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san4es73 [151]
3 years ago
13

What is lateral surface area

Mathematics
2 answers:
ahrayia [7]3 years ago
7 0
The lateral surface of an object, is the area of all sides of an object, excluding the area of its base and top. 
Scorpion4ik [409]3 years ago
4 0
Lateral surface area <span>is the sum of the </span>surface<span> areas of all its faces excluding the base of the solid.</span>
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The number of requests for assistance received by a towing service is a Poisson process with rate θ = 4 per hour.a. Compute the
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Answer:

a) 9.93% probability that exactly ten requests are received during a particular 2-hour period

b) 13.53% probability that they do not miss any calls for assistance

c) 2

Step-by-step explanation:

In a Poisson distribution, the probability that X represents the number of successes of a random variable is given by the following formula:

P(X = x) = \frac{e^{-\mu}*\mu^{x}}{(x)!}

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e = 2.71828 is the Euler number

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a. Compute the probability that exactly ten requests are received during a particular 2-hour period.

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This is P(X = 10). So

P(X = x) = \frac{e^{-\mu}*\mu^{x}}{(x)!}

P(X = 10) = \frac{e^{-8}*8^{10}}{(10)!} = 0.0993

9.93% probability that exactly ten requests are received during a particular 2-hour period

b. If the operators of the towing service take a 30-min break for lunch, what is the probability that they do not miss any calls for assistance?

n = 0.5, so \mu = 4*0.5 = 2

This is P(X = 0). So

P(X = x) = \frac{e^{-\mu}*\mu^{x}}{(x)!}

P(X = 0) = \frac{e^{-2}*2^{0}}{(0)!} = 0.1353

13.53% probability that they do not miss any calls for assistance

c. How many calls would you expect during their break?

n = 0.5, so \mu = 4*0.5 = 2

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