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lesya692 [45]
3 years ago
5

The average distance commuters in the metro Atlanta area have to drive everyday to work is between 12 miles and 28 miles.

Mathematics
2 answers:
Elena L [17]3 years ago
7 0

<em>*100% CORRECT ANSWERS</em>

Alina [70]3 years ago
4 0

Answer:

answer is going to be d

Step-by-step explanation:

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Given that f(x) = x2 + 3x + 6 and g(x) = the quantity of x plus two, over three, solve for f(g(x)) when x = 1
MaRussiya [10]
Easy
f(g(1))
evaluate g(1) then plug thatin for x in f(x)
g(1)=(x+2)/3
g(1)=(1+2)/3
g(1)=1

f(g(1))=
f(1)=(1)^2+3(1)+6
f(1)=1+3+6
f(1)=10
f(g(1))=10
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3 years ago
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Sin(25)/ 22 = Sin(B)/40<br><br> What is the measure of angle B?
Tems11 [23]
22 because i am in college and i know what i am doing
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3 years ago
Solve the inequality y^2-3y greater than 18 sorry couldn't find the greater than sign
kupik [55]

Answer:

y > 6 or y < -3

Step-by-step explanation:

y² - 3y > 18

Complete the square.

y² - 3y + 9/4 > 18 + 9/4

y² - 3y + 9/4 > 81/4

(y - 3/2)² > 81/4

y - 3/2 > 9/2, or y - 3/2 < -9/2

y > 6 or y < -3

4 0
4 years ago
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1 hour 31 minutes = <br> minutes
LiRa [457]

Answer:

91 minutes

Step-by-step explanation:

1 hour= 60 minutes.

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If this helps please mark as brainliest

8 0
3 years ago
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The maker of an automobile advertises that it takes 12 seconds to accelerate from 20 kilometers per hour to 65 kilometers per ho
sp2606 [1]

Answer:

The acceleration is 1.0416 m/s^{2}

Step-by-step explanation:

In order to solve this problem we first need to know the formula for acceleration which is the following.

acceleration = \frac{final.velocity - initial.velocity}{final.time - initial.time}

Since the time acceleration is calculated as m/s^{2} we need to convert the km/h into m/s. Since 1km = 1000m and 1 hour = 3600 seconds, then

\frac{20*1000 }{3600s} = \frac{20,000m}{3600s} = \frac{20m}{3.6s}

**<u><em>Dividing numerator and denominator by </em></u><u><em>1000 </em></u><u><em>to simplify</em></u>**

\frac{65*1000 }{3600s} = \frac{65,000m}{3600s} = \frac{65m}{3.6s}

**<u><em>Dividing numerator and denominator by </em></u><u><em>1000</em></u><u><em> to simplify</em></u>**

Now we can plug in the values into the acceleration formula to calculate the acceleration.

acceleration = \frac{\frac{65m}{3.6s}-\frac{20m}{3.6s} }{12s-0s}

acceleration = \frac{\frac{45m}{3.6s}}{12s}

acceleration = \frac{\frac{12.5m}{s}}{12s}

acceleration = \frac{\frac{1.0416m}{s}}{s}

Finally we can see that the acceleration is 1.0416 m/s^{2}

8 0
3 years ago
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