In this tutorial, we will learn about variables, literals, and constants in C ++ with the help of examples.
C++ Variables
In programming, a variable is a container (storage area) to hold data.
To indicate the storage area, each variable should be given a unique name (identifier). For example,
int age = 16 ;
Here, age is a variable of the int data type, and we have assigned an integer value 14 to it.
Note: The int data type suggests that the variable can only hold integers. Similarly, we can use the double data type if we have to store decimals and exponentials.
We will learn about all the data types in detail in the next tutorial.
The value of a variable can be changed, hence the name variable
int age = 14 ;
age = 16;
Rules for naming a variable :
- A variable name can only have alphabets, numbers and the underscore _.
- A variable name cannot begin with a number.
- Variable names cannot begin with an uppercase character.
- A variable name cannot be a keyword. For example, int is a keyword that is used to denote integers.
- A variable name can start with an underscore. However, it's not considered a good practice.
Note: We should try to give meaningful names to variables. For example, first_name is a better variable name than fn.
C++ Literals
Literals are data used for representing fixed values. They can be used directly in the code.
For example: 1, 2.5, 'c' etc. Here, 1, 2.5 and 'c' are literals. Why? You cannot assign different values to these terms. Here's a list of different literals in C ++ programming.
1. Integers
An integer is a numeric literal (associated with numbers) without any fractional or exponential part. There are three types of integer literals in C programming:
- decimal (base 10)
- octal (base 8)
- hexadecimal (base 16)
For example :-
Decimal: 0, -9, 22 etc
Octal: 021, 077, 033 etc
Hexadecimal: 0x7f, 0x2a, 0x521 etc
In C ++ programming, octal starts with a 0, and hexadecimal starts with a 0x.
2. Floating-point Literals
A floating-point literal is a numeric literal that has either a fractional form or an exponent form.
3. Character
A character literal is created by enclosing a single character inside single quotation marks. For example: 'a', 'm', 'F', '2', '}' etc.
4. Escape Sequences
Sometimes, it is necessary to use characters that cannot be typed or has special meaning in C ++ programming.
For example, newline (enter), tab, question mark, etc. In order to use these characters, escape sequences are used.
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