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Are you asking if a non-zero net force results in a change of motion? The answer is yes. Force is defined as mass times acceleration. Acceleration is the first derivative of velocity, i.e. the rate at which velocity changes. So if the net force is not zero, the net change in velocity is not zero, which says there is a change in motion.

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14y ago
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13y ago

There will be a net resulting force in one of the directions. To find this total force, make one force's direction positive and the opposite direction negative. Add these forces together, and the resulting force will be in the direction of the resulting sign.

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13y ago

From Newton's second law, the body accelerates in the direction of the net force.

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15y ago

It starts moving in the direction of the greater force.

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11y ago

yuydtyuyuyu

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Q: When forces of an object are not of the same magnitude in opposite directions?
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Describes forces working upon an object that are of equal magnitude and come from opposite directions?

This definition describes equilibrium.


What are equal forces acting on an object in opposite directions?

Equal forces acting on an object in opposite directions are called balanced forces. If they are on the same line of action, they are called couple forces.


What are for es of equal strength actingis opposite directions on an object called?

What are forces of equal strength acting in opposite directions on an object called


When two forces act equally on an object in opposite directions it is called?

balanced Forces


What is forces that cause a change in motion?

ANY force can cause a change in motion, as long as the sum of all the forces acting on an object is non-zero. For example, if two people pull on an object in opposite directions, and with forces that have the same magnitude, then the sum of the forces would be zero, and the object won't accelerate.


Are there any unusual ways forces can act in pairs?

Well, apart from two forces acting on the same point, they can act at different points. Thus, even if you have forces of equal magnitude in opposite directions, the object can start to rotate.Thus, there are two conditions for an object to be in equilibrium:1. The sum of all forces is zero.2. The sum of all torques is zero.Torque is the term used for forces that can cause rotation.Well, apart from two forces acting on the same point, they can act at different points. Thus, even if you have forces of equal magnitude in opposite directions, the object can start to rotate.Thus, there are two conditions for an object to be in equilibrium:1. The sum of all forces is zero.2. The sum of all torques is zero.Torque is the term used for forces that can cause rotation.Well, apart from two forces acting on the same point, they can act at different points. Thus, even if you have forces of equal magnitude in opposite directions, the object can start to rotate.Thus, there are two conditions for an object to be in equilibrium:1. The sum of all forces is zero.2. The sum of all torques is zero.Torque is the term used for forces that can cause rotation.Well, apart from two forces acting on the same point, they can act at different points. Thus, even if you have forces of equal magnitude in opposite directions, the object can start to rotate.Thus, there are two conditions for an object to be in equilibrium:1. The sum of all forces is zero.2. The sum of all torques is zero.Torque is the term used for forces that can cause rotation.


Can an object be in equilibrium if the object is acted on by two forces that point in directions that are not perpendicular?

Yes. To be in equilibrium, the forces must not be perpendicular - they must point in opposite directions.


If two equal forces act on an object in opposite directions the net force will be balanced?

Equal means the forces are of equal magnitude. And they act exactly in opposite directions. Then certainly the resultant effect will be zero. So we say that the forces are set in balanced condition. Hence balanced.


What is tension force and compression force?

Tension forces are two forces acting on one object, moving in opposite directions (away from one another) to stretch the object. Compression forces are two forces acting on one object, moving in opposite directions (towards one another) to compress or deform the object.


Is it possible for an object to not be in motion and still have forces acting on it?

Yes, the object can have equal forces acting in opposite directions: 5N ->[]<- 5N The object will have forces acting upon it, but will not move.


The mesurement of the force of gravity on an object is the objects?

The magnitude of the equal gravitational forces in both directions between the earth and any object on it is the object's "weight".


Why we need a net force to determine an object's motion?

At any moment, several forces may act on an object. If, for example, two forces of the same magnitude act in the opposite directions, they cancel each other. To accelerate an object, a net force, or total force, different from zero, is required.