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andreev551 [17]
3 years ago
15

H(x) = 2^xSolve the equation h^-1 (x) =0.5​

Mathematics
1 answer:
Ludmilka [50]3 years ago
8 0

Answer:

The answer is

<h2>\sqrt{2}  \:  \: or \:  \: 1.414</h2>

Step-by-step explanation:

<h3>h(x) =  {2}^{x}</h3>

To solve the equation we must first find h-¹(x)

To find h-¹(x) equate h(x) to y

That's

<h3>y =  {2}^{x}</h3>

<u>Next interchange the terms </u>

x becomes y and y becomes x

That's

<h3>{2}^{y}  = x</h3>

<u>Make y the subject</u>

Take logarithm to base 2 to both sides

That's

<h3>log_{2}( {2} )^{y}  =  log_{2}x \\ y  log_{2}2 =  log_{2}(x)</h3>

But

<h3>log_{2}(2)  = 1</h3><h3>y =  log_{2}(x)</h3>

So we have

<h3>{h}^{ - 1} (x) =  log_{2}(x)</h3>

Now we can solve the equation

We have

<h3>log_{2}(x)  = 0.5</h3>

Convert the logarithm into exponential form using the fact that

<h3>log_{a}(x)  = b \:  \:  \cong \:  \: x =  {a}^{b}</h3>

So we have

<h3>x =  {2}^{0.5}</h3>

But

<h3>{2}^{0.5}  =  \sqrt{2}</h3>

So we have the final answer as

<h3>\sqrt{2}  \:  \: or \:  \: 1.414</h3>

Hope this helps you

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Wetlands prevent flooding by temporarily storing and slowly releasing stormwater.

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Wetlands also reduce water flow, thus allowing sediments and associated pollutants to settle out. A marshland can prevent flooding in a nearby town bye temporarily storing water!

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Solve this two step equation = 6x + 8 = 74. Please solve for x.
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6x + 8 = 74

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Solve for x. <br> (13x + 12)
eduard

Answer:

=13x+12

Step-by-step explanation:

4 0
3 years ago
2)
vladimir1956 [14]

9514 1404 393

Answer:

  C, D

Step-by-step explanation:

It can work to see what sequence each defines:

  A) -8, -1, 6, ...

  B) -15, -8, -1, ...

  C) -22, -15, -8, ...

  D) -22, -15, -8, ...  .  .  .  .  matches C

  E) -29, -22, -15, ...

The two that define the same sequence are ...

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5 0
3 years ago
Rms/d/e/1FAIpQLSÜDABFGIUJs31xO8JDRug2175ehNYt_F-yaPG7RkyQmW5_puw/viewform?hr_submission=Chki-
geniusboy [140]

Answer:

12709 balls

Step-by-step explanation:

Given

Dimension of Room = 15 ft by 20 ft by 10 ft

Diameter of Ball = 9.2 inches

Required

Determine the number of balls that can be occupied by the room

First, we need to calculate the volume of the room

This is done by multiplying the dimensions of the room

Volume  = 15ft * 20ft * 10ft

Volume  = 3000ft^3

Next, we calculate the volume of the ball.

The ball is a sphere.

So:

Volume = \frac{4}{3}\pi r^3

Where

r = \frac{1}{2} * Diameter

r = \frac{1}{2} * 9.2

r = 4.6\ in

So:

Volume = \frac{4}{3}\ * \frac{22}{7} * (4.6in)^3

Volume = 407.88419\ in^3

To calculate the number of balls, we then divide the volume of the room by volume of a ball

Balls = \frac{3000\ ft^3}{407.88419\ in^3}

Convert ft^3 to in^3

Balls = \frac{3000 * 1728in^3}{407.88419\ in^3}

Balls = \frac{3000 * 1728}{407.88419}

Balls = \frac{5184000}{407.88419}

Balls = 12709.4899167

Balls = 12709 <em>-- approximated</em>

<em>Hence, the room will contain 12709 balls</em>

5 0
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