Two kids play a game of tug-of-war%2C but the flag in the middle of the rope is NOT moving. What force is being applied to the rope%3F(1 point) Responses A kid applies more force in one direction. A kid applies more force in one direction. The kids apply equal force in opposing directions. The kids apply equal force in opposing directions. The kids apply equal forces in similar directions. The kids apply equal forces in similar directions. One kid applies force and the other does not.

The force being applied to the rope is: The kids apply equal forces in opposing directions.

In this scenario, the flag in the middle of the rope is not moving. To determine the force being applied to the rope, we need to analyze the forces being exerted by the two kids playing tug-of-war.

If the flag does not move, it means that the forces applied by the two kids are balanced or equal. In a tug-of-war game, when both participants apply equal force in opposite directions, the result is a state of equilibrium where the flag remains stationary.

Therefore, the correct answer is: The kids apply equal force in opposing directions.

The force being applied to the rope is: "The kids apply equal forces in opposing directions."

A student is moving furniture. Even though table A and table B are the same size%2C table A requires more force to move. Why%3F(1 point) Responses Table A has greater volume compared to table B. Table A has greater volume compared to table B. Table A has less density than table B Table A has less density than table B Table A has less weight than table B. Table A has less weight than table B. Table A has a greater mass than table B. Table A has a greater mass than table B.

The correct response is: Table A has greater mass than table B.

Newton's First Law says that an object at rest will remain at rest%2C and an object in motion will remain in motion unless it is acted on by an outside force. This is the law of__________.(1 point) Responses momentum momentum gravity gravity velocity velocity inertia

The law being referred to in the statement is the law of inertia.

A student is investigating mass and acceleration. The student applies the same force of 40 N force to two boxes that have the same size and shape. Box 1 experiences an acceleration of 10 m%2Fs^2 and box 2 experiences an acceleration of 5m%2Fs^2. The student claims that box 1 must have a smaller mass than box 2. Which argument best supports the student's claim%3F(1 point) Responses Lighter objects need greater force than heavier objects to start moving but will accelerate at the same rate. Lighter objects need greater force than heavier objects to start moving but will accelerate at the same rate. Heavier objects need greater force than lighter objects to accelerate at the same rate. Heavier objects need greater force than lighter objects to accelerate at the same rate. Lighter objects need less force than heavier objects to start moving but will accelerate at the same rate. Lighter objects need less force than heavier objects to start moving but will accelerate at the same rate. Heavier objects need less force than lighter objects to accelerate at the same rate.

The argument that best supports the student's claim is: Heavier objects need greater force than lighter objects to accelerate at the same rate.