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.
What two forces? If two forces go in opposite directions, and have the same magnitude, they will be balanced. Otherwise they wont'.
When two forces act in opposite directions on an object, they create a net force that is the difference between the two forces. The object will accelerate in the direction of the greater force. If the two forces are equal in magnitude, the object will remain stationary or continue moving at a constant velocity.
Yes, it is false that balanced forces are equal forces acting on an object in opposite directions. Balanced forces are equal in magnitude and opposite in direction, resulting in no overall change in an object's motion. When forces are balanced, the object will either remain at rest or move at a constant velocity.
When two forces of equal magnitude act in opposite directions on an object, it is called balanced forces. This results in no change in the object's motion.
If forces are equal, it means that they have the same magnitude but opposite directions. This results in a state of equilibrium, where there is no net force acting on the object.
What two forces? If two forces go in opposite directions, and have the same magnitude, they will be balanced. Otherwise they wont'.
When two forces act in opposite directions on an object, they create a net force that is the difference between the two forces. The object will accelerate in the direction of the greater force. If the two forces are equal in magnitude, the object will remain stationary or continue moving at a constant velocity.
Yes, it is false that balanced forces are equal forces acting on an object in opposite directions. Balanced forces are equal in magnitude and opposite in direction, resulting in no overall change in an object's motion. When forces are balanced, the object will either remain at rest or move at a constant velocity.
When two forces of equal magnitude act in opposite directions on an object, it is called balanced forces. This results in no change in the object's motion.
If forces are equal, it means that they have the same magnitude but opposite directions. This results in a state of equilibrium, where there is no net force acting on the object.
Equal forces have the same magnitude and opposite directions, resulting in a balanced situation. Unequal forces have different magnitudes or directions, leading to an unbalanced situation where there is a net force acting on an object.
A pair of forces that are equal in magnitude but opposite in direction is called a balanced force. When balanced forces act on an object, they cancel each other out, resulting in no change in the object's motion.
Yes, both balanced and unbalanced forces have direction. Balanced forces have equal magnitude and opposite directions, resulting in no overall change in an object's motion. Unbalanced forces have unequal magnitudes or directions, causing changes in an object's motion.
What are forces of equal strength acting in opposite directions on an object called
When two forces act on an object in opposite directions, the net force is the difference between the two forces. The object will accelerate in the direction of the larger force. If the forces are equal in magnitude, the object will remain at rest or continue moving at a constant velocity.
Balanced forces have equal magnitude and opposite directions, resulting in no overall change in an object's motion. Unbalanced forces have unequal magnitude or are not opposite in direction, causing acceleration or deceleration of an object. Unbalanced forces can exert pressure by causing objects to move or change their speed or direction, such as when pushing or pulling an object.
When equal forces act on an object in opposite directions, they create a state of balance known as equilibrium. This means that the object will not accelerate in any particular direction, but remain stationary or move at a constant velocity.