Draw the contents of the hash table given the following conditions: • The size of the hash table is 25. Linear Probing is used to resolve collisions. • The hash function H(k) should be calculated in the following way where k is the element to be hashed: R(k) = k mod (summation of last two digits of your student id + 7) If R(k)<10 H(k)=R(k) + 8 else H(k)=R(k) - 4 What values will be in the hash table after the following sequence of insertions? 55, 65, 8, 18, 20, 11, 56, 27, 15, 167 [Note: Draw the values using a hash table and show your work for partial credit.]

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
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Draw the contents of the hash table given the following conditions:
The size of the hash table is 25.
Linear Probing is used to resolve collisions.
• The hash function H(k) should be calculated in the following way where k is the element
to be hashed:
R(k) = k mod (summation of last two digits of your student id + 7)
If R(k)<10
H(k)=R(k) + 8
else
H(k)=R(k) - 4
What values will be in the hash table after the following sequence of insertions?
55, 65, 8, 18, 20, 11, 56, 27, 15, 167
[Note: Draw the values using a hash table and show your work for partial credit.]
Transcribed Image Text:Draw the contents of the hash table given the following conditions: The size of the hash table is 25. Linear Probing is used to resolve collisions. • The hash function H(k) should be calculated in the following way where k is the element to be hashed: R(k) = k mod (summation of last two digits of your student id + 7) If R(k)<10 H(k)=R(k) + 8 else H(k)=R(k) - 4 What values will be in the hash table after the following sequence of insertions? 55, 65, 8, 18, 20, 11, 56, 27, 15, 167 [Note: Draw the values using a hash table and show your work for partial credit.]
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