original forces.


What will happen if the the same charged object come together?

The electrostatic forces between two objects that have the same kind of charge act in the direction to push the objects apart.


What is th calculate net force for forces in the same direction?

To calculate the net force for forces in the same direction, simply add the magnitudes of the individual forces together to find the total force acting in that direction. The direction of the net force will be the same as the original forces.

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