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Lera25 [3.4K]
2 years ago
14

Water is leaking out the bottom of a hemispherical tank of radius 9 feet at a rate of 2 cubic feet per hour. The tank was full a

t a certain time. How fast is the water level changing when its height h is 6 ​feet? Note​: the volume of a segment of height h in a hemisphere of radius r is pi h squared left bracket r minus left parenthesis h divided by 3 right parenthesis right bracket.
Mathematics
1 answer:
Murljashka [212]2 years ago
3 0

Answer:

The water level changing by the rate of -0.0088 feet per hour ( approx )

Step-by-step explanation:

Given,

The volume of a segment of height h in a hemisphere of radius r is,

V=\pi h^2(r-\frac{h}{3})

Where, r is the radius of the hemispherical tank,

h is the water level, ( in feet )

Here, r = 9 feet,

\implies V=\pi h^2(9-\frac{h}{3})

V=9\pi h^2-\frac{\pi h^3}{3}

Differentiating with respect to t ( time ),

\frac{dV}{dt}=18\pi h\frac{dh}{dt}-\frac{3\pi h^2}{3}\frac{dh}{dt}

\frac{dV}{dt}=\pi h(18-h)\frac{dh}{dT}

Here, \frac{dV}{dt}=-2\text{ cubic feet per hour}

And, h = 6 feet,

Thus,

-2=\pi 6(18-6)\frac{dh}{dt}

\implies \frac{dh}{dt}=\frac{-2}{72\pi}=-0.00884194128288\approx -0.0088

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A firm has a revenue function that can be represented by r (x)=700x-0.35x^2, where r (x) is the total revenue (in dollars) and x
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Answer:

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Step-by-step explanation:

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We need to differentiate r(x) and set it equal to 0 and solve for x.

<u><em>That would be number of units sold to get max revenue.</em></u>

<u><em /></u>

<u>Then we take that "x" value and substitute into r(x) to get the max revenue amount.</u>

<u />

Before differentiating, we see the rules shown below:

f(x)=ax^n\\f'(x)=n*ax^{n-1}

Where

f'(x) is the differentiated function

Now, let's do the process:

r (x)=700x-0.35x^2\\r(x)=700-2*0.35x\\r(x)=700-0.7x\\0=700-0.7x\\0.7x=700\\x=1000

So, 1000 units need to be sold for max revenue

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Step-by-step explanation:

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We are given that there are 10 people in the party

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To find the no. of possible handshakes between 10 people we will use combination over here

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