a skydiver falls toward the ground at a constant velocity. which statement best applies newtons laws of…

a skydiver falls toward the ground at a constant velocity. which statement best applies newtons laws of motion to explain the skydivers motion?\nan upward force balances the downward force of gravity on the skydiver.\nthe skydivers inertia is zero, which no longer allows for acceleration.\nan unbalanced force pulls the skydiver toward the ground.\nthe mass of the skydiver is so great that there is no acceleration.

a skydiver falls toward the ground at a constant velocity. which statement best applies newtons laws of motion to explain the skydivers motion?\nan upward force balances the downward force of gravity on the skydiver.\nthe skydivers inertia is zero, which no longer allows for acceleration.\nan unbalanced force pulls the skydiver toward the ground.\nthe mass of the skydiver is so great that there is no acceleration.

Answer

Brief Explanations:

According to Newton's first - law, an object moving at a constant velocity has a net force of zero acting on it. For a skydiver falling at a constant velocity, the upward air - resistance force balances the downward gravitational force. Inertia is never zero as it is related to mass ($F = ma$, and mass is non - zero). An unbalanced force would cause acceleration, and a large mass does not mean no acceleration ($a=\frac{F}{m}$).

Answer:

An upward force balances the downward force of gravity on the skydiver.