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frosja888 [35]
3 years ago
5

The manager at the local auto shop has found that the probability that a car brought into the shop requires an oil change is 0.6

1​, the probability that a car brought into the shop requires brake repair is 0.39​, and the probability that a car requires both an oil change and brake repair is 0.12. For a car brought into the​ shop, determine the probability that the car will require an oil change or brake repair.
Mathematics
1 answer:
Pavlova-9 [17]3 years ago
7 0

Answer:

0.88

Step-by-step explanation:

Let A be the event that a car brought into the shop requires an oil change

and B that a car brought into the shop requires brake repair

Given that

P(A) = 0.61\\P(B)=0.39\\P(AB) = 0.12

Here AB denotes both A and B

required probability = the probability that the car will require an oil change or brake repair

=P(AUB)

=P(A)+P(B)-P(AB)

=0.61+0.39-0.12

=0.88

Answer is 0,88 got by using addition theory of probability

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A pool cover tarp is 27 feet wide. What is the width of the pool cover in yards?
zloy xaker [14]

Answer:

9 yards

Step-by-step explanation:

there are 3 feet in a yard.

27/3 = 9 yards

8 0
3 years ago
The two triangles shown are similar. Which of the following is an acceptable similarity statement for the triangles?
Rasek [7]

Answer:

B

Step-by-step explanation:

they are two 90° .so B is correct I think

5 0
3 years ago
Read 2 more answers
1. Create a symbolic form for each of the functions described below.
agasfer [191]

Answer:

  a) f(x) = -5/2x +50

  b) f(x) = 50·0.90^x

  c) f(x) = 8/3x -30

  d) f(x) = 10·1.15^x

Step-by-step explanation:

Apparently, you're studying linear and exponential functions. The general form of a linear function in "slope-intercept" form is ...

  f(x) = mx + b

where m is the slope (rate of change of output with respect to input), and b is the "output-intercept", the function value for an input of zero.

__

The general form of an exponential function is ...

  f(x) = a·(1 +r)^x

where "a" is the "output-intercept", the function value for an input of zero, and r is the fractional change for a unit change in input, x. Here, you're given r as a percentage. It will be positive when output increases with input, and it will be negative when output decreases with input.

__

Using the above function prototypes in the given scenarios, we have ...

a. A linear function with b=50, m=-10/4 = -5/2, so the function is ...

  f(x) = -5/2x +50

__

b. An exponential function with a=50, r=-0.10, so the function is ...

  f(x) = 50·(1 -0.10)^x

  f(x) = 50·0.90^x

__

c. A linear function with b=-30 and m = 16/6 = 8/3, so the function is ...

  f(x) = 8/3x -30

__

d. An exponential function with a=10 and r=+0.15, so the function is ...

  f(x) = 10·1.15^x

_____

<em>Comment on functions with percentage change</em>

You need to be a little bit careful with percentage change in a function. There are some scenarios where the rate of change in a linear function is described using percentages. For example, one might say that a car depreciates linearly, and has lost 40% of its value in the first 3 years. Then the rate of change is <em>-13.33% of its original value</em> each year.

Percentages are always in relation to some base value. If that base value is changing with each percentage change, the function is exponential. If that base value remains constant, then the function is linear.

4 0
3 years ago
The term 3x2 in the quotient is the result of dividing 3x4 by
earnstyle [38]

Answer:

x^{2}

Step-by-step explanation:

Let

n------> the denominator of the quotient

we know that

\frac{3x^{4}}{n}=3x^{2}

Solve for n

n=\frac{3x^{4}}{3x^{2}}

n=x^{2}

6 0
3 years ago
Read 2 more answers
Solve, using the substitution method.
Marina86 [1]

Answer:

10/14

Step-by-step explanation:

substitute x in equation 2

y= 2(10) -6

y= 20 - 6

y= 14

substitute y in equation 2

14 = 2x - 6

-2x= -6-14

-2x= -20

divide both sides by -2

-20/-2

x= 10

y= 14, x= 10

8 0
2 years ago
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