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Gala2k [10]
3 years ago
12

I N E E D H E L P ! ! ! ! ! ! ! ! ! ! !!!!!!!!!

Mathematics
2 answers:
bixtya [17]3 years ago
8 0

Answer:

The answer is the first option

Step-by-step explanation:

Noah is correct because the two sides of the equation are equivalent expressions.

Hope this helps.

-Que

diamong [38]3 years ago
5 0

Answer:

The answer is the first option

Step-by-step explanation:

Noah is correct because the two sides of the equation are equivalent expressions.

Hope this helps.

-Que a.k.a. SadIcy

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14.10_3.05 help me out please ​
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Answer:

14.10>3.05

Step-by-step explanation:

6 0
3 years ago
The range of all real numbers x such that 2x − 5 < 7 and 4x + 10 > 6 is
hammer [34]
2x - 5 < 7
2x = 12
x = 6

4x + 10 > 6
4x = - 4
x = - 1

( - 1 , 6 )

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5 0
3 years ago
Complete the equation so that it has infinitely many solutions <br>1/2(4-z)​
I am Lyosha [343]

Answer:

4 - z

 —---

   2  

Step-by-step explanation:

3 0
3 years ago
Name the property used in: (5 + 2) + n = 7 + n
rjkz [21]
Additive indentity
(5 + 2) + n
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5+2 = 7
5 0
4 years ago
A random sample of 100 observations from a quantitative population produced a sample mean of 22.8 and a sample standard deviatio
natima [27]

Answer:

We conclude that the population mean is 24.

Step-by-step explanation:

We are given the following in the question:

Population mean, μ = 24

Sample mean, \bar{x} = 22.8

Sample size, n = 100

Alpha, α = 0.05

Sample standard deviation, s = 8.3

First, we design the null and the alternate hypothesis

H_{0}: \mu = 24\\H_A: \mu \neq 24

We use Two-tailed z test to perform this hypothesis.

Formula:

z_{stat} = \displaystyle\frac{\bar{x} - \mu}{\frac{s}{\sqrt{n}} }

Putting all the values, we have

z_{stat} = \displaystyle\frac{22.8 - 24}{\frac{8.3}{\sqrt{100}} } = -1.44

We calculate the p-value with the help of standard z table.

P-value = 0.1498

Since the p-value is greater than the significance level, we accept the null hypothesis. The population mean is 24.

Now, z_{critical} \text{ at 0.05 level of significance } = \pm 1.96

Since,  the z-statistic lies in the acceptance region which is from -1.96 to +1.96, we accept the null hypothesis and conclude that the population mean is 24.

7 0
3 years ago
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