Consider the gueue ADT: Queue: enqueue(x) adds x to the back of the queue dequeue() removes element at the front of the queue size() returns number of elements in queue Select all options that allow for an efficient implementation based on the discussions from class. For any array implementation, you can assume the array is large enough so that making a larger one is not needed when pushing an item to the stack. You can assume that a linked list will have both a head and tail reference. Using an array with the front of the queue at the front of the array. Using an array with the front of the queue at the back of the array. Using a singly linked list with the front of the queue at the head of the list. Using a singly linked list with the front of the queue at the tail of the list. None of these choices allows for an efficient implementation of all methods.

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
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Consider the Queue ADT:
Queue:
enqueue(x) adds x to the back of the queue
dequeue () removes element at the front of the queue
size() returns number of elements in queue
Select all options that allow for an efficient implementation based on the discussions
from class. For any array implementation, you can assume the array is large enough
so that making a larger one is not needed when pushing an item to the stack. You can
assume that a linked list will have both a head and tail reference.
Using an array with the front of the queue at the front of the array.
Using an array with the front of the queue at the back of the array.
Using a singly linked list with the front of the queue at the head of the list.
Using a singly linked list with the front of the queue at the tail of the list.
None of these choices allows for an efficient implementation of all methods.
Transcribed Image Text:Consider the Queue ADT: Queue: enqueue(x) adds x to the back of the queue dequeue () removes element at the front of the queue size() returns number of elements in queue Select all options that allow for an efficient implementation based on the discussions from class. For any array implementation, you can assume the array is large enough so that making a larger one is not needed when pushing an item to the stack. You can assume that a linked list will have both a head and tail reference. Using an array with the front of the queue at the front of the array. Using an array with the front of the queue at the back of the array. Using a singly linked list with the front of the queue at the head of the list. Using a singly linked list with the front of the queue at the tail of the list. None of these choices allows for an efficient implementation of all methods.
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