3. What we want to do next is write (x + jy)as Relº where R = (x2 + y² ) and tan-"(6) = (E 4. Then we can write (x + jy)" as R"en® and go back to write the result as R"em9 as (R"co s(n®) + jR" sin(n®)) 5. In your procedure (function) you will use for-loop to compute the value of R". If you remember, we wrote very efficient programs to compute the sin(x) and cos(x) functions. You may use those or include the math library header file and use the trig functions [sin( ), cos( ) and tan( )] and the square-root functions only! 6. Note that the tan(x) is multi-valued. So you should check to see that you are in the right quadrant! 7. The function should print the result on the screen in the form Ans: ( x, jy) which should also be the value returned by the function to main().

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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Final_ENCE_212_N.pdf - Foxit Reader
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3. What we want to do next is write (x + jy)as Rele
where R = (x2+ y² ) and tan-1(0) = (2)
%3D
4. Then we can write (x + jy)" as R"emo and go back to write the result
as R"eme as (R"co s(n®) + jR" sin(n®))
5. In your procedure (function) you will use for-loop to compute the value
of R". If you remember, we wrote very efficient programs to compute
the sin(x) and cos(x) functions. You may use those or include the
math library header file and use the trig functions
[sin( ),cos( ) and tan( )]
and the square-root functions only!
6. Note that the tan(x) is multi-valued. So you should check to see that
you are in the right quadrant!
7. The function should print the result on the screen in the form
Ans: ( x, jy) which should also be the value returned by the function to
main().
11 ( 2/2
83.44%
9:49 AM
5/18/2021
Transcribed Image Text:Final_ENCE_212_N.pdf - Foxit Reader FILE НОМЕ COMMENT VIEW FORM PROTECT SHARE HELP O Find O SnapShot Ô Fit Page A Link O Rectangle E Note 83.44% A From Scanner U File Attachment abc R Clipboard D Fit Width Rotate Left *) Blank A Bookmark e Image Annotation Hand Select Select Actual Typewriter Highlight From PDF O Fit Visible Rotate Right U Underline From Clipboard E Audio & Video Text Annotation Size File Sign Tools View Comment Create Protect Links Insert Document Translation Aa Start Final ENCE 212 N.pdf 3. What we want to do next is write (x + jy)as Rele where R = (x2+ y² ) and tan-1(0) = (2) %3D 4. Then we can write (x + jy)" as R"emo and go back to write the result as R"eme as (R"co s(n®) + jR" sin(n®)) 5. In your procedure (function) you will use for-loop to compute the value of R". If you remember, we wrote very efficient programs to compute the sin(x) and cos(x) functions. You may use those or include the math library header file and use the trig functions [sin( ),cos( ) and tan( )] and the square-root functions only! 6. Note that the tan(x) is multi-valued. So you should check to see that you are in the right quadrant! 7. The function should print the result on the screen in the form Ans: ( x, jy) which should also be the value returned by the function to main(). 11 ( 2/2 83.44% 9:49 AM 5/18/2021
Final_ENCE_212_N.pdf - Foxit Reader
FILE
НОМЕ
COMMENT
VIEW
FORM
PROTECT
SHARE
HELP
O Find
O SnapShot
Ô Fit Page
A Link
O Rectangle
E Note
83.44%
A From Scanner
U File Attachment
abc
R Clipboard
D Fit Width Rotate Left
*) Blank
A Bookmark
e Image Annotation
Hand Select
Select
Actual
Typewriter Highlight
From
PDF
O Fit Visible Rotate Right
U Underline
From Clipboard
E Audio & Video
Text Annotation
Size
File
Sign
Tools
View
Comment
Create
Protect
Links
Insert
Document
Translation
Aa
Start
Final ENCE 212 N.pdf
3. What we want to do next is write (x + jy)as Rele
where R = (x2+ y² ) and tan-1(0) = (2)
%3D
4. Then we can write (x + jy)" as R"emo and go back to write the result
as R"eme as (R"co s(n®) + jR" sin(n®))
5. In your procedure (function) you will use for-loop to compute the value
of R". If you remember, we wrote very efficient programs to compute
the sin(x) and cos(x) functions. You may use those or include the
math library header file and use the trig functions
[sin( ),cos( ) and tan( )]
and the square-root functions only!
6. Note that the tan(x) is multi-valued. So you should check to see that
you are in the right quadrant!
7. The function should print the result on the screen in the form
Ans: ( x, jy) which should also be the value returned by the function to
main().
11 ( 2/2
83.44%
9:49 AM
5/18/2021
Transcribed Image Text:Final_ENCE_212_N.pdf - Foxit Reader FILE НОМЕ COMMENT VIEW FORM PROTECT SHARE HELP O Find O SnapShot Ô Fit Page A Link O Rectangle E Note 83.44% A From Scanner U File Attachment abc R Clipboard D Fit Width Rotate Left *) Blank A Bookmark e Image Annotation Hand Select Select Actual Typewriter Highlight From PDF O Fit Visible Rotate Right U Underline From Clipboard E Audio & Video Text Annotation Size File Sign Tools View Comment Create Protect Links Insert Document Translation Aa Start Final ENCE 212 N.pdf 3. What we want to do next is write (x + jy)as Rele where R = (x2+ y² ) and tan-1(0) = (2) %3D 4. Then we can write (x + jy)" as R"emo and go back to write the result as R"eme as (R"co s(n®) + jR" sin(n®)) 5. In your procedure (function) you will use for-loop to compute the value of R". If you remember, we wrote very efficient programs to compute the sin(x) and cos(x) functions. You may use those or include the math library header file and use the trig functions [sin( ),cos( ) and tan( )] and the square-root functions only! 6. Note that the tan(x) is multi-valued. So you should check to see that you are in the right quadrant! 7. The function should print the result on the screen in the form Ans: ( x, jy) which should also be the value returned by the function to main(). 11 ( 2/2 83.44% 9:49 AM 5/18/2021
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