C Programming Language || Hands On Coding
Hands-on C programming language challenges for beginners. Learn building logic by solving programs. Owner: @Pradeep_saii
Больше📈 Аналитический обзор Telegram-канала C Programming Language || Hands On Coding
Канал C Programming Language || Hands On Coding (@c_programming_language_coding) языкового сегмента Английский является активным участником. Сейчас сообщество объединяет 12 822 подписчиков, занимая 9 562 место в категории Технологии и приложения и 31 207 место в регионе Индия.
📊 Показатели аудитории и динамика
С момента создания невідомо проект демонстрирует стремительный рост, собрав аудиторию из 12 822 подписчиков.
Согласно последним данным от 26 августа, 2026, канал показывает стабильную активность. За последние 30 дней изменение числа участников составило -210, а за последние 24 часа — -2, при этом общий охват остаётся высоким.
- Статус верификации: Не верифицирован
- Уровень вовлечённости (ER): Средний показатель вовлечённости аудитории составляет 12.56%. В первые 24 часа после публикации контент обычно набирает 2.42% реакций от общего числа подписчиков.
- Охват публикаций: В среднем каждый пост получает 1 612 просмотров. В течение первых суток публикация набирает 310 просмотров.
- Реакции и взаимодействия: Аудитория активно поддерживает контент: среднее количество реакций на один пост — 4.
- Тематические интересы: Контент сосредоточен на ключевых темах, таких как input, string, scanf("%d, array, element.
📝 Описание и контентная политика
Автор описывает ресурс как площадку для выражения субъективного мнения:
“Hands-on C programming language challenges for beginners. Learn building logic by solving programs.
Owner: @Pradeep_saii”
Благодаря высокой частоте обновлений (последние данные получены 27 августа, 2026) канал поддерживает актуальность и высокий уровень охвата публикаций. Аналитика показывает, что аудитория активно взаимодействует с контентом, что делает его важной точкой влияния в категории Технологии и приложения.
#include <stdio.h>
int main() {
int number;
do {
printf("Enter a positive number: ");
scanf("%d", &number);
if (number <= 0) {
printf("Invalid input. Please enter a positive number.n");
}
} while (number <= 0);
printf("You entered: %dn", number);
return 0;
}
📤 Output:
Input: -5 Output: Enter a positive number: Invalid input. Please enter a positive number. Input: 0 Output: Enter a positive number: Invalid input. Please enter a positive number. Input: 10 Output: Enter a positive number: You entered: 10
#include <stdio.h>
#include <stdlib.h>
#include <time.h>
int main() {
int secretNumber, guess;
int attempts = 0;
srand(time(0));
secretNumber = rand() % 100 + 1;
do {
printf("Guess a number between 1 and 100: ");
scanf("%d", &guess);
attempts++;
if (guess > secretNumber) {
printf("Too high!n");
} else if (guess < secretNumber) {
printf("Too low!n");
} else {
printf("Congratulations! You guessed the number in %d attempts.n", attempts);
}
} while (guess != secretNumber);
return 0;
}
📤 Output:
Guess a number between 1 and 100: Input: 50 Output: Too high! Guess a number between 1 and 100: Input: 25 Output: Too low! Guess a number between 1 and 100: Input: 37 Output: Too high! Guess a number between 1 and 100: Input: 31 Output: Too low! Guess a number between 1 and 100: Input: 34 Output: Too low! Guess a number between 1 and 100: Input: 35 Output: Congratulations! You guessed the number in 6 attempts.
#include <stdio.h>
#include <stdlib.h>
int main() {
int choice;
float num1, num2, result;
do {
printf("Menu:n");
printf("1. Additionn");
printf("2. Subtractionn");
printf("3. Multiplicationn");
printf("4. Divisionn");
printf("0. Exitn");
printf("Enter your choice: ");
scanf("%d", &choice);
if (choice >= 1 && choice <= 4) {
printf("Enter two numbers: ");
scanf("%f %f", &num1, &num2);
}
switch (choice) {
case 1:
result = num1 + num2;
printf("Result: %fn", result);
break;
case 2:
result = num1 - num2;
printf("Result: %fn", result);
break;
case 3:
result = num1 * num2;
printf("Result: %fn", result);
break;
case 4:
if (num2 != 0) {
result = num1 / num2;
printf("Result: %fn", result);
} else {
printf("Cannot divide by zero.n");
}
break;
case 0:
printf("Exiting...n");
break;
default:
printf("Invalid choice.n");
}
} while (choice != 0);
return 0;
}
📤 Output:
Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 1 Input: 1 Enter two numbers: Input: 5.0 3.0 Output: Result: 8.000000 Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 2 Input: 2 Enter two numbers: Input: 10.0 4.0 Output: Result: 6.000000 Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 3 Input: 3 Enter two numbers: Input: 2.5 4.0 Output: Result: 10.000000 Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 4 Input: 4 Enter two numbers: Input: 10.0 2.0 Output: Result: 5.000000 Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 4 Input: 4 Enter two numbers: Input: 5.0 0.0 Output: Cannot divide by zero. Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 5 Input: 5 Output: Invalid choice. Menu: 1. Addition 2. Subtraction 3. Multiplication 4. Division 0. Exit Enter your choice: 0 Input: 0 Output: Exiting...
