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andreyandreev [35.5K]
2 years ago
7

Seventy independent messages are sent from an electronic transmission center.Messages are processed sequentially, one after anot

her. Transmission time of each message is Exponential with parameter λ = 5 min−1. Find the probability that all 70 messages are transmitted in less than 12 minutes. Use the Central Limit Theorem.
Mathematics
1 answer:
zlopas [31]2 years ago
6 0

Answer:

The probability that all 70 messages are transmitted in less than 12 minutes is 0.117.

Step-by-step explanation:

Let <em>X</em> = the transmission time of each message.

The random variable <em>X</em> follows an Exponential distribution with parameter <em>λ</em> = 5 minutes.

The expected value of <em>X</em> is:

E(X)=\frac{1}{\lambda}=\frac{1}{5}=0.20

The variance of <em>X</em> is:

V(X)=\frac{1}{\lambda^{2}}=\frac{1}{5^{2}}=0.04

Now define a random variable <em>T</em> as:

T = X₁ + X₂ + ... + X₇₀

According to a Central limit theorem if a large sample (<em>n</em> > 30) is selected from a population with mean μ and variance σ² then the sum of random variables <em>X</em> follows a Normal distribution with mean, \mu_{s} = n\mu and variance, \sigma^{2}_{s}=n\sigma^{2}.

Compute the probability of T < 12 as follows:

P(T

*Use a <em>z</em>-table for the probability.

Thus, the probability that all 70 messages are transmitted in less than 12 minutes is 0.117.

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Answer: The correct answer is NF_3

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The amount of time required to reach a customer service representative has a huge impact on customer satisfaction. Below is the
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Answer:

The value of the test statistic is t=1.12.

Step-by-step explanation:

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H_0: \mu_1-\mu_2=0\\\\H_a:\mu_1-\mu_2\neq 0

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The sample 2, of size n2=20 has a mean of 2.01 and a standard deviation of √2.952=1.89.

The difference between sample means is Md=0.64.

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Answer:

The student who weighted the rock 5 times has a 95% confidence interval of (25.2, 29.1) which is guaranteed to be more wider (less precise) than the other student who weighted the rock 20 times.

Step-by-step explanation:

What is Confidence Interval?

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