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step 2 of 2: if we ignore air resistance, a falling body will fall \\(1…

Question

step 2 of 2: if we ignore air resistance, a falling body will fall \\(16t^2\\) feet in \\(t\\) seconds. what is the average velocity between \\(t = 4\\) and \\(t = 4.4\\)? round your answer to two decimal places if necessary.

Explanation:

Define the position function

Using the Position and Velocity Relations knowledge point

$$ s(t) = 16t^2 $$

Calculate position at the boundaries

Using the Position and Velocity Relations knowledge point

$$ LATEXBLOCK0 $$

Compute the average velocity

Using the Position and Velocity Relations knowledge point

$$ LATEXBLOCK1 $$

Answer:

If we ignore air resistance, a falling body will fall \(16t^2\) feet in \(t\) seconds. What is the average velocity between \(t = 4\) and \(t = 4.4\)? Round your answer to two decimal places if necessary.

<blank>134.4</blank> \(ft/s\)