#include <stdio.h>
int main() {
int base, exponent;
long long result = 1;
printf("Enter the base: ");
scanf("%d", &base);
printf("Enter the exponent: ");
scanf("%d", &exponent);
for (int i = 0; i < exponent; i++) {
result *= base;
}
printf("Result = %lldn", result);
return 0;
}
📤 Output:
Input: 2 Input: 3 Output: Result = 8 Input: 5 Input: 0 Output: Result = 1 Input: 3 Input: 4 Output: Result = 81 Input: 2 Input: 10 Output: Result = 1024
#include <stdio.h>
int main() {
int num1, num2, max;
scanf("%d %d", &num1, &num2);
max = (num1 > num2) ? num1 : num2;
for (;;) {
if (max % num1 == 0 && max % num2 == 0) {
printf("%d", max);
break;
}
max++;
}
return 0;
}
📤 Output:
Input: 12 18 Output: 36 Input: 5 7 Output: 35 Input: 2 4 Output: 4 Input: 15 25 Output: 75 Input: 1 10 Output: 10
#include <stdio.h>
int main() {
int rows, i, j, space;
scanf("%d", &rows);
for (i = 1; i <= rows; i++) {
for (space = i; space < rows; space++) {
printf(" ");
}
for (j = 1; j <= (2 * i - 1); j++) {
printf("*");
}
printf("n");
}
for (i = rows - 1; i >= 1; i--) {
for (space = i; space < rows; space++) {
printf(" ");
}
for (j = 1; j <= (2 * i - 1); j++) {
printf("*");
}
printf("n");
}
return 0;
}
📤 Output:
Input: 5
Output:
*
***
*****
*******
*********
*******
*****
***
*#include <stdio.h>
int main() {
int rows, i, j, space;
printf("Enter the number of rows: ");
scanf("%d", &rows);
for (i = 1; i <= rows; i++) {
for (space = i; space < rows; space++) {
printf(" ");
}
for (j = 1; j <= (2 * i - 1); j++) {
printf("*");
}
printf("n");
}
return 0;
}
📤 Output:
// Code not available
#include <stdio.h>
int main() {
int rows, i, j;
printf("Enter the number of rows: ");
scanf("%d", &rows);
for (i = rows; i >= 1; --i) {
for (j = 1; j <= i; ++j) {
printf("*");
}
printf("n");
}
return 0;
}
📤 Output:
Input: 5 Output: Enter the number of rows: ***** **** *** ** *
#include <stdio.h>
int main() {
int rows;
printf("Enter the number of rows: ");
scanf("%d", &rows);
for (int i = 1; i <= rows; i++) {
for (int j = 1; j <= i; j++) {
printf("*");
}
printf("n");
}
return 0;
}
📤 Output:
Input: 5 Output: * ** *** **** *****
#include <stdio.h>
int main() {
int num, i;
printf("Enter an integer: ");
scanf("%d", &num);
printf("Factors of %d are: ", num);
for (i = 1; i <= num; ++i) {
if (num % i == 0) {
printf("%d ", i);
}
}
printf("n");
return 0;
}
📤 Output:
Input: 12 Output: Factors of 12 are: 1 2 3 4 6 12 Input: 7 Output: Factors of 7 are: 1 7 Input: 25 Output: Factors of 25 are: 1 5 25 Input: 1 Output: Factors of 1 are: 1
#include <stdio.h>
int main() {
int num, i, flag = 0;
printf("Enter a positive integer: ");
scanf("%d", &num);
if (num <= 1) {
printf("%d is not a prime number.n", num);
return 0;
}
for (i = 2; i <= num / 2; ++i) {
if (num % i == 0) {
flag = 1;
break;
}
}
if (flag == 0)
printf("%d is a prime number.n", num);
else
printf("%d is not a prime number.n", num);
return 0;
}
📤 Output:
Input: 7 Output: 7 is a prime number. Input: 12 Output: 12 is not a prime number. Input: 1 Output: 1 is not a prime number. Input: 2 Output: 2 is a prime number. Input: 0 Output: 0 is not a prime number. Input: -5 Output: -5 is not a prime number.
