This first program will generate 5 random numbers between 1 and 100 (inclusive), print them out, and then output their average rounded to 2 decimal places. See the comments in randomAvg.cpp for hints on what to do. Consult the documentation if you want to know more about the rand() function, and remember that you can use setprecision to do the rounding. Here are some sample runs of my solution-remember that it'll be different every time you run it because of the randomness! This is the style of output that your program should have: > solution ./randomAvg

Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
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using C++ 

List
e
Part 2: Average of 5 random humbers
This first program will generate 5 random numbers between 1 and 100 (inclusive), print
them out, and then output their average rounded to 2 decimal places. See the
comments in randomAvg.cpp for hints on what to do. Consult the <cstdlib>
documentation if you want to know more about the rand () function, and remember
that you can use setprecision to do the rounding.
Here are some sample runs of my solution-remember that it'll be different every time
you run it because of the randomness! This is the style of output that your program
should have:
> solution ./randomAvg
Random numbers between 1 and 100:
17
48
4
62
66
Average: 39.40
→ solution ./randomAvg
Random numbers between 1 and 100:
78
84
63
47
4
Average: 55.20
→ solution
Compile your code with g++ -std=c++17 randomAvg.cpp -o randomAvg and verify
that it's working correctly.
Transcribed Image Text:List e Part 2: Average of 5 random humbers This first program will generate 5 random numbers between 1 and 100 (inclusive), print them out, and then output their average rounded to 2 decimal places. See the comments in randomAvg.cpp for hints on what to do. Consult the <cstdlib> documentation if you want to know more about the rand () function, and remember that you can use setprecision to do the rounding. Here are some sample runs of my solution-remember that it'll be different every time you run it because of the randomness! This is the style of output that your program should have: > solution ./randomAvg Random numbers between 1 and 100: 17 48 4 62 66 Average: 39.40 → solution ./randomAvg Random numbers between 1 and 100: 78 84 63 47 4 Average: 55.20 → solution Compile your code with g++ -std=c++17 randomAvg.cpp -o randomAvg and verify that it's working correctly.
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