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The net force is the sum of the individual forces, so in this case the net force would be 5.0 N since the forces are acting in the same direction.

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Q: What is the net force of a 2.0 N force and an 3.0 N force acting on an object in the same direction?
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What is the relationship between the net force acting on an object and the direction in which the object moves?

The net force acting on an object determines the acceleration of the object in the direction of the force. If the net force is in the same direction as the object's motion, the object will accelerate in that direction. If the net force is in the opposite direction, the object will decelerate or change direction.


When an object has a net force acting on it what happens to its velocity?

When an object has a net force acting on it, its velocity changes. The object will accelerate in the direction of the net force if the force is in the same direction as the object's velocity, decelerate if it's in the opposite direction, or change direction if the force is perpendicular to its velocity.


When 2 forces are acting on an object in the same direction we combine them by?

When two forces are acting on an object in the same direction, we combine them by adding their magnitudes together to find the net force acting on the object.


Why would a force be unbalanced?

In principle, any force acting on an object is unbalanced, UNLESS there is a second force in the opposite direction, acting on the same object.


A force acting on an object does no work if?

the force is not in the direction of the objects motion.


What is the relationship between an object's acceleration and the direction of the force on the object?

The acceleration of an object is directly proportional to the direction and magnitude of the force acting on it. If the force and acceleration are in the same direction, the object speeds up. If they are in opposite directions, the object slows down.


What list shows what can happen to the motion of an object when only one force is acting on the object?

When only one force is acting on an object, the motion of the object can include acceleration, deceleration, or a change in direction. The object may speed up if the force is in the same direction as the object's initial motion, slow down if the force is in the opposite direction, or change direction if the force is at an angle to the motion.


How about if the object is already in motion how will the unbalanced force affect its motion?

The unbalanced force will change the object's motion by causing it to accelerate in the direction of the force. If the unbalanced force is acting in the opposite direction of the object's motion, it will slow down the object. If the force is acting in the same direction as the object's motion, it will speed up the object.


In what directions can an object move when acted on by a force?

An object can move in the same direction as the force, in the opposite direction, or at an angle to the force, depending on the direction and magnitude of the force applied. The motion of the object is determined by the net force acting on it.


How are the direction of the an objects acceleration and direction of the same object change in velocity related?

The direction of an object's acceleration is determined by the direction of the net force acting on it. The change in velocity of the object is also influenced by this net force. Therefore, the direction of the object's acceleration and the direction of its change in velocity are related in that they are both affected by the net force acting on the object.


What happens to forces when they are acting in the same direction?

Two forces acting in the same direction add together. If those two forces are acting on an object, the object will accelerate faster than if there was only one force acting on the object.


What must be true when work is done?

When work is done, there must be a force acting on an object, and the object must move in the direction of the force. The amount of work done is calculated by multiplying the force applied by the distance the object moves in the direction of the force.