(Solved) : 82 Closed Hash Table Implement Closed Hash Table Hash Table Take Numbers Input Hash Functi Q44150733 . . .
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8.2 Closed Hash Table Implement an Closed Hash Table. Your Hash table will only take numbers as input. Your hash function will be hash(val, size) = val % size Your rehash strategy will be rehash(val, k, size) = (hash(val, size) + k) % N You must implement the following functions • Constructor: takes number of rows in column • String Method: prints one line for each row in the format shown below • hash: Implements the hash function • rehash: Implement rehash strategy • insert: Inserts number into hash table (ignore duplicates) • member: returns True if number is in hash table and false otherwise • delete: removes the number from hash table if it exists You are provided with a test script which will use your Closed Hash Table. An example execution is provided below. An example execution is provided below. Welcome to closed Hash Table Tests How big would you like your hash table to be? Enter a seed for the random number generator: 65 Created an Empty Hash Table Row 0 None Row 1 None Insert Random Numbers in range 0 to 5n Inserting 6 into hash table After Insert your hash table looks like: Row 06 Row 1 None Inserting 4 into hash table After Insert your hash table looks like: Row 0 6 Row 1 4 Testing Member on all numbers from 0 to 5n Passed 10 out of 10 Deleting all values in Hash Deleting value 6 After Delete your hash table looks like: Row O None Row 1 4 Deleting value 4 After Delete your hash table looks like: Row 0 None Row 1 None 1 #Implement an Closed hash table with 2 #hash function hash(i,N)=i mod n 3 #Rehash Strategy: rehash(i,k,N)= (hash(i,N)+k) mod N 5 class closedHash: def __init__(self,n): return def __str__(self): return def hash(self,i): return def rehash(self,i,k): return def insert(self, num): return def member(self, num): return def delete(self, num): return Show transcribed image text 8.2 Closed Hash Table Implement an Closed Hash Table. Your Hash table will only take numbers as input. Your hash function will be hash(val, size) = val % size Your rehash strategy will be rehash(val, k, size) = (hash(val, size) + k) % N You must implement the following functions • Constructor: takes number of rows in column • String Method: prints one line for each row in the format shown below • hash: Implements the hash function • rehash: Implement rehash strategy • insert: Inserts number into hash table (ignore duplicates) • member: returns True if number is in hash table and false otherwise • delete: removes the number from hash table if it exists You are provided with a test script which will use your Closed Hash Table. An example execution is provided below.
An example execution is provided below. Welcome to closed Hash Table Tests How big would you like your hash table to be? Enter a seed for the random number generator: 65 Created an Empty Hash Table Row 0 None Row 1 None Insert Random Numbers in range 0 to 5n Inserting 6 into hash table After Insert your hash table looks like: Row 06 Row 1 None Inserting 4 into hash table After Insert your hash table looks like: Row 0 6 Row 1 4 Testing Member on all numbers from 0 to 5n Passed 10 out of 10 Deleting all values in Hash Deleting value 6 After Delete your hash table looks like: Row O None Row 1 4 Deleting value 4 After Delete your hash table looks like: Row 0 None Row 1 None
1 #Implement an Closed hash table with 2 #hash function hash(i,N)=i mod n 3 #Rehash Strategy: rehash(i,k,N)= (hash(i,N)+k) mod N 5 class closedHash: def __init__(self,n): return def __str__(self): return def hash(self,i): return def rehash(self,i,k): return def insert(self, num): return def member(self, num): return def delete(self, num): return
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