A tank is discharging water through an orifice at a depth x (m) below the surface of water whose area A (m2). The following are the values of the (corresponding values of (A) w.r.t (x x (m) 1.5 1.65 1.5 1.95 2.10 2.25 2.4 2.55 2.7 2.85 3 A (m) 1.25 1.39 1.52 1.65 181 1.96 2.12 2.29 246 2.65 2.83 :Using the following formula 3.0 A T = |. dx 1.5 Calculate (T) for the level of water to drop from 1.5 m to 3 m by .Simpson's 1/3 rule
A tank is discharging water through an orifice at a depth x (m) below the surface of water whose area A (m2). The following are the values of the (corresponding values of (A) w.r.t (x x (m) 1.5 1.65 1.5 1.95 2.10 2.25 2.4 2.55 2.7 2.85 3 A (m) 1.25 1.39 1.52 1.65 181 1.96 2.12 2.29 246 2.65 2.83 :Using the following formula 3.0 A T = |. dx 1.5 Calculate (T) for the level of water to drop from 1.5 m to 3 m by .Simpson's 1/3 rule
Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 44SE: At the start of a trip, the odometer on a car read 21,395. At the end of the trip, 13.5 hours later,...
Related questions
Question
![A tank is discharging water through
an orifice at a depth x (m) below the
surface of water whose area A (m2).
The following are the values of the
(corresponding values of (A) w.r.t (x
x (m) 1.5 1.65
1.8 1.95 2.10 2.25 2.4 2.55 2.7 2.85 3
A (m) 1.25 1.39 1.52 1.65 1.81 1.96 2.12 2.29 2.46 2.65 2.83
:Using the following formula
3.0
T = L.
A
dx
1.5
Calculate (T) for the level of water
to drop from 1.5 m to 3 m by
.Simpson's 1/3 rule](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe8b35c84-f7a7-4116-8be7-6866af3eed7e%2Ffc8c1941-59fa-4035-b35c-8c78109f0502%2F1wcx32d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A tank is discharging water through
an orifice at a depth x (m) below the
surface of water whose area A (m2).
The following are the values of the
(corresponding values of (A) w.r.t (x
x (m) 1.5 1.65
1.8 1.95 2.10 2.25 2.4 2.55 2.7 2.85 3
A (m) 1.25 1.39 1.52 1.65 1.81 1.96 2.12 2.29 2.46 2.65 2.83
:Using the following formula
3.0
T = L.
A
dx
1.5
Calculate (T) for the level of water
to drop from 1.5 m to 3 m by
.Simpson's 1/3 rule
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