Create a Right Triangle class that has two sides. Name your class rightTraingle. Code getter and setters for the base and the height. (Remember class variables are private.) The class should include a two-argument constructor that allows the program to set the base and height. The constructor should verify that all the dimensions are greater than 0. before assigning the values to the private data members. If a side is not greater than zero, set the value to -1. The class also should include two value-returning methods. One value-returning method should calculate the area of a triangle, and the other should calculate the perimeter of a triangle. If either side is -1, these functions return a -1. The formula for calculating the area of a triangle is 1/2 *b*h, where b is the base and h is the height. The formula for calculating the perimeter of a triangle is b+h+sqrt (b*b +h*h). Be sure to include a default constructor that initializes the variables of the base, height to -1. To test create a program(main function) that uses the two-argument constructor to set the triangle's base and height and then displays the triangle's area and perimeter amounts. Then use the no- argument constructor to do the same. You can use the main function below to implement these tests. Save and then run the program. Test the program using the main function shown below. Also shown is the expected output. int main() { iinstatiate the rightTriangle object rightTriangle testīriangle(3, 4); cout « "The perimeter is - « test Triangle.getPerimeter() <« endl; cout « "The area is " « testTriangle.getArea () « endl; rightTriangle anotherTriangle; cout « "The perimeter is « another Triangle.getperimeter() « endl; cout « "The area is " « anotherTriangle.getarea () << endl; return e;
Create a Right Triangle class that has two sides. Name your class rightTraingle. Code getter and setters for the base and the height. (Remember class variables are private.) The class should include a two-argument constructor that allows the program to set the base and height. The constructor should verify that all the dimensions are greater than 0. before assigning the values to the private data members. If a side is not greater than zero, set the value to -1. The class also should include two value-returning methods. One value-returning method should calculate the area of a triangle, and the other should calculate the perimeter of a triangle. If either side is -1, these functions return a -1. The formula for calculating the area of a triangle is 1/2 *b*h, where b is the base and h is the height. The formula for calculating the perimeter of a triangle is b+h+sqrt (b*b +h*h). Be sure to include a default constructor that initializes the variables of the base, height to -1. To test create a program(main function) that uses the two-argument constructor to set the triangle's base and height and then displays the triangle's area and perimeter amounts. Then use the no- argument constructor to do the same. You can use the main function below to implement these tests. Save and then run the program. Test the program using the main function shown below. Also shown is the expected output. int main() { iinstatiate the rightTriangle object rightTriangle testīriangle(3, 4); cout « "The perimeter is - « test Triangle.getPerimeter() <« endl; cout « "The area is " « testTriangle.getArea () « endl; rightTriangle anotherTriangle; cout « "The perimeter is « another Triangle.getperimeter() « endl; cout « "The area is " « anotherTriangle.getarea () << endl; return e;
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Constructor
The easiest way to think of a constructor in object-oriented programming (OOP) languages is:
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