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Gemiola [76]
4 years ago
12

What does 1+y=x2= plz help

Mathematics
1 answer:
Valentin [98]4 years ago
7 0
Why my friend it is 3

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Kazeer [188]

2nd is good no cap about it

4 0
3 years ago
Read 2 more answers
A meat inspector has randomly selected 30 packs of 95% lean beef. The sample resulted in a mean of 96.2% with a sample standard
kirza4 [7]

Answer:

a

 The upper bound of the 99% prediction level is 98.2  

b

 The  95% confidence interval is 9.7383 <  \mu < 10.2617

Step-by-step explanation:

Considering first question

From the question we are told that

   The sample size is  n  =  30  

   The sample mean is  \= x  =  96.2\%

   The standard deviation is s  = 0.8\%

Generally the degree of freedom is mathematically represented as

        df  =  n - 1

=>      df  =  30 - 1

=>      df  =  29

From the question we are told the confidence level is  99% , hence the level of significance is    

      \alpha = (100 - 99 ) \%

=>   \alpha = 0.01

Generally from the t distribution table the critical value  of   at a degree of freedom of is  

   t_{\alpha , 29} = 2.462

Generally the  99%  prediction level is mathematically represented as

      \= x \pm [(t_{\alpha  , df }) * s * (\sqrt{1 + \frac{1}{ n} } )}]

Generally the upper bound of the 99%  prediction level is mathematically represented as

      \= x + [(t_{\alpha  , df }) * s * (\sqrt{1 + \frac{1}{ n} } )}]  

=>    96.2 + (2.462 ) * 0.8 * (\sqrt{1 + \frac{1}{ 30} } )}]  

=>    98.2  

Considering second question

 Generally the sample is mathematically represented as

             \= x  = \frac{\sum x_i}{n}

=>           \= x  = \frac{ 9.8 + 10.2 + \cdots +9.6 }{7}  

=>           \= x  =  10    

Generally the standard deviation  is mathematically represented as

           \sigma =  \sqrt{ \frac{ \sum ( x_ i - \= x)}{n-1} }

=>        \sigma =  \sqrt{ \frac{ ( 9.8  -10)^2 +  ( 10.2  -10)^2 + \cdots + ( 9.6  -10)^2  }{7-1} }

=>        \sigma = 0.283

Generally the degree of freedom is mathematically represented as

      df =  n- 1

=>    df =  7- 1

=>    df =  6

From the question we are told the confidence level is  95% , hence the level of significance is    

      \alpha = (100 - 95 ) \%

=>   \alpha = 0.05

Generally from the t distribution table the critical value  of   at a degree of freedom of  is  

   t_{\frac{\alpha }{2} , 6 } =  2.447

Generally the margin of error is mathematically represented as  

      E = t_{\frac{\alpha }{2} , 6 } *  \frac{\sigma }{\sqrt{n} }

=>    E =2.447*    \frac{0.283 }{\sqrt{7} }

=>    E =0.2617

Generally 95% confidence interval is mathematically represented as  

      \= x -E <  \mu <  \=x  +E

=>   10 -0.2617 <  \mu < 10 + 0.2617

=>   9.7383 <  \mu < 10.2617

7 0
3 years ago
Please solve a few letters.
laila [671]

Maybe you could put C next to the B in the box in the top left corner.

8 0
3 years ago
The speed of light is approximately 299,000,000 meters per second.
jek_recluse [69]

Answer:

2.99 x 10⁸ meters per second

Step-by-step explanation:

Scientific notation (also called "Standard form") is written in the form of a \times 10^n, where  1\leq a < 10  and  n is any positive or negative whole number.

To <u>convert</u> a number into <u>scientific notation</u>, move the decimal point to the left or right until there is <u>one digit before the decimal point.</u>

The number of times you have moved the decimal point is the power of 10 (n).

If the decimal point has moved to the <u>left</u>, the power is <u>positive</u>.

If the decimal point has moved to the <u>right</u>, the power is <u>negative</u>.

<u>To convert the given number to scientific notation</u>

The decimal point for the given number 299000000 is after the last zero:

⇒  299000000.

Move the decimal point 8 places to the left:  

⇒ 2.99000000

Get rid of the redundant zeros:

⇒ 2.99

Multiply by 10 to the power of the number of decimal places moved:  

⇒ 2.99 x 10⁸

Therefore, the speed of light using scientific notation is:

  • 2.99 x 10⁸ meters per second
7 0
2 years ago
Write the coordinates of the vertices after a reflection over the line y = 1
Lelechka [254]

B'(0,-7)

C'(0,-9)

D'(-4,-7

E'(-4.-2)

4 0
3 years ago
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