《统计学基础(英文版·第7版)》课件les7e ppt ADA 0505.pptx
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1、统计学基础(英文版第7版)课件les7e_ppt_ADA_0505,统计学基础(英文版第7版)课件les7e_ppt_AD,Chapter Outline,5.1Introduction to Normal Distributions and the Standard Normal Distribution5.2Normal Distributions: Finding Probabilities5.3Normal Distributions: Finding Values5.4Sampling Distributions and the Central Limit Theorem5.5Nor
2、mal Approximations to Binomial Distributions,Chapter Outline5.1Introductio,Section 5.5,Normal Approximations to Binomial Distributions,Section 5.5Normal Approximatio,Section 5.5 Objectives,How to determine when the normal distribution can approximate the binomial distributionHow to find the continui
3、ty correctionHow to use the normal distribution to approximate binomial probabilities,Section 5.5 ObjectivesHow to d,Normal Approximation to a Binomial (1 of 2),Normal Approximation to a Binomial Distribution,If,and, then the binomial random,variable x is approximately normally distributed with,mean
4、,standard deviation,where n is the number of independent trials, p is the probability of success in a single trial, and q is the probability of failure in a single trial.,Normal Approximation to a Bino,Normal Approximation to a Binomial (2 of 2),Binomial distribution:, and,and,.,As n increases the h
5、istogram approaches a normal curve.,Normal Approximation to a Bino,Example: Approximating a Binomial Distribution (1 of 2),Two binomial experiments are listed. Determine whether you can use a normal distribution to approximate the distribution of x, the number of people who reply yes. If you can, fi
6、nd the mean and standard deviation. If you cannot, explain why.,In a survey of 8- to 18-year-old heavy media users in the United States,said they get fair or poor,grades (C and below). You randomly select forty-five 8- to 18-year-old heavy media users in the United States and ask them whether they g
7、et fair or poor grades. (Source: Kaiser Family Foundation),Example: Approximating a Binom,Example: Approximating a Binomial Distribution (2 of 2),In a survey of 8- to 18-year-old light media users in the United States,said they get fair or poor,grades (C and below). You randomly select twenty 8- to
8、18-year-old light media users in the United States and ask them whether they get fair or poor grades. (Source: Kaiser Family Foundation),Example: Approximating a Binom,Solution: Approximating the Binomial Distribution (1 of 2),In this binomial experiment, and,. So,and,.,Because np and nq are greater
9、 than 5, you can use a normal distribution with,and,to approximate the distribution of x.,Solution: Approximating the Bi,Solution: Approximating the Binomial distribution (2 of 2),In the figure, notice that the binomial distribution is approximately bell-shaped, which supports the conclusion that yo
10、u can use a normal distribution to approximate the distribution of x.,Solution: Approximating the Bi,Solution: Approximating the Binomial,In this binomial experiment, and,. So,and,.,Because, you cannot use a normal distribution to,approximate the distribution of x. Notice the binomial distribution i
11、s skewed right, which supports the conclusion that you cannot use a normal distribution to approximate the distribution of x.,Solution: Approximating the Bi,Correction for Continuity (1 of 2),A binomial distribution is discrete and can be represented by a probability histogram. To calculate exact bi
12、nomial probabilities, the binomial formula is used for each value of x and the results are added.Geometrically this corresponds to adding the areas of bars in the probability histogram.,Correction for Continuity (1 o,Correction for Continuity (2 of 2),When you use a continuous normal distribution to
13、 approximate a binomial probability, you need to move 0.5 unit to the left and right of the midpoint to include all possible x-values in the interval (continuity correction).,Correction for Continuity (2 o,Example: Using a Continuity Correction (1 of 3),Use a continuity correction to convert each bi
14、nomial probability to a normal distribution probability.,The probability of getting between 270 and 310 successes, inclusive.,Solution:The discrete midpoint values are 270, 271, , 310. The corresponding interval for the continuous,normal distribution is,. The normal,distribution probability is,.,Exa
15、mple: Using a Continuity Co,Example: Using a Continuity Correction (2 of 3),Use a continuity correction to convert each binomial probability to a normal distribution probability.,The probability of getting at least 158 successes.,Solution:The discrete midpoint values are 158, 159, 160, .The correspo



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