Only if it goes faster and faster. Otherwise, if you have to push all the time and it maintains its speed, that means that the force of the pushing is balanced by other forces, usually friction.
Pushing a box that doesn't move indicates an unbalanced force. If the force of friction opposing the push is greater than the force you are exerting, the box will not move. In this case, the forces are unbalanced.
This is unbalanced force. Whenever a greater force is acting upon a smaller force, it is clearly unbalanced. I'm pretty sure this is the right answer because if you have the same science questions from a science textbook then my science teacher said it was unbalanced.
Pushing a rock is an unbalanced activity because it requires a force to overcome the rock's inertia and move it in a specific direction.
If a box is slowing down while being pushed, it suggests that there is an unbalanced force acting on it. The force causing the box to slow down is greater than the force pushing it, creating an imbalance.
When you stop pushing on a box and it slows down, it is due to an unbalanced force. The force of friction between the box and the surface is greater than the force you applied to move it, causing it to slow down.
Pushing a box that doesn't move indicates an unbalanced force. If the force of friction opposing the push is greater than the force you are exerting, the box will not move. In this case, the forces are unbalanced.
This is unbalanced force. Whenever a greater force is acting upon a smaller force, it is clearly unbalanced. I'm pretty sure this is the right answer because if you have the same science questions from a science textbook then my science teacher said it was unbalanced.
Pushing a rock is an unbalanced activity because it requires a force to overcome the rock's inertia and move it in a specific direction.
If a box is slowing down while being pushed, it suggests that there is an unbalanced force acting on it. The force causing the box to slow down is greater than the force pushing it, creating an imbalance.
When you stop pushing on a box and it slows down, it is due to an unbalanced force. The force of friction between the box and the surface is greater than the force you applied to move it, causing it to slow down.
Since there is an acceleration (a change of velocity), the forces are unbalanced.
An object starts to move when an unbalanced force is applied to it. This unbalanced force can come from pushing, pulling, or any other type of external force acting on the object.
An unbalanced force is a force that causes a change in an object's motion or shape. For example, pushing a shopping cart with a greater force on one side than the other will result in the cart moving in the direction of the stronger force, demonstrating unbalanced force.
Accelerate it! If the forces are unbalanced, the object will accelerate in the direction the uneven force is pushing on.
Consider an object in empty space. There are two forces pushing from opposite sides, one force (force A) on the left pushing with 2 newtons of force, the other (force B) on the right pushing with 1 newton. Since force A is pushing with a greater force than force B, the result will be the object moving right. The object is also moving with a force of 1 newton, because force A is 1 newton greater than force B.
well it dipends because if its a balanced force there wouldn't be change in movement and if its unbalanced force there would be some types of change of movement. i hope this made you realize the answer
Examples: Balanced: Two kids are playing tug of war. They are both exerting 4 Newtons of force. (Balanced forces=0 Newtons) Unbalanced: Two kids are playing tug of war. One kid is exerting 6 Newtons of force, the other is exerting 7 Newtons of force. (Unbalanced forces=1 or more Newtons difference[7N-6N=1N) Just because the forces are balanced, doesn't mean that they have to be less than the unbalanced forces. N=Newton