STARTING OUT W/C++,...(LL)-W/ACCESS
STARTING OUT W/C++,...(LL)-W/ACCESS
9th Edition
ISBN: 9780134596174
Author: GADDIS
Publisher: PEARSON
Question
Book Icon
Chapter 19, Problem 5PC
Program Plan Intro

Error Testing

Dynamic Stack:

Program Plan:

Main.cpp:

  • Include required header files.
  • Inside the “main ()” function,
    • Create an object named “dstack” for stack.
    • Declare a variable named “popElem”.
    • Push 3 elements inside the stack using the function “push ()”.
    • Pop 3 elements from the stack using the function “pop ()”.

DynIntStack.h:

  • Include required header files.
  • Create a template.
  • Declare a class named “DynIntStack”. Inside the class
    • Inside the “private” access specifier,
      • Give structure declaration for the stack
        • Create an object for the template
        • Create a stack pointer name “next”.
      • Create a stack pointer name “top”
    • Inside the “public” access specifier,
      • Give a declaration for a constructor.
        • Assign null to the top node.
      • Give function declaration for “push ()”, “pop ()”,and “isEmpty ()”.
  • Give the class template.
  • Define function definition for “push ()”.
    • Assign null to the new node.
    • Dynamically allocate memory for new node,
    • Assign “num” to the value of new node.
    • Check if the stack is empty using the function “isEmpty ()”
      • If the condition is true then assign new node as the top and make the next node as null.
      • If the condition is not true then, assign top node to the next of new node and assign new node as the top.
  • Give the class template.
  • Define function definition for “pop ()”.
    • Assign null to the temp node.
    • Check if the stack is empty using the function “is_Empty ()”
      • If the condition is true then print “The stack is empty”.
      • If the condition is not true then,
        • Assign top value to the variable “num”.
        • Link top of next node to temp node.
        • Delete the top most node and make temp as the top node.
  • Define function definition for “isEmpty ()”.
    • Assign Boolean value to the variable
    • Check if the top node is null
      • Assign true to “status”.
    • Return the status

Blurred answer
Students have asked these similar questions
We are considering the RSA encryption scheme. The involved numbers are small, so the communication is insecure.  Alice's public key (n,public_key) is (247,7). A code breaker manages to factories  247 = 13 x 19  Determine Alice's secret key. To solve the problem, you need not use the extended Euclid algorithm, but you may assume that her private key is one of the following numbers 31,35,55,59,77,89.
Consider the following Turing Machine (TM). Does the TM halt if it begins on the empty tape? If it halts, after how many steps? Does the TM halt if it begins on a tape that contains a single letter A followed by blanks? Justify your answer.
Pllleasassseee ssiiirrrr soolveee thissssss questionnnnnnn
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
C++ Programming: From Problem Analysis to Program...
Computer Science
ISBN:9781337102087
Author:D. S. Malik
Publisher:Cengage Learning
Text book image
C++ for Engineers and Scientists
Computer Science
ISBN:9781133187844
Author:Bronson, Gary J.
Publisher:Course Technology Ptr
Text book image
Systems Architecture
Computer Science
ISBN:9781305080195
Author:Stephen D. Burd
Publisher:Cengage Learning
Text book image
Programming Logic & Design Comprehensive
Computer Science
ISBN:9781337669405
Author:FARRELL
Publisher:Cengage
Text book image
EBK JAVA PROGRAMMING
Computer Science
ISBN:9781337671385
Author:FARRELL
Publisher:CENGAGE LEARNING - CONSIGNMENT
Text book image
Microsoft Visual C#
Computer Science
ISBN:9781337102100
Author:Joyce, Farrell.
Publisher:Cengage Learning,