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olga_2 [115]
4 years ago
13

Rationalize the denominator of $\frac{2}{3\sqrt{5} + 2\sqrt{11}}$ and write your answer in the form $\displaystyle \frac{A\sqrt{

B} + C\sqrt{D}}{E}$, where $B < D$, the fraction is in lowest terms and all radicals are in simplest radical form. What is $A+B+C+D+E$? PLEASE HELP ME I WILL DO ANYTHING
Mathematics
1 answer:
vlada-n [284]4 years ago
4 0

Answer:

<h2>19</h2>

Step-by-step explanation:

Given the surdic expression \frac{2}{3\sqrt{5} + 2\sqrt{11}}\\, to rationalize the expression, we will have to multiply the numerator and denominator of the expression by the conjugate of the denominator as shown;

= \frac{2}{3\sqrt{5} + 2\sqrt{11}} * \frac{3\sqrt{5} - 2\sqrt{11}}{3\sqrt{5} - 2\sqrt{11}}\\\\= \frac{2(3\sqrt{5} - 2\sqrt{11})}{(3\sqrt{5} + 2\sqrt{11})(3\sqrt{5} - 2\sqrt{11})}\\\\= \frac{6\sqrt{5} - 4\sqrt{11}  }{9\sqrt{25}+6\sqrt{55}- 6\sqrt{55}-4\sqrt{121}  } \\\\=  \frac{6\sqrt{5} - 4\sqrt{11}  }{9(5)-4(11)  }\\\\=  \frac{6\sqrt{5} - 4\sqrt{11}  }{45-44  }\\\\= \frac{6\sqrt{5} - 4\sqrt{11}  }{1}

Comparing the result \frac{6\sqrt{5} - 4\sqrt{11}  }{1} with the expression \frac{A\sqrt{B} + C\sqrt{D}}{E}, it can be seen that A = 6, B = 5, C = -4, D = 11 and E = 1

A+B+C+D+E = 6+5+(-4)+11+1

A+B+C+D+E = 11-4+12

A+B+C+D+E = 19

Hence the value of A+B+C+D+E is 19

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Answer:

98

Step-by-step explanation:

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5 0
3 years ago
Find the work (in ft-lb) required to pump all the water out of a cylinder that has a circular base of radius 7 ft and height 200
Virty [35]

Answer:

<em>work done is equal to 384279168 lb-ft</em>

<em></em>

Step-by-step explanation:

The cylinder has a circular base of 7 ft.

The height of the cylinder is 200 ft

The weight density of water in the cylinder is 62.4 lb/ft^3

First, we find the volume of the water in the cylinder by finding the volume of this cylinder occupied by the water.

The volume of a cylinder is given as \pi r^{2} h

where, r is the radius,

and h is the height of the cylinder.

the volume of the cylinder = 3.142* 7^{2}*200 = <em>30791.6 ft^3</em>

Since the weight density of water is 62.4 lb/ft^3, then, the weight of the water within the cylinder will be...

weight of water = 62.4 x 30791.6 = <em>1921395.84 lb</em>

We know that the whole weight of the water will have to be pumped out over the height of cylindrical container. Also, we know that the work that will be done in moving this weight of water over this height will be the product of the weight of water, and the height over which it is pumped. Therefore...

The work done in pumping the water out of the container will be

==> (weight of water) x (height of cylinder) = 1921395.84 x 200

==> <em>work done is equal to 384279168 lb-ft</em>

7 0
4 years ago
) Which value is equivalent <br><img src="https://tex.z-dn.net/?f=%20%7B7%7D%5E%7B3%7D%20" id="TexFormula1" title=" {7}^{3} " al
seraphim [82]

Answer:

343

Step-by-step explanation:

7^{3} = 7 * 7 * 7

7^3 = 343

-Chetan K

8 0
3 years ago
What is the solution to this system of linear equations?
WITCHER [35]

Answer:

(5, -1)

Step-by-step explanation:

x + y = 4

x - y = 6

Add the equations to eliminate y

2x = 10----> x=5

Substitute this value in any equation

5 + y = 4 ----> y = 4-5 ----> y= -1

7 0
4 years ago
Read 2 more answers
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