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Yuri [45]
2 years ago
8

Find the slope of the line.

Mathematics
2 answers:
seraphim [82]2 years ago
6 0

To find the slope of the line, we must find two points on the line:

          (0,1)  and  (2,4)

Slope = \frac{y2-y1}{x2-x1}  = \frac{4-1}{2-0} =\frac{3}{2}

The slope is 3/2

Hope that helps!

tia_tia [17]2 years ago
4 0

Answer:

\frac{3}{2}

Step-by-step explanation:

Slope (m): \frac{y_2-y_1}{x_2-x_1}

Find the slope using (0,1) and (2,4)

m=\frac{4-1}{2-0}=\frac{3}{2}

y = mx + b

y=\frac{3}{2}x+1

*View the attached graph*

Hope this helps!

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777dan777 [17]

Answer: 9/25

Full equation: P(black) x P(black) = 12/20 x 12/20 = 3/5 x 3/5 = 9/25

Hope this helps answer B?

7 0
2 years ago
Complete the paragraph proof. We are given that Ray E B bisects ∠AEC. From the diagram, ∠CED is a right angle, which measures de
Oduvanchick [21]

Answer:

1. 90

2. AEC

3. angle addition postulate

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4 0
3 years ago
Read 2 more answers
Consider the statement:
Valentin [98]

Answer:

5 is the correct answer

Step-by-step explanation:

20 divide by 100 because it is in percent and 20 miltiply by 100 and there is the sign of multiply (of) is also known as multiply soo 20\100 * 25 will be the answer 5

5 0
3 years ago
From a carton containing 50kg of sugar 24 half-kilogram packets were taken . How many kilograms of sugar remained?
mart [117]
24 half-kg packets = 24 x 1/2 = 12kg

Sugar remained = 50 - 12 = 38 kg

Answer: 38 kg
3 0
3 years ago
Sammy has x flavors of candies with which to make goody bags for Frank's birthday party. Sammy tosses out y flavors, because he
harkovskaia [24]

Answer:

^{(x-y)}C_{10}=\frac{(x-y)!}{10! \times (x-y-10)!}

Step-by-step explanation:

Total flavors Sammy initially had = x

Number of flavors Sammy throw away = y

After throwing away y flavors, the number of flavors Sammy will be left with = x - y

He needs to make 10-flavor bags from these (x - y) flavors. In order words he needs to chose 10 flavors for each bag from(x - y) flavors. The order of selection is not important here, so this is a problem of combinations. Also since we have to make selections or small groups, this also indicates that we have to use combinations.

So we need to make combinations of 10 flavors from a total of (x - y) flavors. This can be represented as ^{(x-y)}C_{10}

The formula for combinations is:

^{n}C_{r}=\frac{n!}{r!(n-r)!}

Using the values in this formula, we get:

^{(x-y)}C_{10}=\frac{(x-y)!}{10! \times (x-y-10)!}

7 0
3 years ago
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