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Write a Python program called DeDuplication that the program takes an input list [ 5 0 , 1 1 , 3 3 , 2 1

Write a Python program called DeDuplication that the program takes an input list [50,11,33,21,40,50,40,40,21] and generate an output list [11,21,33,40,50], which removes the duplicated elements and sorts the list. Users might give any input list. Test your program with different testcases (provide 2 or 3 test scenarios). In this lab, you can use a list counter to help you. (Hint: In this way, you need to know what the maximum element is in the input list. Then initialize a counting list and count the frequency for each element. After that iterate the counting list and print the elements whose frequencies are not zero.)
Write a Python program called BinarySearch for the de-duplicated list (make sure it is sorted). The program prompts the user for an integer n to search, then print if the integer is found. If the integer is found, the program also prints how many checks it takes to find the integer. Otherwise, the program can just print Fail to find the input number... or something similar. Test your program with different testcase (provide 2 or 3 test scenarios).
~Notice the reduced size of the output list. Also, take a look again at the input list and be reminded that the input list is not sorted!
Further, please be reminded that you cannot use library functions to either sort and or perform the de-duplication operation.

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