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Allen\'s hummingbird (Selasphorus sasin) has been studied by zoologist Bill Alth

ID: 3060058 • Letter: A

Question

Allen's hummingbird (Selasphorus sasin) has been studied by zoologist Bill Alther.t Suppose a small group of 13 Allen's hummingbirds has been under study in Arizona. The average weight for these birds is x = 3.15 grams. Based on previous studies, we can assume that the weights of Allen's hummingbirds have a normal distribution, with 0.26 gram. (a) Find an 80% confidence interval for the average weights of Allen's hummingbirds in the study region. what is the margin of error? (Round your answers to two decimal places.) lower limit upper limit margin of error (b) What conditions are necessary for your calculations? (Select all that apply.) is known O is unknown n is large normal distribution of weights uniform distribution of weights (c) Interpret your results in the context of this problem. O There is an 80% chance that the interval is one of the intervals containing the true average weight of Allen's hummingbirds in this region. O The probability that this interval contains the true average weight of Allen's hummingbirds is 0.20 O The probability to the true average weight of Allen's hummingbirds is equal to the sample mean. There is a 20% chance that the interval is one of the intervals containing the true average weight of Allen's hummingbirds in this region. O The probability that this interval contains the true average weight of Allen's hummingbirds is 0.80 (d) Find the sample size necessary for an 80% confidence level with a maximal margin of error E mean weights of the hummingbirds. (Round up to the nearest whole number.) 0.12 for the hummingbirds

Explanation / Answer

Solution:- Given that n = 13 , X = 3.15 grams , = 0.26 grams

a) 80% confidence interval z = 1.28

=> X +/- Z * /sqrt(n)
= 3.15 +/- 1.28 * 0.26/sqrt(13)
= 3.06 , 3.24
  
lower limit = 3.06
upper limit = 3.24
margin of error = 0.09


b) option A. is known

c) option A. There is an 80% chance that interval is one of the intervals containing the true average weight of Allen's hummingbirds in this region.

d) n = (Z*/E)^2 = (1.28*0.26/0.12)^2 = 7.691 = 8 (nearest whole number)

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