pc-ip-15.c¶
Problem Statement
Question 15: Write a program to calculate the GCD of two numbers using recursive and iterative function.
Metadata¶
| Property | Detail |
|---|---|
| Author | Amit Dutta amitdutta4255@gmail.com |
| Date | 05 Jan 2026 |
| License | MIT License (See the LICENSE file for details) |
| Difficulty | Beginner (index: 2 / 10) |
Concepts¶
Beta Feature
This concept detection system is still in beta and may occasionally show incorrect or incomplete results.
- Recursion
- Iteration
Actions¶
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Source Code¶
#include <stdio.h>
int gcd_rec(int, int);
int gcd_ite(int, int);
int main()
{
int a, b;
printf("Enter two number: ");
scanf("%d %d", &a, &b);
printf("\nGCD(%d, %d) (Recursion) = %d", a, b, gcd_rec(a, b));
printf("\nGCD(%d, %d) (Iteration) = %d", a, b, gcd_ite(a, b));
return 0;
}
int gcd_ite(int a, int b)
{
int temp;
while (a != 0)
{
temp = a;
a = b % a;
b = temp;
}
return b;
}
int gcd_rec(int a, int b)
{
if (a == 0)
{
return b;
}
else
{
return gcd_rec(b % a, a);
}
}
Explanation¶
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You are explaining a C programming code to a beginner.
STRICT RULES:
- Only use the given code. Do NOT assume anything not present.
- Do NOT add extra examples.
- Keep explanation clear and short.
- If something is unclear, say "Not clear from code".
- Follow the exact format below. Do NOT change headings.
FORMAT:
[START]
## What it does
(Explain the overall purpose in 1-2 sentences)
## Step-by-step
(Explain how the code works in steps, simple language)
## Key Concepts
(List concepts like loop, condition, function, etc.)
## Notes
(Mention any limitations, errors, or assumptions)
[END]
CODE (pc-ip-15.c):
#include <stdio.h>
int gcd_rec(int, int);
int gcd_ite(int, int);
int main()
{
int a, b;
printf("Enter two number: ");
scanf("%d %d", &a, &b);
printf("\nGCD(%d, %d) (Recursion) = %d", a, b, gcd_rec(a, b));
printf("\nGCD(%d, %d) (Iteration) = %d", a, b, gcd_ite(a, b));
return 0;
}
int gcd_ite(int a, int b)
{
int temp;
while (a != 0)
{
temp = a;
a = b % a;
b = temp;
}
return b;
}
int gcd_rec(int a, int b)
{
if (a == 0)
{
return b;
}
else
{
return gcd_rec(b % a, a);
}
}