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san4es73 [151]
3 years ago
12

What is the numeral for thirteen thousand, three?

Mathematics
2 answers:
MA_775_DIABLO [31]3 years ago
7 0
<span> thirteen thousand, three = 13,003

answer is  </span><span>B. 13,003</span>
zlopas [31]3 years ago
6 0
B is the correct answer
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Distribute the negative sign to (7-5x) and then you will get -7+5x=-2x. Then you subtract 5x from both sides and you will get -7=-7x. Next you will divide by -7 to get x alone so the answer is x=1
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2/a=(2.5/1.25) please help!!!!!!!!!!!!!!!!
Darina [25.2K]
2/a=(2.5/1.25), 2=2/a, a=1
5 0
3 years ago
Quick! Complete the statements. 8.703 dekagrams = kilograms 100.3 = 10.03 hectometers 909.9 = 90,990 centiliters
Finger [1]

Answer:

1. 0.08703  2. dekameters  3. liters

Step-by-step explanation:

3 0
3 years ago
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The Carolina panthers play 8 home games each year.Tickets cost an average of $35. The stadium seats 74,000 people. Revenue is a
tatiyna

Answer: the range for one game is {$0, $2,590,000}

Step-by-step explanation:

The revenue, on average,  can be written as:

Y = $35*x

where y is the revenue and x is the number of tickets sold.

The domain of this function is equal to  {0, 74000} this means that they can sell any whole number of tickets between 0 and 74000.

To find the range we need to evaluate y in bot extremes of the domain (because we have a linear relation)

minimum revenue  

y(0) = $35*0 = $0

maximum revenue

y(74000) = $35*74000 = $2,590,000

So the range for one game is {$0, $2,590,000}

4 0
4 years ago
Please help soon!
Jlenok [28]

Answer:

a) Translate the graph of f(x) down 3 units.

b) (8,-1) is a point on the graph of g(x)

Step-by-step explanation:

The transformations that subtract a constant number of units from the functional expression f(x) are transformations that lower the graph of the function in those many units,

Therefore they correspond to a translation of the original graph down the number of units involved.

In this case, the number of units involved is "3" (due to the "-3" added to the expression for f(x). So he correct answer for the first part is: Translate the graph of f(x) down 3 units.

For the second part, one has to try each of the coordinate pairs given in the new function g(x) to see which one results in a true statement:

1) Testing (-8,-1) by checking if replacing x with the value "-8" renders "-1" for the y-value: g(x)=\sqrt[3]{x} -3\\g(-8)=\sqrt[3]{-8} -3\\g(-8)=-2-3\\g(-8)=-5

so this is NOT a point on the graph of g(x).

2) Testing (-1,-2) by checking if replacing x with the value "-1" renders "-2" for the y-value: g(x)=\sqrt[3]{x} -3\\g(-1)=\sqrt[3]{-1} -3\\g(-1)=-1-3\\g(-1)=-4

so this is NOT a point on the graph of g(x).

3) Testing (2,-1) by checking if replacing x with the value "2" renders "-1" for the y-value: g(x)=\sqrt[3]{x} -3\\g(2)=\sqrt[3]{2} -3\\

the cubic root of 2 is not a rational number, because 2 is not a perfect cube, so the expression cannot be reduced, so this is NOT a point on the graph of g(x).

4) Testing (8,-1) by checking if replacing x with the value "8" renders "-1" for the y-value: g(x)=\sqrt[3]{x} -3\\g(8)=\sqrt[3]{8} -3\\g(8)=2-3\\g(8)=-1

Therefore this pair (8,-1) IS a point on the graph of g(x).

5 0
3 years ago
Read 2 more answers
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