False. The answer depends on the specific situation and the object being moved. Both pushing and pulling can be effective methods depending on factors such as weight, shape, and surface conditions.
True. A force is a push or pull that can cause an object to move, stop, or change direction. It is a vector quantity that has magnitude and direction.
False. An object can accelerate without a push or pull acting on it if it is already in motion due to a previous push or pull. This is because of Newton's first law of motion, which states that an object will stay in its current state of motion unless acted on by an external force.
It is generally easier to pull an object than to push it. Pulling allows for better leverage and control over the object's movement.
False. Decreasing the mass of the wagon will not increase the force used to pull it. The force required to pull an object is dependent on its mass, so reducing the mass would actually decrease the force needed.
mass is how much weight an object has so mass (N) measures how much weight (G) an object has
True. A force is a push or pull that can cause an object to move, stop, or change direction. It is a vector quantity that has magnitude and direction.
True
It is true that if you are experiencing fatigue to pull over and get rest.
Work = Force times displacement The work done on an object is equal to the Force (push/pull) on the object in Newtons times the distance (in meters) that the object moves. If you push or pull on an object and it does NOT move (zero displacement), then no work is done on the object.
False. An object can accelerate without a push or pull acting on it if it is already in motion due to a previous push or pull. This is because of Newton's first law of motion, which states that an object will stay in its current state of motion unless acted on by an external force.
If an object accelerates, there must be a force acting on it according to newton's second law, so I would answer true.
It is generally easier to pull an object than to push it. Pulling allows for better leverage and control over the object's movement.
False. Decreasing the mass of the wagon will not increase the force used to pull it. The force required to pull an object is dependent on its mass, so reducing the mass would actually decrease the force needed.
True.
mass is how much weight an object has so mass (N) measures how much weight (G) an object has
Yes, that is correct. The force of gravity between two objects is directly proportional to the product of their masses. Therefore, an object with more matter will have a greater gravitational pull on it compared to an object with less matter.
this answer is false because when you go into space you start to float. So the answer is false. You loose the gravitational pull not gain gravitational pull.