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Nataly_w [17]
2 years ago
3

Susie wants to buy a snowboard that cost $530. She has already saved $98 for it. She makes $72 a week babysitting. Which inequal

ity gives the minimum number of weeks, w, Susie needs to babysit to have enough money to purchase this snowboard.
Mathematics
2 answers:
Murljashka [212]2 years ago
8 0

Answer:

98+72*x>530

Step-by-step explanation:

u then need to calculate x, which should be fine

Mila [183]2 years ago
6 0

Answer:

Your equation would be 530 = 72x + 98

The answer to your equation would be, she would need to work 6 weeks.

Step-by-step explanation:

530 = 72x + 98

530 - 98 = 432

432 / 72 = 6

How I got the equation:

First, the ending amount will be 530 so that will be our answer.

530 =

72 is how much she makes a week so x would represent the amount of weeks.

530 = 72x

Then she already has 98 so that would be added to the end.

530 = 72x + 98

<em>Hope this helps!</em>

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8.54 / 8.75 =0.975

1 - 0.975 = 0.025

0.025 x 100% ( and nearest thenth)

=2.5%

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Note: the entire equation above is divided by 4, not just the last term. 

 x ≈ 15.26836251, − 1.76836251

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2 years ago
How do you use a number line to solve 235+123
Novosadov [1.4K]
<span>Number line refers to a mathematical process of solving the equation with the use of lines.
=> 235 + 123
Starting from 0 you count 1 up to 235. Then starting from 235 you additionally count another 123.
Then from zero start counting the total number to the line you stopped when adding 123 to 235.

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6 0
2 years ago
Clark Heter is an industrial engineer at Lyons Products. He would like to determine whether there are more units produced on the
larisa [96]

Answer:

No, at the 0.05 significance level, the number of units produced on the night shift is not larger.

Step-by-step explanation:

We are given that the mean number of units produced by a sample of 54 day-shift workers was 345. The mean number of units produced by a sample of 60 night-shift workers was 351.

Assume the population standard deviation of the number of units produced on the day shift is 21 and 28 on the night shift.

Let \mu_1 = population mean number of units produced on the day shift

      \mu_2 = population mean number of units produced on the night shift

So, <u>Null Hypothesis</u>, H_0 : \mu_1-\mu_2\geq0  or  \mu_1\geq\mu_2    {means that the mean number of units produced on the night shift is same or lesser on the day shift}

<u>Alternate Hypothesis,</u> H_A : \mu_1-\mu_2  or  \mu_1    {means that the mean number of units produced on the night shift is larger}

The test statistics that will be used here is <u>Two-sample z test statistics</u> as we know about population standard deviations;

              T.S.  =  \frac{(\bar X_1-\bar X_2)-(\mu_1-\mu_2)}{\sqrt{\frac{\sigma_1^{2} }{n_1}+\frac{\sigma_2^{2} }{n_2} } }  ~ N(0,1)

where, \bar X_1 = sample mean number of units produced by a sample of 54 day-shift workers = 345

        \bar X_2 = sample mean number of units produced by a sample of 60 night-shift workers = 351

       \sigma_1  = population standard deviation of the number of units produced on the day shift = 21

        \sigma_2 = population standard deviation of the number of units produced on the day shift = 28

        n_1 = sample of day-shift workers = 54

        n_2 = sample of night-shift workers = 60

So, <em><u>test statistics</u></em>  =  \frac{(345-351)-(0)}{\sqrt{\frac{21^{2} }{54}+\frac{28^{2} }{60} } }

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Therefore, we conclude that the mean number of units produced on the night shift is same or lesser than those produced on the day shift.

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Alenkasestr [34]

Answer:

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I think that it

5 0
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