Classify equation notice easily

Aug 6th, 2022
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How to classify equation notice

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in this video were going to take a look at classifying systems of linear equations first of all if were going to graph systems of linear equations where we have two equations what were going to find is that theres three possible things that can happen one thing that can happen is that the lines intersect at one point something like that another thing that could happen is that the lines the graphs are right on top of each other so thats another situation and finally the third thing that could happen is the lines never intersect in other words theyre parallel to each other so those three things are what can happen given two linear equations so we have some vocabulary that we can use to tell whats going on in their systems and it starts with consistent and inconsistent well lets go back to our three different situations and look at the number of solutions in each of those situations if we have a situation like this theres one solution the solutions show up where the lines intera

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A system of linear equations has one solution when the graphs intersect at a point.
A system of two equations can be classified as follows: If the slopes are the same but the y-intercepts are different, the system is inconsistent. If the slopes are different, the system is consistent and independent. If the slopes are the same and the y-intercepts are the same, the system is consistent and dependent.
A system of two equations can be classified as follows: If the slopes are the same but the y-intercepts are different, the system is inconsistent. If the slopes are different, the system is consistent and independent. If the slopes are the same and the y-intercepts are the same, the system is consistent and dependent.
1:30 7:24 Differential Equations - 5 - Classification - YouTube YouTube Start of suggested clip End of suggested clip So in general we can classify a differential equation as linear.MoreSo in general we can classify a differential equation as linear.
TYPES OF LINEAR SYSTEMS An independent system has exactly one solution pair (x,y). The point where the two lines intersect is the only solution. An inconsistent system has no solution. Notice that the two lines are parallel and will never intersect. A dependent system has infinitely many solutions.
A system of two equations can be classified as follows: If the slopes are the same but the y-intercepts are different, the system is inconsistent. If the slopes are different, the system is consistent and independent. If the slopes are the same and the y-intercepts are the same, the system is consistent and dependent.
Classification of expressions: We can classify the expression ing to these 3 conditions : 1) Based on number of terms expression contains. 2) Based on highest degree of the terms. 3) Based on number of variables it contain. Hence, the expression can be classified on these 3 conditions .
Lesson. To solve a system of linear equations without graphing, you can use the substitution method. This method works by solving one of the linear equations for one of the variables, then substituting this value for the same variable in the other linear equation and solving for the other variable.
Classifying a System of Linear Equations: Put both equations in slope-intercept form. Set the two equations equal to each other. Combine like terms, and solve the resulting equation for x. Substitute x into either of the two original equations to solve for y.
If a consistent system has exactly one solution, it is independent . If a consistent system has an infinite number of solutions, it is dependent . When you graph the equations, both equations represent the same line. If a system has no solution, it is said to be inconsistent .

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