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Write biggerDigits. cpp that has a function called biggerDigits that uses two positive integer parameters with the same number of digits and returns an integer whose digit in each position is the bigger of the two digits in that position in the input parameters. If a negative parameter is given, or if parameters with unequal numbers of digits are given your function can return any result of your choosing. Use recursion.

cout << biggerDigits (567, 765) << endl; / / prints 767

cout << biggerDigits (123456, 444444) << endl; / / prints 444456

cout << biggerDigits (999, 111) << endl; / / prints 999

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  1. 12 October, 13:42
    0
    Following are the program in the C+ + Programming Language:

    #include / /header file

    using namespace std; / /namespace

    int biggerDigits (int n, int m) { / /define function

    if (n < = 0 || m < = 0) { / /set if statement

    return 0;

    }

    else { / /set else statement

    int a, b; / /set integer variables

    a = n % 10; / /perform modulatio

    b = m % 10; / /perform modulatio

    int max = a; / /set integer variable and assign value

    if (b > max) / /set if statement

    max = b; / /initialize value to max

    /*solution is here*/

    return 10 * biggerDigits (n / 10, m / 10) + max;

    }

    }

    int main () / / main method

    { / / code is refer from question to make the program

    cout << biggerDigits (567, 765) << endl; / / call the function biggerdigits

    cout << biggerDigits (123456, 444444) << endl; / / call the function biggerdigits

    //call function and print result

    cout << biggerDigits (999, 111) << endl; / / call the function biggerdigits

    return 0; / / return the integer 0

    }

    Explanation:

    Here, we set the header file "" and namespace "std" then, we set a function "biggerDigits () " and pass two integer type arguments inside it.

    we set if condition in which when the variable "n" is less than equal to 0 or m is less than equal to 0 then, it return 0. we set the else statement inside it we set two integer type variables "a" and "b" then, perform modulation with both the variables. we set integer variable "max" and assign value of a in it. we set if condition in which we check when the variable b is greater than variable max then, initialize the value of variable b in the variable max and return the solution through recursion.
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