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Zanzabum
3 years ago
8

HELP! 20 POINTS! Type the correct answer in each box. Use numerals instead of words. If necessary, use / for the fraction bar(s)

.
78
The expression above can also be written in the formad
For this expression, a =
b=
and c=
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Mathematics
1 answer:
Ronch [10]3 years ago
3 0

4 9 7 in that order hope this helps

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What is the 83rd term of the arithmetic sequence with this explicit formula?
Rufina [12.5K]

Answer:

<h2>- 234</h2><h2 />

Step-by-step explanation:

a83 = 12 + (83 - 1)(-3) = 12 + (82)(-3) = -234

3 0
4 years ago
How does 8 4/3 = 9 1/3?​
irga5000 [103]

You're question asks why the given mixed numbers are equal.

In fact, they're equal.

Lets make it easier for you to understand:

8 4/3 has a improper fraction "4/3", that fraction is over 1 whole.

You could look at 8 4/3 as:

8 + 3/3 + 1/3

The 3/3 turns into 1:

8 + 1 + 1/3

9 + 1/3

9 1/3

You would see that it turns into 9 1/3, therefore they are equal.

7 0
3 years ago
WILL MARK BRAINLIEST 50 POINTS PLEASE HELp
kozerog [31]

Answer:

The first one :)

Step-by-step explanation:

4 0
3 years ago
The​ heights, in​ inches, of the starting five players on a college basketball team are 6868​, 7373​, 7777​, 7575​, and 8484. Co
LenKa [72]

Answer:

The sample standard deviation of 5.95.9 inches differs from the population standard deviation of 5.25.2 inches because of their formulas for calculating it.

Step-by-step explanation:

We are given the​ heights, in​ inches, of the starting five players on a college basketball team ;

68, 73, 77, 75 and 84

Now whether we treat this data as sample data or population data, the mean height would remain same in both case because the formula for calculating mean is given by ;

     Mean = Sum of all data values ÷ No. of observations

     Mean = ( 68 + 73 + 77 + 75 + 84 ) ÷ 5 = 75.4 inches

So, numerically, the sample mean of 75.4 inches is the same as the population mean.

Now, coming to standard deviation there will be difference in both sample and population standard deviation and that difference occurs due to their formulas;

Formula for sample standard deviation = \frac{\sum (X_i - Xbar)^{2} }{n-1}

           where, X_i = each data value

                       X bar = Mean of data

                        n = no. of observations

Sample standard deviation = \frac{ (68 - 75.4)^{2} +(73 - 75.4)^{2}+(77- 75.4)^{2}+(75- 75.4)^{2}+(84 - 75.4)^{2} }{5-1}    

                                           = 5.9 inches

Whereas, Population standard deviation = \frac{\sum (X_i - Xbar)^{2} }{n}

   = \frac{ (68 - 75.4)^{2} +(73 - 75.4)^{2}+(77- 75.4)^{2}+(75- 75.4)^{2}+(84 - 75.4)^{2} }{5} = 5.2 inches .

So, that's why sample standard deviation of 5.95.9 inches differs from the population standard deviation of 5.25.2 inches only because of formula.

7 0
3 years ago
Plzzz help i am ineeeddeddeedeededed of it!!!
Vikentia [17]
Sallys statement is always true
for example:
-6 + 2 = -4
but if I turn it around
2 - 6 = -4
same answer

-6 -6 = -12
swap around -6 - 6 = 12
same answer

again -3 + 6 = 3
and 6 - 3 = 3
6 0
4 years ago
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