No. If the forces on an object are unbalanced, that means their sum is not zero,
and there is a net force on the object. Since there is a net force on it, the object
is accelerated, which is another way of saying that its velocity changes.
No. An unbalanced force causes motion, but balanced forces keep a body in motion in a straight line at constant velocity, or at rest at constant 0 velocity.
If forces on an object are balanced, the object will not accelerate - i.e., its velocity won't change.
Balanced forces on an object result in no change in its motion, as the forces cancel each other out. Unbalanced forces cause an object to accelerate in the direction of the net force applied. For a stationary object, balanced forces maintain its position, while unbalanced forces cause it to start moving. An object moving at a constant velocity experiences balanced forces, while unbalanced forces can change its speed or direction.
No, an unbalanced force will cause an object to accelerate, not move at a constant velocity. The object will continue to accelerate in the direction of the unbalanced force until a balanced force is applied.
When forces are balanced, the object remains at rest or continues to move at a constant velocity. When forces are unbalanced, there is a net force acting on the object, causing it to accelerate in the direction of the greater force.
If the group of forces on an object is unbalanced, then the object can't have constant velocity. Its speed or the direction of its motion must change.
No. An unbalanced force causes motion, but balanced forces keep a body in motion in a straight line at constant velocity, or at rest at constant 0 velocity.
If forces on an object are balanced, the object will not accelerate - i.e., its velocity won't change.
Balanced forces on an object result in no change in its motion, as the forces cancel each other out. Unbalanced forces cause an object to accelerate in the direction of the net force applied. For a stationary object, balanced forces maintain its position, while unbalanced forces cause it to start moving. An object moving at a constant velocity experiences balanced forces, while unbalanced forces can change its speed or direction.
An object with balanced forces acting on it is still. An object with unbalanced forces acting on them moves at an non constant velocity. It is possible for an object to have balanced forces acting on it and yet move in a vacuum.
No, an unbalanced force will cause an object to accelerate, not move at a constant velocity. The object will continue to accelerate in the direction of the unbalanced force until a balanced force is applied.
When forces are balanced, the object remains at rest or continues to move at a constant velocity. When forces are unbalanced, there is a net force acting on the object, causing it to accelerate in the direction of the greater force.
An object with balanced forces acting on it is still. An object with unbalanced forces acting on them moves at an non constant velocity. It is possible for an object to have balanced forces acting on it and yet move in a vacuum.
Balanced forces are used to keep an object at rest or moving at a constant velocity, while unbalanced forces are used to accelerate or decelerate an object. Both types of forces are necessary to understand the motion of objects and how they interact with their environment.
No force is necessary to maintain constant speed.A balanced group of forces is equivalent to no force.An unbalanced group of forces is equivalent to someforce,which is capable of changing the speed of something.
If no unbalanced forces act on an object at rest, it will remain at rest due to Newton's first law of motion, which states that an object will stay at rest or in motion with a constant velocity unless acted upon by an unbalanced force.
When the forces on an object are balanced, the object will either remain at rest or continue to move at a constant velocity. This is in accordance with Newton's First Law of Motion, which states that an object will maintain its state of motion unless acted upon by an unbalanced force.