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cupoosta [38]
3 years ago
14

Solve the system of equations.

Mathematics
1 answer:
Dimas [21]3 years ago
6 0

Answer:

If you put them together, +2.5y and -2.5y neutralize themselves while 5x and 3x become 8x.

2.5y + 3x = 27

5x – 2.5y = 5

8x = 32

x = 4

2.5y + 3x4 = 27

2.5y + 12 = 27

2.5y = 27-12

2.5y = 15

y = 15/2.5

y = 6

X = 4

Y = 6

please mark as brainliest hope this helps and have a blessed day

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The lifetime of a mechanical assembly in a vibration test is exponentially distributed with a mean of 500 hours. If an assembly
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Answer:

A) probability of failure in next 100 hours given that it has been tested for 500 hours without failure is 0.181

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Step-by-step explanation:

Part A)

Let X be a exponentially random variable with mean = μ = 500 hrs

For exponential distribution:

p.d.f = f(x) = \lambda e^{-\lambda x}\\c.d.f = F(x) = 1 - e^{-\lambda x}\\x\geq 0

                                                         λ = 1/μ

                                                         λ = 0.002

We have to find the  probability of failure in the next 100 hours given that assembly has been tested for 500 hours without a failure.

Using memory less property of exponential distribution:

P(X500) = P (X

using

F(x) = 1 - e^{-\lambda x}\\ \lambda =.002\\x=100\\F(x) = 1- e^{-(.002)(100)}\\F(x) = 1-.8187\\F(x) = 0.181

<h3>Part B)</h3>

Chances of occurrence of metabolic defect = 5%

                                                                 P(C) = .05

No. of randomly selected infants  = n =6

We  have to find the probability that exactly two have the metabolic defect

                                                        ⇒x = 2

Using binomial probability density function:

                                        P = P=\left[\begin{array}{ccc}n\\x\end{array}\right] p^{x} (1-p) ^{n-x}\\\\=\frac{n!}{x!(n-x)!} p^{x} (1-p) ^{n-x}\\=\frac{6!}{2!4!}(.05)^{2}(.95)^{4}\\= 0.03\\

probability that exactly two have the metabolic defect is 0.03

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