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faust18 [17]
3 years ago
15

Which table represents exponential growth?

Mathematics
2 answers:
egoroff_w [7]3 years ago
7 0

Answer:

The second table

Step-by-step explanation:

it doubles every time! 2,4,8,16

son4ous [18]3 years ago
4 0

Answer:

Table 2

1 2

2 4

3 8

4 16

Step-by-step explanation:

The equation for this function can be written as

y = 2^x

This is exponential growth

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Find the solution of<br> m(-11 + m) = 0
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i tried ;w;

Step-by-step explanation:

m(−11+m)=0

Step 1: Simplify both sides of the equation.

m2−11m=0

Step 2: Factor left side of equation.

m(m−11)=0

Step 3: Set factors equal to 0.

m=0 or m−11=0

m=0 or m=11

Answer:

m=0 or m=11

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2 years ago
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A person in a casino decides to play blackjack until he loses a game, but he will not play more than 3 games. Let L denote a los
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4 0
3 years ago
Using the dot plots provided, what is the mean absolute deviation of the height of basketball players, rounded to the nearest te
Kazeer [188]

Answer:

MAD= \frac{1}{14} 27.286 = 1.949 \approx 2.0

Step-by-step explanation:

Previous concepts

The mean absolute deviation or MAD "is the average of the absolute deviations or the positive difference of the given data and that certain value (generally central values)". And is given by this formula:

MAD= \frac{1}{n} \sum_{i=1}^n |x_i -\bar X|

Solution to the problem

Assuming the info from the picture. So then the data is this one:

66,69,70,70,71,72,72,72,73,73,74,75,75,75

So the first step is find the mean for the dataset with the following formula:

\bar X = \frac{\sum_{i=1}^n X_i}{n}

And if we replace the values we got:

\bar X = \frac{66+69+70+70+71+72+72+72+73+73+74+75+75+75&#10;}{14}=71.929

And now we need to subtract for each value the mean like this:

Data      X_i -\bar X

66               5.929

69               2.929

70               1.929

70               1.929

71                0.929

72               0.0714

72               0.0714

72               0.0714

73               1.0714

73               1.0714

74               2.0714

75               3.0714

75               3.0714

75               3.0714

Now we need to add the deviations and divide by the the number of data values and we got:

MAD= \frac{1}{14} 27.286 = 1.949 \approx 2.0

5 0
3 years ago
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