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Colt1911 [192]
3 years ago
9

Another question heh heh :|

Mathematics
2 answers:
Nonamiya [84]3 years ago
8 0

Answer:

The answer should be 10 + x

Hope this helped, have a nice day!

Can i have Brainlyest please?

Thanks for you post. XD


Gnesinka [82]3 years ago
7 0

Answer:

2n=10

Step-by-step explanation:

Distribute the 2 to each term. 2xn=2n and 2x5=10. then you put them together.

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Solve for x. write both solutions separated by a comma. 2x^2-5x+2=0​
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BY USING MIDDLE TERM SPLITTING,

2x^2-(4x+x)+2=0

(2x^2-4x)-(x-2)=0

2x(x-2)-1(x-2)=0

(2x-1)(x-2)=0

Two solutions are 2, 1/2

HOPE THIS WILL HELP U

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3 years ago
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bonufazy [111]

Answer:

it a

Step-by-step explanation:

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2(3x + 4) = 4x + 22 what is x
Misha Larkins [42]

Answer:

x = 7

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Step-by-step explanation:

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Can y’all help me on question five?!
prohojiy [21]
B. 15:2

hope this helped!
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Are most student government leaders extroverts? According to Myers-Briggs estimates, about 82% of college student government lea
nataly862011 [7]

Answer:

z=-1.12  

p_v =2*P(z  

So with the p value obtained and using the significance level given \alpha=0.01 we have p_v>\alpha so we can conclude that we don't have enough evidence to reject the null hypothesis, and we can said that at 1% of significance the population proportion of extroverts among college student government leaders is not different from 0.82.  

Step-by-step explanation:

1) Data given and notation

n=74 represent the random sample taken

X=57 represent the number of people found extroverts

\hat p=\frac{57}{74}=0.770 estimated proportion of people found  extroverts.

p_o=0.82 is the value that we want to test

\alpha=0.01 represent the significance level

Confidence=99% or 0.959

z would represent the statistic (variable of interest)

p_v represent the p value (variable of interest)  

2) Concepts and formulas to use  

We need to conduct a hypothesis in order to test if population proportion of extroverts among college student government leaders is different (either way) from 82%, the system of hypothesis would be on this case:  

Null hypothesis:p= 0.82  

Alternative hypothesis:p \neq 0.82  

When we conduct a proportion test we need to use the z statisitc, and the is given by:  

z=\frac{\hat p -p_o}{\sqrt{\frac{p_o (1-p_o)}{n}}} (1)  

The One-Sample Proportion Test is used to assess whether a population proportion \hat p is significantly different from a hypothesized value p_o.

3) Calculate the statistic  

Since we have all the info requires we can replace in formula (1) like this:  

z=\frac{0.770 -0.82}{\sqrt{\frac{0.82(1-0.82)}{74}}}=-1.12  

4) Statistical decision  

It's important to refresh the p value method or p value approach . "This method is about determining "likely" or "unlikely" by determining the probability assuming the null hypothesis were true of observing a more extreme test statistic in the direction of the alternative hypothesis than the one observed". Or in other words is just a method to have an statistical decision to fail to reject or reject the null hypothesis.  

The significance level provided \alpha=0.01. The next step would be calculate the p value for this test.  

Since is a bilateral test the p value would be:  

p_v =2*P(z  

So with the p value obtained and using the significance level given \alpha=0.01 we have p_v>\alpha so we can conclude that we don't have enough evidence to reject the null hypothesis, and we can said that at 1% of significance the population proportion of extroverts among college student government leaders is not different from 0.82.  

4 0
3 years ago
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