Water Supply The flow rate R (in thousands of iters per hour) of water at a pumping station during a day can be modeled by R= 53 +7 sin + 3.6) + 9 cos 6. 12 0SIS 24 where t is the time (in hours), with 1 = 0 corresponding to midnight. (a) Find the average hourly flow rate from midnight to noon (0 sts 12). (b) Find the average hourly flow rate from noon to midnight (12 sIS 24). (c) Find the total volume of water pumped in one day.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter6: The Trigonometric Functions
Section: Chapter Questions
Problem 41RE
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please help me ! I need this question for the proof and answer

Water Supply The flow rate R (in thousands of
iters per hour) of water at a pumping station during a
day can be modeled by
R= 53 +7 sin
+ 3.6) + 9 cos
6.
12
0SIS 24
where t is the time (in hours), with 1 = 0 corresponding
to midnight.
(a) Find the average hourly flow rate from midnight to
noon (0 sts 12).
(b) Find the average hourly flow rate from noon to
midnight (12 sIS 24).
(c) Find the total volume of water pumped in one day.
Transcribed Image Text:Water Supply The flow rate R (in thousands of iters per hour) of water at a pumping station during a day can be modeled by R= 53 +7 sin + 3.6) + 9 cos 6. 12 0SIS 24 where t is the time (in hours), with 1 = 0 corresponding to midnight. (a) Find the average hourly flow rate from midnight to noon (0 sts 12). (b) Find the average hourly flow rate from noon to midnight (12 sIS 24). (c) Find the total volume of water pumped in one day.
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