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Luden [163]
3 years ago
12

Which of the following is most likely the next step in the series?оооо​

Mathematics
2 answers:
Paladinen [302]3 years ago
4 0

Answer:

o

Step-by-step explanation:

timurjin [86]3 years ago
3 0
Answer:o

Hope this helps
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1. 100 kilometers at 20 km/h?
hodyreva [135]

Answer:

1. 5 hours

2. 4 hours

Reason:

Formula for speed is speed = \frac{distance}{time} , if you want to find time, then take distance / speed, which will equal to 100 / 20 = 5 hours, and the same with 2.

8 0
3 years ago
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Margo drove for 3.85 hours at an average speed of 61.4 miles per hour . What is the exact distance she drove
katrin2010 [14]

The exact distance she drove was 236.39 miles


61.4 miles per hour  x (times)  3.85 hours  =     236.39 miles in total


6 0
3 years ago
What equals 11\4 cups in to bake a cake
trapecia [35]

Answer:

2 and 3/4 of a cup

Step-by-step explanation:

7 0
4 years ago
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I need help with all the questions to be honest
Margaret [11]

Answer:

-6+4=-2

-2*2=-4=Y

(X+4)*2=13

13/2-4=5/2=X

Step-by-step explanation:

B)Y=X/5+1

4 0
3 years ago
Need help with this please.
sp2606 [1]

Answer:

y = -\frac{3}{2} x + 4

Step-by-step explanation:

First, let us find the gradient of AB:

Gradient of AB = \frac{-1-3}{-1-5}

                         = \frac{2}{3}

We also need to know that The <em>product of gradients which are perpendicular to each other is -1</em>. Using this idea, we can find the gradient of the perpendicular bisector:

(Gradient of perpendicular bisector)( \frac{2}{3} ) = -1

Gradient of perpendicular bisector = -\frac{3}{2}

Now, we need to know at which coordinates the perpendicular bisector intersects AB. <em>A perpendicular bisector bisects a line to two equal parts</em>. Hence the <em>coordinates of the intersection point is the midpoint of AB</em>. Thus,

Coordinates of intersection = ( \frac{-1 + 5}{2}, \frac{-1 + 3}{2} )

                                              = ( 2, 1 )

Now, we can construct our equation. The equation of a line can be formed using the formula (y - y_{1}) = m(x - x_{1}) where m is the gradient and the line passes through (x_{1} , y_{1} ). Hence by substituting the values, we get:

(y - 1) = -\frac{3}{2} (x - 2)

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

y = -\frac{3}{2} x + 4<u />

4 0
3 years ago
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