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DENIUS [597]
2 years ago
6

I am just completely lost at this point so pls just answer properly

Mathematics
2 answers:
Luden [163]2 years ago
6 0

Answer:

$80

Step-by-step explanation:

192÷12=16

16•5=80

Dafna1 [17]2 years ago
5 0

Answer:

Elena puts in $80 into her savings account

Step-by-step explanation:

You need to multiply 5/12 and 192. Think of "5/12 x 192" as "5/12 of 192." If you don't know how to multiply a fraction with a whole number, you can convert the fraction to a decimal. Hope this helps!

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Z-12=4<br><br> what is Z worth?
Gnoma [55]

Answer:

Z=16

Step-by-step explanation:

just add 12 to both sides so you are left with only Z on one side

5 0
3 years ago
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Use fraction models to multiply, then simplify the answer if needed. 6/7 x 1/2
yuradex [85]
Anwser would be 18/14 simplified to 9/7
3 0
2 years ago
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What does an even monomial function look like as a graph​
Ray Of Light [21]

Answer:

It would be symmetric about the y-axis

Step-by-step explanation:

Even functions are always symmetric about the y-axis. A function is even if f(-x)= f(x)

8 0
3 years ago
PLEASE HELP!! the measures of two complementary angles are in the ratio 2:3. What is the measure of the smaller angle?
ivolga24 [154]
The answer is 36°.

Complementary angles are those angles whose sum is 90°.

Let angles be x and y.
x + y = 90°
x : y = 2 : 3
_____
3 * x = 2 * y
3x = 2y
x + y = 90°
_____
x = 2/3*y
x + y = 90°
2/3y + y = 90°
2/3y + 3/3y = 90°
5/3y = 90°
5y = 90° * 3
5y = 270°
y = 54°

x + 54° = 90° 
x = 90° - 54°
x = 36°

The smaller angle is 36°
6 0
3 years ago
Read 2 more answers
Condensing Logarithmic Expressions In Exercise, use the properties of logarithms to rewrite the expression as the logarithm of a
Dimas [21]

Answer:

\frac{\ln(2x + 5)}{\ln(x - 3)} = 0

Step-by-step explanation:

Data provided in the question:

In(2x + 5) = In(x - 3)

we can rearrange the above equation as

⇒ In(2x + 5) - In(x - 3)  = 0

now,

from the properties of natural log function, we know that

\ln(\frac{A}{B}) = \ln(A)-\ln(B)

therefore,

we get

\frac{\ln(2x + 5)}{\ln(x - 3)} = 0

Hence,

Expression as the logarithm of a single quantity is \frac{\ln(2x + 5)}{\ln(x - 3)} = 0

5 0
3 years ago
Read 2 more answers
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