Question 3 Write a program that finds the equivalent series and parallel resistance for a collection of resistor values. Your program should first read in the number of resistors and then compute the equivalent series resistance for all resistors in the collection and the equivalent parallel resistance. For example, if there are 3 resistors of 100, 200, and 300 Ohms, respectively, their equivalent series resistance is 100+200+300 and their equivalent parallel resistance is 1(1/100+1/200+1/300). Your program should read each resistance value (R), add R to the series sum (RS) and add 1/R to the parallel sum (RP). After loop exit, display RS and 1/RP.

Computer Networking: A Top-Down Approach (7th Edition)
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Transcribed Image Text:Instructions Write the pseudocode and draw the flowchart of the solution for each of the following problems:
Question 3
Write a program that finds the equivalent series and parallel resistance for a collection of resistor
values. Your program should first read in the number of resistors and then compute the
equivalent series resistance for all resistors in the collection and the equivalent parallel
resistance. For example, if there are 3 resistors of 100, 200, and 300 Ohms, respectively, their
equivalent series resistance is 100+200+300 and their equivalent parallel resistance is
1(1/100+1/200+1/300). Your program should read each resistance value (R), add R to the series
sum (RS) and add 1/R to the parallel sum (RP). After loop exit, display RS and 1/RP.
Transcribed Image Text:Question 3 Write a program that finds the equivalent series and parallel resistance for a collection of resistor values. Your program should first read in the number of resistors and then compute the equivalent series resistance for all resistors in the collection and the equivalent parallel resistance. For example, if there are 3 resistors of 100, 200, and 300 Ohms, respectively, their equivalent series resistance is 100+200+300 and their equivalent parallel resistance is 1(1/100+1/200+1/300). Your program should read each resistance value (R), add R to the series sum (RS) and add 1/R to the parallel sum (RP). After loop exit, display RS and 1/RP.
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