The distance that a free falling object falls is directly proportional to the square of the time it falls (before hits the ground). If an object fell 88ft in 3 seconds, how far will it have fallen by the end of 6 seconds? (Leave the variation constant in fraction form or round to at least 2 decimal places. Round your final answer to the nearest foot.)

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 91E
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The distance that a free falling object falls is directly proportional to the square of the time it falls (before hits the ground). If an object fell 88ft in 3 seconds, how far will it have fallen by the end of 6 seconds? (Leave the variation constant in fraction form or round to at least 2 decimal places. Round your final answer to the nearest foot.)
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Question 10 of 10, Step 1 of 1
The distance that a free falling object falls is directly proportional to the square of the time it falls (before it hits the ground). If an object fell
88 ft in
3 seconds, how far will it have fallen by the end of
6 seconds? (Leave the variation constant in fraction form or round to at least 2 decimal places. Round your final answer to the nearest foot.)
Answer
How to enter your answer
feet
© 2020 Hawkes Learning
tv
..
Transcribed Image Text:File Edit View History Bookmarks Window Help 合 A learn.hawkeslearning.com Untitled document - Google Docs Pair of Hawkes Single Sign On Lesson 14.8 Certify Mode Question 10 of 10 Step 1 of 1| Hawk. KASC - Save & Exit Certify Lesson: 14.8 Applications: Variation 7/10 Correct Question 10 of 10, Step 1 of 1 The distance that a free falling object falls is directly proportional to the square of the time it falls (before it hits the ground). If an object fell 88 ft in 3 seconds, how far will it have fallen by the end of 6 seconds? (Leave the variation constant in fraction form or round to at least 2 decimal places. Round your final answer to the nearest foot.) Answer How to enter your answer feet © 2020 Hawkes Learning tv ..
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