This sequence of numbers can start with any positive number n. s is the sum of the individual digits in n. If s divides n equally it means that the next term of the series is n // s. Otherwise the next word is n * s. Eventually the series will come to an end when two numbers are exchanged: 58, 754, 12064, 928, 17632, 928, 17632. This series has 5 lengths and 17632 as the last term. Create a function that takes a positive number and returns its series length and its final term. Examples deadEnd (5) → [2, 1] deadEnd (11) [7, 11440]

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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This sequence of numbers can start with any positive number
n. s is the sum of the individual digits in n. If s divides n equally
it means that the next term of the series is n// s. Otherwise
the next word is n * s. Eventually the series will come to an
end when two numbers are exchanged: 58, 754, 12064, 928,
17632, 928, 17632. This series has 5 lengths and 17632 as the last term.
S
Create a function that takes a positive number and returns its series length and its final term.
Examples
deadEnd (5) [2, 1]
deadEnd (11)
[7, 11440]
Transcribed Image Text:This sequence of numbers can start with any positive number n. s is the sum of the individual digits in n. If s divides n equally it means that the next term of the series is n// s. Otherwise the next word is n * s. Eventually the series will come to an end when two numbers are exchanged: 58, 754, 12064, 928, 17632, 928, 17632. This series has 5 lengths and 17632 as the last term. S Create a function that takes a positive number and returns its series length and its final term. Examples deadEnd (5) [2, 1] deadEnd (11) [7, 11440]
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