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Alina [70]
2 years ago
4

The completion times for a job task range from 11.1 minutes to 19.2 minutes and are thought to be uniformly distributed. What is

the probability that it will require between 14.8 and 16.5 minutes to perform the task?
Mathematics
1 answer:
tamaranim1 [39]2 years ago
5 0

Answer:

P(14.8< X

The probability that it will require between 14.8 and 16.5 minutes to perform the task is 0.210

Step-by-step explanation:

Let X the random variable "completion times for a job task" , and we know that the distribution for X is given by:

X \sim Unif (a= 11.1, b= 19.2)

And for this case we wantto find the following probability:

P(14.8< X

And for this case we can use the cumulative distribution given by:

F(x) =\frac{x-a}{b-a} , a\leq X \leq b

And using this formula we got:

P(14.8< X

The probability that it will require between 14.8 and 16.5 minutes to perform the task is 0.210

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50 points. Please quick.
Allisa [31]

Answer:

Condition A.  

A rectangle with four right angles  

There can be many quadrilaterals satisfying this condition.

Condition B.

A square with one side measuring 5 inches

There can be only one quadrilateral satisfying this condition.

Condition C.

A rhombus with one angle measuring 43°

There can be many quadrilaterals satisfying this condition.

Condition D.

A parallelogram with one angle measuring 32°

There can be many quadrilaterals satisfying this condition.

Condition E.

A parallelogram with one angle measuring 48° and adjacent sides measuring 6 inches and 8 inches.

There can be only one quadrilateral satisfying this condition.

Condition F.

A rectangle with adjacent sides measuring 4 inches and 3 inches.

There can be only one quadrilateral satisfying this condition

Step-by-step explanation:

3 0
2 years ago
A lumber yard has a scrap sheet of plywood that is 23 3/4 inches by 41 1/5 inches long what is the area of the plywood?
Sholpan [36]

Answer:

978\frac{1}{2}\text{ inches}^2.

Step-by-step explanation:

We have been given that a lumber yard has a scrap sheet of plywood that is 23 3/4 inches by 41 1/5 inches long.

Since plywood is in shape of rectangle, so to find the area of plywood we will multiply the length of plywood by its width.

\text{Area of rectangle}=\text{Length*Width}

\text{Area of plywood}=23\frac{3}{4}\text{ inches}\times 41\frac{1}{5}\text{ inches}

Let us convert our mixed fractions into improper fractions.

\text{Area of plywood}=\frac{95}{4}\text{ inches}\times \frac{206}{5}\text{ inches}

\text{Area of plywood}=\frac{95}{4}\times \frac{206}{5}\text{ inches}\times \text{inches}

Upon cancelling out greatest common factors we will get,

\text{Area of plywood}=\frac{19}{2}\times 103\text{ inches}^2

\text{Area of plywood}=\frac{1957}{2}\text{ inches}^2  

Now let us convert our answer into mixed fraction.

\text{Area of plywood}=978\frac{1}{2}\text{ inches}^2  

Therefore, the area of plywood is 978\frac{1}{2}\text{ inches}^2.

8 0
2 years ago
If the function f(x)=mx+b has an inverse function, which statement must be true
skelet666 [1.2K]
Im pretty sure its
m=/0 because when m is 0 then f(x) does not depend on the value of x.
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2 years ago
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Rework problem 4 from section 3.2 of your text, involving sets E and F. Suppose for this problem that Pr[E]=1/12, Pr[F]=1/12, an
Korolek [52]
The Venn Diagram that represents the problem is shown below

P(E|F) and P(F|E) are the conditional probability.

P(E|F) is given by P(E∩F) ÷ P(F) = ¹/₂ ÷ ¹/₂ = 1
P(F|E) is given by P(F∩E) ÷ P(E) = ¹/₂ ÷ ¹/₂ = 1

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The answer is 4,800 if u multiply 120x40

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