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Pepsi [2]
3 years ago
15

Write the equation of the line in fully simplified slope-intercept form.

Mathematics
2 answers:
Kryger [21]3 years ago
5 0
Answer:
y = -x + 6
Explanation:
The slope of the line is -1, and the y-intercept is 6. So if you put that into slope intercept form it becomes y = -1x + 6 and you can then drop the 1 and it becomes y = -x +6
Neporo4naja [7]3 years ago
4 0

Answer:

y= -x +6

Step-by-step explanation:

Equation of a line in slope intercept form is y= mx+b where m is slope and b is y-intercept ( where the graph intersects the y-axis)

slope by looking at the graph:

-take any points on the graph, for example ( 6, 0) and (0, 6)

-to get from (6,0)  to (0, 6) go 6 units up and 6 to the left

-slope is m = rise / run = 6 / -6= -1

y-intercept is 6 because there is where the line intersects the y-axis

y= -1*x + 6

y = -x +6

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Write a statement that indicates that the triangles in each pair are congruent.
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Step-by-step explanation:

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If 25x2- 49y2 has one factor (5x-7y), then the other factor is…..
elena-s [515]
There's only one 1 factor and there are no like terms
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3 years ago
Solve the inequality and show your solution on a number line: 0.2x−2<7−8x
Allisa [31]

Answer:

x< \frac{45}{41}  or x< 1.098

The graph in the attached figure

Step-by-step explanation:

we have

0.2x-2 < 7-8x

Solve for x

Adds 2 both sides

0.2x-2+2 < 7-8x+2

0.2x < 9-8x

Adds 8x both sides

0.2x+8x < 9-8x+8x

8.2x < 9

Divide by 8.2 both sides

x < 9/8.2

Remember that

8.2=82/10

substitute

x < 9/(82/10)

x< \frac{90}{82}

Simplify

x< \frac{45}{41}  or x< 1.098

The solution is the interval ------> (-∞, 45/41)

All real numbers less than 45/41

In a number line , the solution is the shaded area at left of x=45/41 (open circle)

The graph in the attached figure

7 0
3 years ago
Which of these supporting details BEST fits after sentence 2?
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c

Step-by-step explanation:

7 0
4 years ago
Read 2 more answers
The probability that a wildcat well will be productive is 1/13. Assume that a group is drilling wells in various parts of the co
JulijaS [17]

Answer:

a) p = 1 / 13

b) f(x) = ( 12 / 13 ) ^(n-1) * 1 / 13

c) M(x) =  1/13 / ( 1 - (12/13)*e^t)  

d) E(X) = 13 ,  E(X^2) =  325 , Var (X) = 156 , S.d = 12.49

e)  P(X >= 2) = 12/13

Step-by-step explanation:

Given:

- The probability that a wildcat well is productive p = 1/13

Find:

- identify the value of the parameter p.

- What is the exact expression for the density for X?

- what is the exact expression for the moment generating function for X?

- What are the numerical values of E[x], E[x2], \sigma 2, and \sigma ?

- Find P[X>=2]

Solution:

- Declaring a random variable X is the number of wells drilled to obtain the first strikes.

                                     X ~ Geo ( 1 / 13 )

- The probability of success is independent from successive trials. Where X denotes the number of successive trials till there is a success. Hence, the parameter p = 1 / 13.

- The probability density function of the geometric distribution for number f trails till first success is given by:

                               f(x) = ( 1 - p ) ^(n-1) * p

                               f(x) = ( 12 / 13 )^(n-1) * 1 / 13

- The moment generating expression for a Geometric distribution is given by:

                              M(x) =  p / ( 1 - (1-p)*e^t)  

                              M(x) =  1/13 / ( 1 - (12/13)*e^t)  

- The expected value E(X) of a geometric function is given by:

                              E(X) = 1 / p

                              E(X) = 1 / (1 / 13)

                              E(X) = 13

Where,

                              Var(X) = ( 1 - p ) / p^2

                              Var(X) = ( 12/13 )*13^2

                              Var(X) = 156  

                               S.d = sqrt(156) = 12.49

We know,

                              Var(X) = E(X^2) - [ E(X) ]^2

                               E(X^2) =  Var(X) + [ E(X) ]^2

                               E(X^2) =  156 + 13^2

                              E(X^2) =  325

- The required probability of P(X >= 2 ) can be computed using f(x)

                              P(X >= 2 ) = 1 - f(1)

                             P(X >= 2 ) = 1 - ( 12 / 13 ) ^(1-1) * 1 / 13

                              P(X >= 2) = 1 - 1/13 = 12/13

5 0
3 years ago
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