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Liula [17]
3 years ago
15

Write an equivalent ratio described in the situation below. The ratio of boys to girls is 5/2​

Mathematics
1 answer:
GREYUIT [131]3 years ago
7 0
10:4 whatever you do to one of the ratios do the same to the other ratio. For example 5:2 boys to girls if you multiply the boys by 2 it will equal 10; and do the same to the girls which equal 4. Therefore an equivalent ratio is 10:4
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WILL GIVE MEDAL AND FAN! you invest $5,175.00 in a stock plan. it increases 9% the first year and then loses 5% of it's value th
Ne4ueva [31]
5,175 + 9% = <span>5640.75

</span>5640.75 - 5% = <span>5302.305
</span>
Original investment = 5,175
Gain                          = 5,302.305

Subtract them both and get = <span>127.305</span>
5 0
3 years ago
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The circumference of a circle changes from 20 to 4 after a dilation. What was the scale factor of the dilation? StartFraction 1
Tems11 [23]
1/5

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7 0
3 years ago
If JK= 2x, KL=8, and JL= 4x, what is JK?
Nata [24]

Answer:

JK = 8

Step-by-step explanation:

As JK + KL = JL.

2x + 8 = 4x

–2x –2x

8 = 2x

÷2 ÷2

4 = x.

x = 4.

JK = 2x.

x = 4 → JK = 2x → JK = 2(4) → JK = 8.

5 0
3 years ago
I don't really know what to do for this one.
Colt1911 [192]
Let, Price of a shirt = x
Price of a Jeans = y

Equations would be: 4x + 3y = 150
x + 2y = 70
x = 70-2y

Substitute it into first equation, 
4(70-2y) + 3y = 150
280 - 8y + 3y = 150
-5y = -130
y = 130/5
y = 26

Substitute it into 2nd equation, 
x + 2(26) = 70
x = 70-52
x = 18

So, Cost of a Shirt = $18  &  Cost of a Jeans = $26

Hope this helps!
3 0
3 years ago
The Port Authority sells a wide variety of cables and adapters for electronic equipment online. Last year the mean value of orde
Taya2010 [7]

Answer:

Step-by-step explanation:

Hello!

Data set in attachment. (100 orders)

a)

The variable of interest is

X: value of the orders placed for cables and adapters for electronic equipment over the course of the year.

Using the mean value of the orders placed the year before as the population mean μ= $47.28

The sample size is n= 100

Sample mean of the value of orders \frac{}{X} = \frac{4544.69}{100} = 45.45

Sample standard deviation: S= \sqrt{(\frac{1}{n-1} )[sumX^2-\frac{(sumX)^2}{n} ]} = \sqrt{\frac{1}{99}[239000.55-\frac{(4544.69)}{100} ] } = 18.11

The interest is to test if there is any difference in the mean value of the orders regarding last year, so the hypotheses are:

H₀: μ = $47.28

H₁: μ ≠ $47.28

α: 0.05

Applying the Central Limit Theorem, since the sample size is big enough, the statistic to use is an approximation to of the standard normal distribution.

Z= \frac{\frac{}{X} - Mu}{\frac{S}{\sqrt{n} } } ≈ N(0;1)

Z_{H_0}= \frac{45.45-47.28}{\frac{18.11}{\sqrt{100} } } = -1.01

p-value: 0.312495

To decide using the p-value approach you have to follow the decision rule:

p-value ≤ α, reject the null hypothesis.

p-value > α, do not reject the null hypothesis.

In this case the p-value is greater than the significance level, so the decision is to not reject the null hypothesis.

So at 5% significance level you can conclude that the mean value of orders placed the current year is equal to the mean value of orders placed last year.

b)

For this item the parameter of interest is the proportion of males that placed an order: p

The port Authority wishes to test if it is different from last years proportion of p=0.65

The hypotheses are:

H₀: p = 0.65

H₁: p ≠ 0.65

α: 0.05

Sa sample proportion for this item is the number of males that placed an order in the sample

p'= 62/100= 0.62

Z_{H_0}= \frac{p'-p}{\sqrt{\frac{p(1-p)}{n} } } = \frac{0.62-0.65}{\sqrt{\frac{0.65*0.35}{100} }  } = -0.628= -0.63

p-value: 0.528695

p-value ≤ α, reject the null hypothesis.

p-value > α, do not reject the null hypothesis.

In this case the p-value is greater than the significance level, so the decision is to not reject the null hypothesis.

So at 5% significance level you can conclude that the proportion of orders placed by males is equal yo 65%.

C)

We have only one sample, where the orders were classified regarding the gender of the person that placed the order, so:

The variable of interest is

X: number of orders placed by males

X~Bi(n_x;p_x\\)

The complementary variable can be defined as:

Y: number of orders placed by females.

Y~Bi(n_Y;p_Y\\)

Where p_Y\\= 1 - p_x\\

Worst case scenario both probabilities are equal p_Y\\= p_x\\= 0.5, so to test if the proportion of males in greater than the proportion of females who placed orders, we can say that p_x\\ > 0.5

The hypotheses are:

H₀: p_x\\ ≤ 0.5

H₁: p_x\\ > 0.5

p_x\\ ≤ 0.5 ⇒ If the proportion of orders placed by men is less than 0.5, then we can conclude that the proportion of orders placed by females is greater than the proportion of orders placed by males.

p_x\\ > 0.5 ⇒ If the proportion of orders placed by men is greater than 0.5, then we can conclude that the proportion of orders placed by males is greater than the proportion of orders placed by females.

Z_{H_0}= \frac{p'_x-p_x}{\sqrt{\frac{p_x*(1-p_x)}{n} } } = \frac{0.62-0.65}{\sqrt{\frac{0.5*0.5}{100} } } = -0.6

p-value: 0.274253

p-value ≤ α, reject the null hypothesis.

p-value > α, do not reject the null hypothesis.

In this case the p-value is greater than the significance level, so the decision is to not reject the null hypothesis.

At 5% significance level you can conclude that the proportion of orders placed by males is no greater than the proportion of orders placed by females.

3 0
3 years ago
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