Project 9: The digital root of a positive integer is found by summing the digits of the integer. If the resulting value is a single digit then that digit is the digital root. If the resulting value contains two or more digits, those digits are summed and the process is repeated. This is continued as long as necessary to obtain a single digit. For example, consider the positive integer 24. Adding the 2 and the 4 yields a value of 6. Since 6 is a single digit, 6 is the digital root of 24. Now consider the positive integer 39. Adding the 3 and the 9 yields 12. Since 12 is not a single digit, the process must be repeated. Adding the 1 and the 2 yields 3, a single digit and also the digital root of 39. Input File: The input file will contain a list of positive integers, one per line. The end of the input will be indicated by an integer value of zero. Output File: For each integer in the input, output its digital root on a separate line of the output. Example Input: 24 39 34527689425676154283672531207341 0 Example Output: 6 3

Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
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Project 9:
The digital root of a positive integer is found by summing the digits of the integer. If the resulting
value is a single digit then that digit is the digital root. If the resulting value contains two or more
digits, those digits are summed and the process is repeated. This is continued as long as necessary to
obtain a single digit. For example, consider the positive integer 24. Adding the 2 and the 4 yields a
value of 6. Since 6 is a single digit, 6 is the digital root of 24. Now consider the positive integer 39.
Adding the 3 and the 9 yields 12. Since 12 is not a single digit, the process must be repeated. Adding
the 1 and the 2 yields 3, a single digit and also the digital root of 39.
File:
Input
The input file will contain a list of positive integers, one per line. The end of the input will be
indicated by an integer value of zero.
Output
File:
For each integer in the input, output its digital root on a separate line of the output.
Example Input:
24
39
34527689425676154283672531207341
0
Example Output:
6
3
M
Transcribed Image Text:Project 9: The digital root of a positive integer is found by summing the digits of the integer. If the resulting value is a single digit then that digit is the digital root. If the resulting value contains two or more digits, those digits are summed and the process is repeated. This is continued as long as necessary to obtain a single digit. For example, consider the positive integer 24. Adding the 2 and the 4 yields a value of 6. Since 6 is a single digit, 6 is the digital root of 24. Now consider the positive integer 39. Adding the 3 and the 9 yields 12. Since 12 is not a single digit, the process must be repeated. Adding the 1 and the 2 yields 3, a single digit and also the digital root of 39. File: Input The input file will contain a list of positive integers, one per line. The end of the input will be indicated by an integer value of zero. Output File: For each integer in the input, output its digital root on a separate line of the output. Example Input: 24 39 34527689425676154283672531207341 0 Example Output: 6 3 M
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