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Goshia [24]
4 years ago
11

Ten people can dig five holes in three hours. If n people digging at the same rate dig m holes in d hours:

Mathematics
1 answer:
Inessa [10]4 years ago
3 0

First. get the unit rate. That is, transform "Ten people can dig five holes in three hours" into "One person digs one holes in one hour."

We can say that

\frac{5\,\mbox{holes}}{3\,\,\mbox{hours}\cdot\mbox{10\,\,\mbox{person}}}=\frac{\frac{5}{3}\,\,\mbox{holes}}{1\,\,\mbox{hour}\cdot\mbox{10\,\,\mbox{person}}}  

(that's still for 10 people). For 1 person this rate will be 1/10th of the above, so:

\frac{\frac{5}{3}\,\,\mbox{holes}}{1\,\,\mbox{hour}\cdot 10 \,\,\mbox{person}}=\frac{\frac{5}{30}\,\,\mbox{holes}}{1\,\,\mbox{hour}\cdot 1 \,\,\mbox{person}}

So the unit rate is 5/30. We can now set up an equation expressing the number of holes "m" dug up by "n" people in "d" hours:

m = \frac{5}{30}\cdot n\cdot d

which is clearly linear in n and d.

Now we can answer the questions:

(1) Is n proportional to m when d=3? Answer: Yes

m = \frac{5}{30}\cdot n \cdot 3 = \frac{1}{2}n\\\implies n = 2m

which shows that n is proportional to m in this case.

(2) Is n proportional to d when m=5? Answer: No

5 = \frac{5}{30}\cdot n \cdot d\\\implies n = \frac{30}{d}

There is an inverse proportionality, therefore this is not proportional.

(3) Is m proportional to d when n=10? Answer: Yes

m = \frac{5}{30}\cdot 10 \cdot d = \frac{5}{3}d

There is a proportional relationship between m and d.

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A manufacturer is running an experiment using the standard (control) infant formula, and two new formulas, A and B. The goal is
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Answer:

A.

H0: the mean IGA score is the same for all three formulas.


Ha: the mean IGA score is not the same for all three formulas.

The Group of answer choices are as below:

A.

H0: the mean IGA score is the same for all three formulas.


Ha: the mean IGA score is not the same for all three formulas.

B.

H0: the mean IGA score is the same for all three formulas.


Ha: the mean IGA score is higher for at least one of the two treatment groups than the control group

C.

H0: the mean IGA score is the same for all three formulas.


Ha: the mean IGA score is higher for both treatment groups A and B than the control group.

D. No answer text provided.

Explanation:

Given that a manufacturer is running an experiment using the standard (control) infant formula, and two new formulas, A and B to boost the immune system in infants.

The variable that is measured is Total IGA (in mg per dl) score.

We have to state the hypotheses for one-way ANOVA F test to test if the mean IGA score is the same for all three formulas.

In null hypothesis H0, the mean of all groups are equal and in alternative hypothesis, Ha, the mean of the groups are not the same.

Therefore, the hypothesis tested by the one-way ANOVA F test are:

H0: the mean IGA score is the same for all three formulas.

Ha: the mean IGA score is not the same for all three formulas.

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3 years ago
Solve the Inequality for x<br><br><br> –8x + 16 &gt; –72
erastova [34]

Answer:

Inequality Form:

x< 11

Interval Notation:

( − ∞ , 11 )

Step-by-step explanation:

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3 years ago
-1/15 +(-3/5)=, show ur work plz
sergij07 [2.7K]
Answer: -2/3

-1/15 + (-3/5)
-1/15 - 3/5

-3/5 = -9/15

-1/15 - 9/15 
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5 0
4 years ago
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I need help again.lol
Monica [59]

Answer:

13\ units

Step-by-step explanation:

One is asked to find the distance between two points on a coordinate plane. The easiest way to do so is to use the distance formula, this formula is the following:

D=\sqrt{(x_1-x_2)^2+(y_1-y_2)^2

Where ((x_1,y_1)) and ((x_2,y_2)) are the points which one needs to find the distance between. In this case, these points are as follows:

k\ (-3,5)

j\ (-8, -7)

Substitute these points into the formula and solve for the distance between these points,

D=\sqrt{(x_1-x_2)^2+(y_1-y_2)^2

D=\sqrt{((-3)-(-8))^2+((5)-(-7))^2

Simplify,

D=\sqrt{((-3)-(-8))^2+((5)-(-7))^2

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D=\sqrt{25+144}

D=\sqrt{169}

D=13

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