Calculate the indicated probabilities, assuming that Z is a continuous random varia that follows a standard normal distribution: Standard Normal Distribution Table a. P (Z < 1.6) = 0.9452 b. P(Z> 0.9) = 0.1841 c. P (0.5 < Z < 2.4) = %3D
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- If the variable Z is normally distributed with mean equal to 0 and standard deviation equal to 1. The probability that the variable takes a value less than 0.57 or greater than 1.05 is: Select one: P(Z < 0.57 or Z > 1.05) = 0.4312 P(Z < 0.57 or Z > 1.05) = 0.5688 P(Z < 0.57 or Z > 1.05) = 0.1375 P(Z < 0.57 or Z > 1.05) = 0.8625For a standard normal distribution, find � ifP(z < c) = 0.1208Use 2 decimal places.GPAS at CCSU are normally distributed with a mean of 2.01 and a standard deviation of 0.47. Find the z- score for a GPA of 2.32. 0.6596 1.809 00.8085 0.3404 1.638 0.8511
- Calculate the indicated probabilities, assuming that Z is a continuous random variable that follows a standard normal distribution: a. P(Z < 1.7)= b. P(Z > 0.9)= c. P(0.4 < Z < 2.3)=Calculate the indicated probabilities, assuming that Z is a continuous random variable that follows a standard normal distribution: P(Z < −2.62)= P(Z > −3.05)= P(−2.21 < Z < 0)=For a standard normal distribution, find c if P(Z < c) = 0.3597 Round to 2 decimal places. с
- Calculate the indicated probabilities, assuming that Z is a continuous random variable that follows a standard normal distribution: Standard Normal Distribution Table a. P(Z 0.31) = - 0 0 = c. P(-2.77Let the random variable Z follow a standard normal distribution. Find the value k, such that P (-0.58 < Z < k) = 0.60Let the random variable Z follow a standard normal distribution. a. Find P(Z 1.73). c. Find P(Z - 1.32). e. Find P(1.07Calculate the indicated probabilities, assuming that Z is a continuous random variable that follows a standard normal distribution: P(Z < −1.58)=P(Z < −1.58)= P(Z > 1.34)=P(Z > 1.34)= P(−1.58 < Z < 1.34)=Calculate the indicated probabilities, assuming that Z is a continuous random variable that follows a standard normal distribution:Standard Normal Distribution Table a. P(Z < −2.62)= b. P(Z > −3.06)= c. P(−2.25 < Z < 0)=Let X be the exponential distribution random variable with parameter θ . Find the asymptomatic normal distribution of the sample median XpSEE MORE QUESTIONSRecommended textbooks for youMATLAB: An Introduction with ApplicationsStatisticsISBN:9781119256830Author:Amos GilatPublisher:John Wiley & Sons IncProbability and Statistics for Engineering and th…StatisticsISBN:9781305251809Author:Jay L. DevorePublisher:Cengage LearningStatistics for The Behavioral Sciences (MindTap C…StatisticsISBN:9781305504912Author:Frederick J Gravetter, Larry B. WallnauPublisher:Cengage LearningElementary Statistics: Picturing the World (7th E…StatisticsISBN:9780134683416Author:Ron Larson, Betsy FarberPublisher:PEARSONThe Basic Practice of StatisticsStatisticsISBN:9781319042578Author:David S. Moore, William I. Notz, Michael A. FlignerPublisher:W. H. FreemanIntroduction to the Practice of StatisticsStatisticsISBN:9781319013387Author:David S. Moore, George P. McCabe, Bruce A. CraigPublisher:W. H. FreemanMATLAB: An Introduction with ApplicationsStatisticsISBN:9781119256830Author:Amos GilatPublisher:John Wiley & Sons IncProbability and Statistics for Engineering and th…StatisticsISBN:9781305251809Author:Jay L. DevorePublisher:Cengage LearningStatistics for The Behavioral Sciences (MindTap C…StatisticsISBN:9781305504912Author:Frederick J Gravetter, Larry B. WallnauPublisher:Cengage LearningElementary Statistics: Picturing the World (7th E…StatisticsISBN:9780134683416Author:Ron Larson, Betsy FarberPublisher:PEARSONThe Basic Practice of StatisticsStatisticsISBN:9781319042578Author:David S. Moore, William I. Notz, Michael A. FlignerPublisher:W. H. FreemanIntroduction to the Practice of StatisticsStatisticsISBN:9781319013387Author:David S. Moore, George P. McCabe, Bruce A. CraigPublisher:W. H. Freeman