Write a function that takes in an array of integers and returns the integers that are either palindromes or almost-palindromes. An almost-palindrome is any integer that can be rearranged to form a palindrome. For example, the numbers 677 and 338 are both almost-palindromes, since they can be rearranged to form 767 and 383, respectively. Examples palindromeSieve ([443, 12, 639, 121, 3232]) [443, 121, 3232] // Since 443 => 434; 121 is a palindrome; 3232 => 2332 or 3223 palindromeSieve ([5, 55, 6655, 8787]) [5, 55, 6655, 8787] // Single-digit numbers are automatically palindromes. palindromeSieve ([897, 89, 23, 54, 6197, 53342]) → []

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Write a function that takes in an array of integers and returns the integers that are either
palindromes or almost-palindromes. An almost-palindrome is any integer that can be
rearranged to form a palindrome.
For example, the numbers 677 and 338 are both almost-palindromes, since they can be
rearranged to form 767 and 383, respectively.
Examples
palindromeSieve ([443, 12, 639, 121, 3232]) [443, 121, 3232]
// Since 443 => 434; 121 is a palindrome; 3232 => 2332 or 3223
palindromeSieve([5, 55, 6655, 8787]) → [5, 55, 6655, 8787]
// Single-digit numbers are automatically palindromes.
palindromeSieve ([897, 89, 23, 54, 6197, 53342])
-
[]
Transcribed Image Text:Write a function that takes in an array of integers and returns the integers that are either palindromes or almost-palindromes. An almost-palindrome is any integer that can be rearranged to form a palindrome. For example, the numbers 677 and 338 are both almost-palindromes, since they can be rearranged to form 767 and 383, respectively. Examples palindromeSieve ([443, 12, 639, 121, 3232]) [443, 121, 3232] // Since 443 => 434; 121 is a palindrome; 3232 => 2332 or 3223 palindromeSieve([5, 55, 6655, 8787]) → [5, 55, 6655, 8787] // Single-digit numbers are automatically palindromes. palindromeSieve ([897, 89, 23, 54, 6197, 53342]) - []
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