Domain And Range Of A Function Ordered Pairs
Find the domain and the range for the relation defined by the following set of ordered pairs 8 2 4 1 6 2 8 9 and determine whether the relation is a function step by step solution step 1 find the domain of the ordered pairs.
Domain and range of a function ordered pairs. In the set of ordered pairs 1 1 9 0 3 9 5 6 the domain is the set of the first number in every pair those are also known as the independent. Given a relation as a set of ordered pairs determine the domain and range. In the set of ordered pairs 4 10 1 9 5 10 1 10 the range is the set of the second number of all the pairs those are also known as the dependent variable and are represented by the y coordinates on an xy graph range.
In the set of ordered pairs 8 2 4 1 6 2 8 9 the domain is the set of the first number in every pair those are also known as the independent. Find the domain and the range for the relation defined by the following set of ordered pairs 1 1 9 0 3 9 5 6 and determine whether the relation is a function step by step solution step 1 find the domain of the ordered pairs. Step 1 find the range of the ordered pairs.
Domain all x values that are to be used independent values. For a relation to be a function means that for every input there is only one output. In other words each x value must have exactly one y value.
Find the domain and the range for the relation defined by the following set of ordered pairs 1 2 3 4 5 6 and determine whether the relation is a function step by step solution step 1 find the domain of the ordered pairs. The set of all second coordinates of the ordered pairs is the range of the relation or function. The set of all first coordinates of the ordered pairs is the domain of the relation or function.
A relation or a function is a set of ordered pairs. The domainis the set of all first elements of ordered pairs x coordinates. In the set of ordered pairs 1 2 3 4 5 6 the domain is the set of the first number in every pair those are also known as the independent values or the x.