1. Perform the following calculations in R/RStudio using this R markdown template and write your R code in the code chunk provided: √20 and y1+ Find the value for y # Write your R code here 2. Write the R code (in the code chunk provided) to find the descriptiopn of the "plot" function. # Write your R code here 3. Generate the variables w and z using the R code below. Then, make the plot of w against z (i.e., on the xy plane). Write your R code in the code chunk provided. w <- rnorm (50) z <- rnorm (w) # Write your R code here

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 94E
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1. Perform the following calculations in R/RStudio using this R markdown template and write
your R code in the code chunk provided:
2+1
.
• x = √20 and y = 1 + 1 Find the value for y
# Write your R code here
2. Write the R code (in the code chunk provided) to find the descriptiopn of the "plot"
function.
#Write your R code here
3. Generate the variables w and z using the R code below. Then, make the plot of w against z
(i.e., on the xy plane). Write your R code in the code chunk provided.
w <- rnorm (50)
z <- rnorm (w)
# Write your R code here
Transcribed Image Text:1. Perform the following calculations in R/RStudio using this R markdown template and write your R code in the code chunk provided: 2+1 . • x = √20 and y = 1 + 1 Find the value for y # Write your R code here 2. Write the R code (in the code chunk provided) to find the descriptiopn of the "plot" function. #Write your R code here 3. Generate the variables w and z using the R code below. Then, make the plot of w against z (i.e., on the xy plane). Write your R code in the code chunk provided. w <- rnorm (50) z <- rnorm (w) # Write your R code here
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