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erica [24]
3 years ago
13

Which of these curves on the graph below could indicate a function?

Mathematics
1 answer:
grandymaker [24]3 years ago
6 0

Answer:

A

Step-by-step explanation:

Vertical Line test will determine if a graph is a function or not

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Write the equation in function notation. <br> 25x -5y = 35
Mrrafil [7]

Answer:

F(x) = 5x - 7

Step-by-step explanation:

25x - 5y = 35

-5y = - 25x +35

Y = 5x - 7

F(x) =5x - 7

7 0
3 years ago
Need help i dont know what I am doing
aev [14]

Answer:

answer below:)

Step-by-step explanation:

Basically, start off by simplifying each pair of numbers.

The first one: 2^{2} x 5 = 4 x 5 = 20

The second one: 11^{1}= 11

The third: 8^{2}-60 = 64 - 60 = 4

Now from least to greatest, so that would be 4, 11, 20 or in this case it would then be 8^{2}-60,  11^{1},  2^{2} x 5

Hope it helped, good luck!!

5 0
3 years ago
If g(x) = (x + 2)/3, find g(-8).
alisha [4.7K]

Answer:

-2

Step-by-step explanation:

Substitute -8 in place of x and you get (-8+2)/3 or -6/3 which is -2

7 0
3 years ago
Read 2 more answers
(3.2 x 1010)(3.75 x 106)<br> (4 x 106)(6 x 105)
Deffense [45]
<span>1284720 is the answer to the first one
</span>
<span>267120 is the answer to the second one</span>
8 0
3 years ago
Read 2 more answers
The lifetime of LCD TV sets follows an exponential distribution with a mean of 100,000 hours. Compute the probability a televisi
kondaur [170]

Answer:

0.9

0.3012

0.1809

230258.5

Step-by-step explanation:

Given that:

μ = 100,000

λ = 1/μ = 1 / 100000 = 0.00001

a. Fails in less than 10,000 hours.

P(X < 10,000) = 1 - e^-λx

x = 10,000

P(X < 10,000) = 1 - e^-(0.00001 * 10000)

= 1 - e^-0.1

= 1 - 0.1

= 0.9

b. Lasts more than 120,000 hours.

X more than 120000

P(X > 120,000) = e^-λx

P(X > 120,000) = e^-(0.00001 * 120000)

P(X > 120,000) = e^-1.2

= 0.3011942 = 0.3012

c. Fails between 60,000 and 100,000 hours of use.

P(X < 60000) = 1 - e^-λx

x = 60000

P(X < 60,000) = 1 - e^-(0.00001 * 60000)

= 1 - e-^-0.6

= 1 - 0.5488116

= 0.4511883

P(X < 100000) = 1 - e^-λx

x = 100000

P(X < 60,000) = 1 - e^-(0.00001 * 100000)

= 1 - e^-1

= 1 - 0.3678794

= 0.6321205

Hence,

0.6321205 - 0.4511883 = 0.1809322

d. Find the 90th percentile. So 10 percent of the TV sets last more than what length of time?

P(x > x) = 10% = 0.1

P(x > x) = e^-λx

0.1 = e^-0.00001 * x

Take the In

−2.302585 = - 0.00001x

2.302585 / 0.00001

= 230258.5

3 0
4 years ago
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