the height in feet, h, of a model rocket t seconds after launch is given by the equation h(t)=3 +…

the height in feet, h, of a model rocket t seconds after launch is given by the equation h(t)=3 + 70t-16t^{2}. the average rate of change in h(t) between t = 1 second and t = 3 second is 6. what does the average rate of change tell you about the rocket?\no the rocket is traveling six times as fast when t = 3 than it is when t = 1.\no the rocket is at a greater height when t = 3 than it is when t = 1.\no the rocket is 6 feet higher above the ground when t = 3 than it is when t = 1.\no the rocket is traveling at a constant rate of 6 feet per second between t = 1 and t = 3.

the height in feet, h, of a model rocket t seconds after launch is given by the equation h(t)=3 + 70t-16t^{2}. the average rate of change in h(t) between t = 1 second and t = 3 second is 6. what does the average rate of change tell you about the rocket?\no the rocket is traveling six times as fast when t = 3 than it is when t = 1.\no the rocket is at a greater height when t = 3 than it is when t = 1.\no the rocket is 6 feet higher above the ground when t = 3 than it is when t = 1.\no the rocket is traveling at a constant rate of 6 feet per second between t = 1 and t = 3.

Answer

Brief Explanations:

The average rate of change of a function over an interval represents the average speed or slope over that interval. For the height - function of the rocket, an average rate of change of 6 between (t = 1) and (t=3) means the rocket travels, on average, 6 feet per second over that time - interval.

Answer:

The rocket is traveling at a constant rate of 6 feet per second between (t = 1) and (t = 3).