To convert between Celsius and Fahrenheit, the following formula is used, where C = Celsius temperature and F = Fahrenheit temperature: C = 5/9 * (F-32) Write a C++ temperature conversion program which does the following: Write a function called toCelsuis which takes a Fahrenheit temperature as a parameter, and returns the equivalent Celsius temperature: float toCelsius(float) Demonstrate that your function works by writing a main() function that prints out a conversion table. It should have Fahrenheit values 60, 61, 62, ... through 80 (21 temperatures in total) and should also have the corresponding Celsius temperatures that your function calculated. So your output should look something like this (with 21 temperature conversions total, I used ... to save space here for most of them): Welcome to the temperature table! F C 60 15.6 61 16.1 ... ... 80 26.7 If you like: you can add this line in your function to make floating point output fixed, make sure you #include cout.setf(ios::fixed, ios::floatfield); If you like: you can then call setprecision(1) in your cout statements to print out one decimal place, e.g. cout << setprecision(1) << celsius;
To convert between Celsius and Fahrenheit, the following formula is used, where C = Celsius temperature and F = Fahrenheit temperature: C = 5/9 * (F-32) Write a C++ temperature conversion program which does the following: Write a function called toCelsuis which takes a Fahrenheit temperature as a parameter, and returns the equivalent Celsius temperature: float toCelsius(float) Demonstrate that your function works by writing a main() function that prints out a conversion table. It should have Fahrenheit values 60, 61, 62, ... through 80 (21 temperatures in total) and should also have the corresponding Celsius temperatures that your function calculated. So your output should look something like this (with 21 temperature conversions total, I used ... to save space here for most of them): Welcome to the temperature table! F C 60 15.6 61 16.1 ... ... 80 26.7 If you like: you can add this line in your function to make floating point output fixed, make sure you #include cout.setf(ios::fixed, ios::floatfield); If you like: you can then call setprecision(1) in your cout statements to print out one decimal place, e.g. cout << setprecision(1) << celsius;
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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To convert between Celsius and Fahrenheit, the following formula is used, where C = Celsius temperature and F = Fahrenheit temperature:
C = 5/9 * (F-32)
Write a C++ temperature conversion program which does the following:
- Write a function called toCelsuis which takes a Fahrenheit temperature as a parameter, and returns the equivalent Celsius temperature:
float toCelsius(float)
- Demonstrate that your function works by writing a main() function that prints out a conversion table. It should have Fahrenheit values 60, 61, 62, ... through 80 (21 temperatures in total) and should also have the corresponding Celsius temperatures that your function calculated. So your output should look something like this (with 21 temperature conversions total, I used ... to save space here for most of them):
Welcome to the temperature table!
F C
60 15.6
61 16.1
... ...
80 26.7
-
If you like: you can add this line in your function to make floating point output fixed, make sure you #include<iomanip>
cout.setf(ios::fixed, ios::floatfield); - If you like: you can then call setprecision(1) in your cout statements to print out one decimal place, e.g. cout << setprecision(1) << celsius;
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