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zalisa [80]
3 years ago
11

QUESTION IS GIVEN IN PICTURE NEED HELP!!!

Mathematics
2 answers:
slava [35]3 years ago
7 0

Answer:

1st one

Step-by-step explanation:

jonny [76]3 years ago
3 0

Answer:

<h2>The slopes of f(x) and g(x) are the same.</h2>

Step-by-step explanation:

The slope-intercept form of an equation of a line:

y=mx+b

<em>m</em> - slope

<em>b</em> - y-intercept

The formula of a slope:

m=\dfrac{y_2-y_1}{x_2-x_1}

========================================

We have:

f(x)=3x+6\to m_f=3

From the table:

(1,\ 3),\ (2,\ 6)\\\\m_g=\dfrac{6-3}{2-1}=\dfrac{3}{1}=3

m_f=m_g=3

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Step-by-step explanation:

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Give an example of an equation with an infinite number of solutions. Then make one change to the equation so that it has no solu
mrs_skeptik [129]
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3 years ago
At 95% confidence, how large a sample should be taken to obtain a margin of error of 0.03 for the estimation of a population pro
Gnom [1K]

Answer:

A sample of 1068 is needed.

Step-by-step explanation:

In a sample with a number n of people surveyed with a probability of a success of \pi, and a confidence level of 1-\alpha, we have the following confidence interval of proportions.

\pi \pm z\sqrt{\frac{\pi(1-\pi)}{n}}

In which

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The margin of error is:

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95% confidence level

So \alpha = 0.05, z is the value of Z that has a pvalue of 1 - \frac{0.05}{2} = 0.975, so Z = 1.96.

At 95% confidence, how large a sample should be taken to obtain a margin of error of 0.03 for the estimation of a population proportion?

We need a sample of n.

n is found when M = 0.03.

We have no prior estimate of \pi, so we use the worst case scenario, which is \pi = 0.5

Then

M = z\sqrt{\frac{\pi(1-\pi)}{n}}

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0.03\sqrt{n} = 1.96*0.5

\sqrt{n} = \frac{1.96*0.5}{0.03}

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n = 1067.11

Rounding up

A sample of 1068 is needed.

8 0
3 years ago
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