Write a function named sumDigits which takes three parameters: f, t and x. sumDigits, then, finds the smallest integer between f and t (both inclusive) whose sum of digits is x, and returns that integer.

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Write a function named sumDigits which takes three parameters: f, t and x. sumDigits, then, finds the smallest integer between f and t (both inclusive) whose sum of digits is x, and returns that integer. 

Write a function named sumDigits which takes three parameters: f, t and x.
sumDigits, then, finds the smallest integer between f and t (both inclusive)
whose sum of digits is x, and returns that integer. For example,
sumDigits(20, 30, 9) returns 27, because the smallest integer between 20 and 30
whose sum of digits is 9, is 27 (2+7=9):
20 -> 2+0 = 2
21 -> 2+1 = 3
22 -> 2+2 = 4
23 -> 2+3 =
5
24 -> 2+4 = 6
25 -> 2+5
= 7
26 -> 2+6 = 8
27 -> 2+7 = 9
==> return 27
Your function should run for any f, t, and x value. If there is no such number,
then return -1.
Transcribed Image Text:Write a function named sumDigits which takes three parameters: f, t and x. sumDigits, then, finds the smallest integer between f and t (both inclusive) whose sum of digits is x, and returns that integer. For example, sumDigits(20, 30, 9) returns 27, because the smallest integer between 20 and 30 whose sum of digits is 9, is 27 (2+7=9): 20 -> 2+0 = 2 21 -> 2+1 = 3 22 -> 2+2 = 4 23 -> 2+3 = 5 24 -> 2+4 = 6 25 -> 2+5 = 7 26 -> 2+6 = 8 27 -> 2+7 = 9 ==> return 27 Your function should run for any f, t, and x value. If there is no such number, then return -1.
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