Introduction to Java Programming and Data Structures, Comprehensive Version (11th Edition)
Introduction to Java Programming and Data Structures, Comprehensive Version (11th Edition)
11th Edition
ISBN: 9780134670942
Author: Y. Daniel Liang
Publisher: PEARSON
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Chapter 21.2, Problem 21.2.10CP
Program Plan Intro

Program:

// Java code for adding elements in Set

//import util package

import java.util.*;

//class definition

public class Example_1 {

// main method

public static void main(String[] args)

{

/*Create a new TreeSet and use comparator to compare string length*/

Set<String> set = new TreeSet<>(

Comparator.comparing(String::length));

//add element ABC into the set

set.add("ABC");

//add element and into the set

set.add("ABD");

//print elements present in the set

System.out.println(set);

}

}

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Not allowed to add variables in brackets next to originIndex      * @return index of the point that is closest to the origin, which is (0, 0) In     *         case of a tie, return the lowest index     */    public int closestToOriginIndex() {
//give the output of the following program and draw the link list. struct node{   int info;   struct node *link;};typedef struct node *nodePTR;void insort(nodePTR*,struct Info);nodePTR getnode();int main(void){nodePTR p=NULL,head=NULL,save;inti; for(i=0;i<3;i++){   insort (&head,i+5);}save=head;do{   printf("%d",save->info);   save=save->link;}while(save!=NULL); return0;}nodePTR getnode(){nodePTR q;q=(nodePTR)malloc(sizeof(struct node));return q;}void insort(NODEPTR *head , int x){   NODEPTR p,q,r;   q=NULL;   for(p=*head; p!=NULL &&x>p->info; p=p->link)   q=p;   if(q=NULL)   {       p=getnode();       p->info=x;       p->link=head;       head=p;   }else{   r=getnode();   q->link=r;   r->info=x;   r->link=p;  }}
using namespace std; class SinglyLinkedListNode { // INSERT YOUR CODE HERE }; class SinglyLinkedList { public: SinglyLinkedListNode *head; SinglyLinkedListNode *tail; SinglyLinkedList() { this->head = nullptr; this->tail = nullptr; } voidinsert_node(intnode_data) { // INSERT YOUR CODE HERE } }; void free_singly_linked_list(SinglyLinkedListNode* node) { // INSERT YOUR CODE HERE } // Complete the has_cycle function below. /* * For your reference: * * SinglyLinkedListNode { * int data; * SinglyLinkedListNode* next; * }; * */ bool has_cycle(SinglyLinkedListNode* head) { SinglyLinkedListNode* temp = head; bool isCycle = false; while (temp != nullptr) { // INSERT YOUR CODE HERE } } int main() { // INSERT YOUR CODE HERE TO TEST YOUR CODE return0; }
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