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uysha [10]
3 years ago
11

Write the answer as a mixed number fraction (if possible). 8 1 5 ÷ 7 1 2

Mathematics
2 answers:
fiasKO [112]3 years ago
4 0
The answer is 162/355
to divide by a fraction, multiply by the reciprocal of that fraction
Serga [27]3 years ago
3 0

Answer:

7_

3 May be right answer in This question

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Could you help please..
Nitella [24]
Since she needs 3 1/2 for 5, and you need to find one batch, get 3 1/2 and divide it by 5. Change 3 1/2 to an improper fraction (7/2). Now use KCS (keep change switch) Keep the 7/2, change division to multiplication, and switch 5/1 to 1/5. (7/2)•(1/5)
4 0
3 years ago
Determine the number of significant digits in the measurement <br> 0.79 cm
antiseptic1488 [7]
2 significant digits
5 0
3 years ago
Using the numbers 8,6,4 and 2 write an expression that equals 4
vfiekz [6]
8-(6+2)+4 is how you use those numbers to equal 4
5 0
3 years ago
Read 2 more answers
The dot plot shown represents the number of students enrolled in each of the 16 courses at a community college. A new course has
suter [353]

Answer:

select a b and c

Step-by-step explanation:

they are all false

7 0
3 years ago
Read 2 more answers
2^x=3^x+1 what are the exact approximate solutions
Mashcka [7]

Answer:

d.

Step-by-step explanation:

The goal of course is to solve for x.  Right now there are 2 of them, one on each side of the equals sign, and they are both in exponential positions.  We have to get them out of that position.  The way we do that is by taking the natural log of both sides.  The power rule then says we can move the exponents down in front.

ln(2^x)=ln(3^{x+1}) becomes, after following the power rule:

x ln(2) = (x + 1) ln(3).  We will distribute on the right side to get

x ln(2) = x ln(3) + 1 ln(3).  The goal is to solve for x, so we will get both of them on the same side:

x ln(2) - x ln(3) = ln(3).  We can now factor out the common x on the left to get:

x(ln2 - ln3) = ln3.  The rule that "undoes" that division is the quotient rule backwards.  Before that was a subtraction problem it was a division, so we put it back that way and get:

x(\frac{ln(2)}{ln(3)})=ln(3).  We can factor out the ln from the left to simplify a bit:

x[ln(\frac{2}{3})]=ln(3).  Divide both sides by ln(2/3) to get the x all alone:

x=\frac{ln(3)}{ln(\frac{2}{3}) }

On your calculator, you will find that this is approximately -2.709

6 0
3 years ago
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