Design and implement a recursive version of the PalindromeTester program from Chapter 4. Design and.

Design and implement a recursive version of the PalindromeTester program from Chapter 4. Design and implement a program that implements Euclid’s algorithm for finding the greatest common divisor of two positive integers. The greatest common divisor is the largest integer that divides both values without producing a remainder. An iterative version of this method was part of the RationalNumber class presented in Chapter 5. In a class called DivisorCalc, define a static method called gcd that accepts two integers, num1 and num2. Create a driver to test your implementation. The
» Design and implement a recursive version of the PalindromeTester program from Chapter 4. Design and implement a program that implements Euclid’s algorithm for finding the greatest common divisor of two positive integers. The greatest common divisor is the largest integer that divides both values without producing a remainder. An iterative version of this method was part of the RationalNumber class presented in Chapter 5. In a class called DivisorCalc, define a static method called gcd that accepts two integers, num1 and num2. Create a driver to test your implementation. The recursive algorithm is defined as follows: > gcd(num1, num2) is num2 if num2 <= num1="" and="" num2=""> num1 > gcd(num1, num2) is gcd(num2, num1) if num1 <> > gcd(num1, num2) is gcd(num2, num1%num2) otherwise

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