#include <stdio.h>
#include <stdbool.h>
int main() {
int start, end, i, j;
bool isPrime;
printf("Enter the starting number: ");
scanf("%d", &start);
printf("Enter the ending number: ");
scanf("%d", &end);
printf("Prime numbers between %d and %d are:n", start, end);
for (i = start; i <= end; i++) {
if (i <= 1)
continue;
isPrime = true;
for (j = 2; j * j <= i; j++) {
if (i % j == 0) {
isPrime = false;
break;
}
}
if (isPrime) {
printf("%d ", i);
}
}
printf("n");
return 0;
}
📤 Output:
Input: 10 Input: 20 Output: Prime numbers between 10 and 20 are: 11 13 17 19 Input: 1 Input: 10 Output: Prime numbers between 1 and 10 are: 2 3 5 7 Input: 20 Input: 30 Output: Prime numbers between 20 and 30 are: 23 29 Input: 1 Input: 1 Output: Prime numbers between 1 and 1 are:
#include <stdio.h>
int main() {
int n, i;
int first = 0, second = 1;
int next;
printf("Enter the number of terms: ");
scanf("%d", &n);
printf("Fibonacci Series: ");
for (i = 0; i < n; i++) {
printf("%d ", first);
next = first + second;
first = second;
second = next;
}
printf("n");
return 0;
}
📤 Output:
Input: 10 Output: Fibonacci Series: 0 1 1 2 3 5 8 13 21 34
#include <stdio.h>
int factorial(int n) {
int fact = 1;
for (int i = 1; i <= n; i++) {
fact *= i;
}
return fact;
}
int isStrong(int num) {
int sum = 0;
int temp = num;
while (temp != 0) {
int digit = temp % 10;
sum += factorial(digit);
temp /= 10;
}
return (sum == num);
}
int main() {
int start, end;
printf("Enter the starting number: ");
scanf("%d", &start);
printf("Enter the ending number: ");
scanf("%d", &end);
printf("Strong numbers between %d and %d are: ", start, end);
for (int i = start; i <= end; i++) {
if (isStrong(i)) {
printf("%d ", i);
}
}
printf("n");
return 0;
}
📤 Output:
Input: 1 Input: 150 Output: Strong numbers between 1 and 150 are: 1 2 145
#include <stdio.h>
int main() {
int start, end, i, j, sum;
printf("Enter the starting number: ");
scanf("%d", &start);
printf("Enter the ending number: ");
scanf("%d", &end);
printf("Perfect numbers between %d and %d are: ", start, end);
for (i = start; i <= end; i++) {
sum = 0;
for (j = 1; j < i; j++) {
if (i % j == 0) {
sum += j;
}
}
if (sum == i) {
printf("%d ", i);
}
}
printf("n");
return 0;
}
📤 Output:
Input: 1 Input: 10 Output: Perfect numbers between 1 and 10 are: 6 Input: 20 Input: 30 Output: Perfect numbers between 20 and 30 are: 28 Input: 1 Input: 500 Output: Perfect numbers between 1 and 500 are: 6 28 496 Input: 490 Input: 500 Output: Perfect numbers between 490 and 500 are: 496
#include <stdio.h>
#include <math.h>
int main() {
int start, end, i, num, originalNum, remainder, n = 0;
float result = 0.0;
printf("Enter the start of the range: ");
scanf("%d", &start);
printf("Enter the end of the range: ");
scanf("%d", &end);
printf("Armstrong numbers between %d and %d are: ", start, end);
for (i = start; i <= end; ++i) {
originalNum = i;
num = i;
n = 0;
result = 0.0;
while (originalNum != 0) {
originalNum /= 10;
++n;
}
originalNum = num;
while (originalNum != 0) {
remainder = originalNum % 10;
result += pow(remainder, n);
originalNum /= 10;
}
if ((int)result == num) {
printf("%d ", num);
}
}
printf("n");
return 0;
}
📤 Output:
Input: 100 Input: 500 Output: Armstrong numbers between 100 and 500 are: 153 370 371 407 Input: 1 Input: 10 Output: Armstrong numbers between 1 and 10 are: 1 2 3 4 5 6 7 8 9 Input: 0 Input: 0 Output: Armstrong numbers between 0 and 0 are: 0
#include <stdio.h>
#include <math.h>
int main() {
int number, originalNumber, remainder, n = 0;
float result = 0.0;
printf("Enter an integer: ");
scanf("%d", &number);
originalNumber = number;
// Count number of digits
while (originalNumber != 0) {
originalNumber /= 10;
++n;
}
originalNumber = number;
// Calculate result
while (originalNumber != 0) {
remainder = originalNumber % 10;
result += pow(remainder, n);
originalNumber /= 10;
}
// Check if number is Armstrong
if ((int)result == number)
printf("%d is an Armstrong number.", number);
else
printf("%d is not an Armstrong number.", number);
return 0;
}
📤 Output:
Input: 153 Output: 153 is an Armstrong number. Input: 120 Output: 120 is not an Armstrong number. Input: 1634 Output: 1634 is an Armstrong number. Input: 1234 Output: 1234 is not an Armstrong number.
#include <stdio.h>
int main() {
int num, reversed_num = 0, remainder, original_num;
printf("Enter an integer: ");
scanf("%d", &num);
original_num = num;
for (; num != 0; num /= 10) {
remainder = num % 10;
reversed_num = reversed_num * 10 + remainder;
}
if (original_num == reversed_num)
printf("%d is a palindrome.n", original_num);
else
printf("%d is not a palindrome.n", original_num);
return 0;
}
📤 Output:
Input: 121 Output: 121 is a palindrome. Input: 123 Output: 123 is not a palindrome. Input: 12321 Output: 12321 is a palindrome. Input: 12345 Output: 12345 is not a palindrome. Input: 1 Output: 1 is a palindrome. Input: 0 Output: 0 is a palindrome.
