Part 1. Generate a plot of the standard normal density function (PDF). (C 1) We want the r-values to be a sequence from -4.15 to 4.15 by 0.02. Store these as xvals1. (C 2) To generate the associated y-values from the standard normal distribution, we input the xvals1 from (C 1) into the probability density function from a standard normal distribution. Store these as yvals1. (C 3) Create a plot of the above r-values and y-values. While creating your plot, • Your graph should be a contimuous line. • The line should be the color "green4". You MUST use the specific color name that we have provided. Set the title of the plot to be "Standard Normal Density Function". Set the z-axis label to be "Standard Normal Variable". Set the y-axis label to be "Density".
Part 1. Generate a plot of the standard normal density function (PDF). (C 1) We want the r-values to be a sequence from -4.15 to 4.15 by 0.02. Store these as xvals1. (C 2) To generate the associated y-values from the standard normal distribution, we input the xvals1 from (C 1) into the probability density function from a standard normal distribution. Store these as yvals1. (C 3) Create a plot of the above r-values and y-values. While creating your plot, • Your graph should be a contimuous line. • The line should be the color "green4". You MUST use the specific color name that we have provided. Set the title of the plot to be "Standard Normal Density Function". Set the z-axis label to be "Standard Normal Variable". Set the y-axis label to be "Density".
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Transcribed Image Text:Graphing a Normal Distribution
Part 1. Generate a plot of the standard normal density function (PDF).
(C 1) We want the r-values to be a sequence from -4.15 to 4.15 by 0.02. Store these as
xvals1.
(C 2) To generate the associated y-values from the standard normal distribution, we input
the xvals1 from (C 1) into the probability density function from a standard normal
distribution. Store these as yvals1.
(C 3) Create a plot of the above r-values and y-values. While creating your plot,
• Your graph should be a continuous line.
• The line should be the color "green4". You MUST use the specific color name
that we have provided.
Set the title of the plot to be "Standard Normal Density Function".
Set the r-axis label to be "Standard Normal Variable".
Set the y-axis label to be "Density".
(Graph 1) After you finish (C 3), save your plot. You will submit it when you submit your
code.
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