you put in what x is and solve it for y! thats the answer!
y = mx + b
plug in a 0 for the "x" value of the equation, and solve it :D
The rate of change equals the slope. In the basic formula y=mx+b, the rate of change is equal to m. In the equation y=5x+3, the rate of change equals 5.
The answer requires the relevant context to be given.
A linear relationship.
In geometry, a linear relationship is represented as a straight line.
If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.If two variables are related, then the simplest relationship between them is a linear one. The linear equation expresses such a relationship.
To determine if a relationship is linear, you can express it in the form of a linear equation, typically written as (y = mx + b), where (m) represents the slope and (b) is the y-intercept. If the equation can be rearranged to fit this format, it indicates a linear relationship. Additionally, a linear relationship will show a constant rate of change, meaning the difference in (y) values for equal changes in (x) values remains consistent. If the graph of the equation produces a straight line, the relationship is confirmed as linear.
A linear pattern is a consistent increase or decrease in values that can be represented by a straight line when plotted on a graph. In a linear pattern, there is a constant rate of change between each data point. This means that the relationship between the variables can be described by a linear equation such as y = mx + b.
A linear relationship is one where your equation forms a straight line. A positive linear relationship is one where this line has a positive gradient.
To derive an equation from a table, first identify the relationship between the variables by observing how the values change. If the relationship appears linear, calculate the slope using two points from the table and find the y-intercept. For non-linear relationships, you might need to use polynomial regression or other fitting techniques. Finally, formulate the equation based on the identified pattern or function type.
The independent variable is the variable that you change and manipulate in an equation. This causes the dependant variable to change.
y = mx + b
To determine if a relationship is linear from a table, check if the differences in the y-values (output) corresponding to equal differences in the x-values (input) are constant. For a graph, a linear relationship will appear as a straight line. In an equation, if the equation can be expressed in the form (y = mx + b), where (m) and (b) are constants, it indicates a linear relationship.
A linear pattern is a sequence or relationship in which values change at a constant rate, resulting in a straight line when graphed. This can be represented by a linear equation, typically in the form (y = mx + b), where (m) is the slope and (b) is the y-intercept. Linear patterns are commonly found in various fields, such as mathematics, economics, and science, where a direct proportionality exists between two variables.
Yes, the numbers 2.3, 6.3, 9.3, and 13.3 form a linear pattern. Each number increases by a consistent difference of 3.0, indicating that they can be represented by a linear equation. This regular interval confirms the linear relationship among the values.
y=mx+b is the equation for a linear relationship. y= the dependant variable m= the slope of the line x= the independent variable b= the y-intercept