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valentina_108 [34]
3 years ago
13

Timmy's car can travel an average of 135 miles on 5 gallons of gas. How many gallons of gas will it use to travel 324 miles?

Mathematics
2 answers:
saw5 [17]3 years ago
6 0

Answer:

12 gallons

Step-by-step explanation:

135÷5 = 27 miles The car can travel 27 miles on 1 gallon of gas

324÷27 = 12

nika2105 [10]3 years ago
4 0

Answer:

The answer is 12 cause 135 ➗5=27 then 324 ➗27 =12...

Step-by-step explanation:

Hope this helps! :)

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Which graph shows the line y-4 = 3(x + 1)?
e-lub [12.9K]

Answer:

The answer is graph D since y int = 3(1)+4 which is 7, that graph crosses y at 7

4 0
2 years ago
Substitution for:<br> X-5y=10<br> 2x-10y=20
sergey [27]
Since you need an isolated variable to use the substitution method, we need to re-arrange one of the equations. This will probably be easiest to do with the first one.
Add 5y to both sides of the first equation.
x=10+5y
Now, in the second equation, put in 10+5y in any spot that has an x.
2(10+5y)-10y=20
Distribute the 2 to both numbers in the parenthesis.
20+10y-10y=20
Combine like terms.
20=20
This means that the two equations are actually the same. You can see this if you multiply the whole first equation by 2
2(x-5y=10)
2x-10y=20, which is the same as the second equation. Therefore, the two equations are actually the same one.
5 0
3 years ago
How many pairs of skew lines are shown? A. 24 B. 12 C. 4 D. 48
allsm [11]

Answer:

c

Step-by-step explanation:

not 100% sure

6 0
4 years ago
The port of South Louisiana, located along 54 miles of the Mississippi River between New Orleans and Baton Rouge, is the largest
jeka94

Answer:

(a) The probability that the port handles less than 5 million tons of cargo per week is 0.7291.

(b) The probability that the port handles 3 or more million tons of cargo per week is 0.9664.

(c) The probability that the port handles between 3 million and 4 million tons of cargo per week is 0.2373.

(d) The number of tons of cargo per week that will require the port to extend its operating hours is 5.35 million tons.

Step-by-step explanation:

Let <em>X</em> = amount of cargo the port handles per week.

The random variable <em>X</em> is Normally distributed with parameters,

<em>μ</em> = 4.5 million

<em>σ</em> = 0.82 million

(a)

Compute the probability that the port handles less than 5 million tons of cargo per week as follows:

P(X

*Use a <em>z</em>-table for the probability.

Thus, the probability that the port handles less than 5 million tons of cargo per week is 0.7291.

(b)

Compute the probability that the port handles 3 or more million tons of cargo per week as follows:

P(X\geq 3)=P(\frac{X-\mu}{\sigma}\geq \frac{3-4.5}{0.82})\\=P(Z>-1.83)\\=P(Z

*Use a <em>z</em>-table for the probability.

Thus, the probability that the port handles 3 or more million tons of cargo per week is 0.9664.

(c)

Compute the probability that the port handles between 3 million and 4 million tons of cargo per week as follows:

P(3

Thus, the probability that the port handles between 3 million and 4 million tons of cargo per week is 0.2373.

(d)

It is provided that P (X < x) = 0.85.

Then, P (Z < z) = 0.85.

The value of <em>z</em> for this probability is:

<em>z</em> = 1.04.

Compute the value of <em>x</em> as follows:

z=\frac{x-\mu}{\sigma}\\1.04=\frac{x-4.5}{0.82}\\x=4.5-+1.04\times 0.82)\\x=5.3528\approx5.35

Thus, the number of tons of cargo per week that will require the port to extend its operating hours is 5.35 million tons.

5 0
4 years ago
2
kotykmax [81]

Answer:

16.5 hours

Step-by-step explanation:

The bicycle costs $240.  Eva already has $42.  She is making $12 per hour.

240 = 12x + 42

Solve for x to find out how many hours Eva needs to work to buy the bicycle.

240 = 12x + 42

240 - 42 = (12x + 42) - 42

198 = 12x

198/12 = (12x)/12

16.5 = x

Eva needs to work 16.5 hours to be able to buy the bikw.

6 0
3 years ago
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