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Evgen [1.6K]
3 years ago
14

Expand & simplify: (x + 2)(x - 3)​

Mathematics
1 answer:
Zolol [24]3 years ago
5 0

Answer:

x^2 - x - 6

Step-by-step explanation:

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S=2 times 3.14 times radius times height + 2 times 3.14 times radius squared Whats that height
vladimir1956 [14]
S=2×3.14×r×h+2×3.14×r²

so,h={s / (6.28r)} - r
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What is the volume of 2mi, 6mi, 6mi, 3mi, 2mi rounded to the nearest tenth
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Can someone please help me with this? I’ll probably give brainliest if I can
Andreas93 [3]

Answer:

its the .43 answer

Step-by-step explanation:

the equation would be 3 championships over 7 years, through a unit rate calcualtor you get 0.428571 championsh per year(ignore the championsh, ran out of spaces) and that rounds up to .43

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Write the number 0.5 in the form a/b using integers
Llana [10]
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5 0
4 years ago
Most people complain that they gain weight during the December holidays. To find out how much, we sample the weights of 23 adult
kakasveta [241]

Answer:

The 88% confidence level for the average weight gain if between -1.30 lbs and 4.58 lbs.

Step-by-step explanation:

We have the standard deviation for the sample, which means that the t-distribution is used to solve this question.

The first step to solve this problem is finding how many degrees of freedom, we have. This is the sample size subtracted by 1. So

df = 23 - 1 = 22

88% confidence interval

Now, we have to find a value of T, which is found looking at the t table, with 22 degrees of freedom(y-axis) and a confidence level of 1 - \frac{1 - 0.88}{2} = 0.94. So we have T = 1.6176

The margin of error is:

M = T\frac{s}{\sqrt{n}} = 1.6176\frac{8.73}{\sqrt{23}} = 2.94

In which s is the standard deviation of the sample and n is the size of the sample.

The lower end of the interval is the sample mean subtracted by M. So it is 1.64 - 2.94 = -1.30 lbs

The upper end of the interval is the sample mean added to M. So it is 1.64 + 2.94 = 4.58 lbs

The 88% confidence level for the average weight gain if between -1.30 lbs and 4.58 lbs.

5 0
3 years ago
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