2, What is the computational complexity of the following function? // findprimes // This function will find (and print to the screen) all // prime numbers up to the input parameter n; // inputs: integer n // This is C++ code, but it should read much like Java void findprimes (int n) int i; int j // setting a (0) and a(1) to "not prime " int a[n] ; a (0) =0; a(1) =0; ; for (i - 2; i < n; i++) // initialize everything to "prime"; will check later a(i) - 1; for (i = 2; i< n; i ++) if (ali)) for (j - i; (j*i) < n; j++) a[i*j] = 0; for (i = 2; i < n; i++) // cout <« i << "," << a(i) << endl; if (ali)) cout <« " " «i; cout << endl;
2, What is the computational complexity of the following function? // findprimes // This function will find (and print to the screen) all // prime numbers up to the input parameter n; // inputs: integer n // This is C++ code, but it should read much like Java void findprimes (int n) int i; int j // setting a (0) and a(1) to "not prime " int a[n] ; a (0) =0; a(1) =0; ; for (i - 2; i < n; i++) // initialize everything to "prime"; will check later a(i) - 1; for (i = 2; i< n; i ++) if (ali)) for (j - i; (j*i) < n; j++) a[i*j] = 0; for (i = 2; i < n; i++) // cout <« i << "," << a(i) << endl; if (ali)) cout <« " " «i; cout << endl;
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...
Related questions
Question
What is the computational complexity of the following function? /
Right answer need remember.
!["big-Oh" notation for each. Which one
2, What is the computational complexity of the following function?
// findprimes
// This function will find (and print to the screen) all
// prime numbers up to the input parameter n;
// inputs: integer n
// This is C++ code, but it should read much like Java
void findprimes (int n)
{
int i; int j;
// setting a(0] and a[1) to "not prime"
int a[n] ;
a [0] =0;
a(1) =0; ;
for (i = 2; i< n; i++)
// initialize everything to "prime"; will check later
a[i) - 1;
for (i - 2; i < n; i++)
if (a(i])
for (j = i; (j*i) < n; j++)
%3!
a[i*j]
= 0;
e of 20
for (i = 2; i < n; i++)
{
//
cout << i << "," << a[i) << endl;
if (ali))
cout << " " <« i ;
cout << endl;](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb9aa283c-b94e-432f-a098-2a0081e20cc1%2F03e7137f-3e46-4a8d-aa88-9621ea120507%2Ffax8u94_processed.jpeg&w=3840&q=75)
Transcribed Image Text:"big-Oh" notation for each. Which one
2, What is the computational complexity of the following function?
// findprimes
// This function will find (and print to the screen) all
// prime numbers up to the input parameter n;
// inputs: integer n
// This is C++ code, but it should read much like Java
void findprimes (int n)
{
int i; int j;
// setting a(0] and a[1) to "not prime"
int a[n] ;
a [0] =0;
a(1) =0; ;
for (i = 2; i< n; i++)
// initialize everything to "prime"; will check later
a[i) - 1;
for (i - 2; i < n; i++)
if (a(i])
for (j = i; (j*i) < n; j++)
%3!
a[i*j]
= 0;
e of 20
for (i = 2; i < n; i++)
{
//
cout << i << "," << a[i) << endl;
if (ali))
cout << " " <« i ;
cout << endl;
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