If the last digit of your unique real Kean ID is odd, implement a program that randomly generates 10 integers from -100 to 100, stores them in an 1D array and find a number (count) of even numbers. Calculate the execution time of counting even numbers. Repeat the test for 10,000 and 10,000,000 numbers. Provide your results in the form of a table below and provide a small summary. Provide source code, screenshot of at least one successful run and summary of the results in the following form (this table can be autogenerated or created manually) Array size 10 10,000 10,000,000 time

Computer Networking: A Top-Down Approach (7th Edition)
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Author:James Kurose, Keith Ross
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Use Java language and the last digit of ID is a 7

If the last digit of your unique real Kean ID is odd, implement a program that randomly generates
10 integers from -100 to 100, stores them in an 1D array and find a number (count) of even
numbers. Calculate the execution time of counting even numbers. Repeat the test for 10,000 and
10,000,000 numbers. Provide your results in the form of a table below and provide a small
summary.
Provide source code, screenshot of at least one successful run and summary of the results in
the following form (this table can be autogenerated or created manually)
Array size
10
10,000
10,000,000
time
Hint: You can use the following statements to calculate execution time.
long begin, end, time; // we will measure time it took
begin = System.nanoTime();//we measure in nanoseconds.
end = System.nanoTime();
time = end-begin;
Hint: You can use the following to generate random numbers:
(int)(Math.random() * 101 * (Math.random() > 0.5 ?1:-1));
Transcribed Image Text:If the last digit of your unique real Kean ID is odd, implement a program that randomly generates 10 integers from -100 to 100, stores them in an 1D array and find a number (count) of even numbers. Calculate the execution time of counting even numbers. Repeat the test for 10,000 and 10,000,000 numbers. Provide your results in the form of a table below and provide a small summary. Provide source code, screenshot of at least one successful run and summary of the results in the following form (this table can be autogenerated or created manually) Array size 10 10,000 10,000,000 time Hint: You can use the following statements to calculate execution time. long begin, end, time; // we will measure time it took begin = System.nanoTime();//we measure in nanoseconds. end = System.nanoTime(); time = end-begin; Hint: You can use the following to generate random numbers: (int)(Math.random() * 101 * (Math.random() > 0.5 ?1:-1));
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