If you mean points of (-2, 6) and (4, 3)
Then its slope is -1/2 and its equation is 2y = -x+10
Let the two numbers be ( x ) and ( y ). From the problem, we have the equations ( x + y = 43 ) and ( x - y = 9 ). Solving these simultaneously, we can add both equations to get ( 2x = 52 ), which means ( x = 26 ). Substituting ( x ) back into the first equation gives ( y = 17 ). Thus, the two numbers are 26 and 17.
43 x 26 = 1118
43 occurs more often than any other number, so it is the mode.
To divide 1118 by 43, you would perform long division. First, determine how many times 43 fits into the first part of 1118. It fits 26 times (since 43 x 26 = 1118). Therefore, 1118 divided by 43 equals 26 with a remainder of 0.
Quadratic, simultaneous and straight line equations
There are many equations that can produce the result of 43. For example, one simple equation is (40 + 3 = 43). Another possibility is (86 \div 2 = 43). You can also use subtraction, such as (50 - 7 = 43).
It is: 26+37+42+43 = 148 and 148/4 = 37 which is the mean average
(26 * 34) / (43 - 39) = 884 / 4 = 221
Equations with the same solution are called dependent equations, which are equations that represent the same line; therefore every point on the line of a dependent equation represents a solution. Since there is an infinite number of points on a line, there is an infinite number of simultaneous solutions. For example, 2x + y = 8 4x + 2y = 16 These equations are dependent. Since they represent the same line, all points that satisfy either of the equations are solutions of the system. A system of linear equations is consistent if there is only one solution for the system. A system of linear equations is inconsistent if it does not have any solutions.
its a system of equations, with no solution
They are not. A vertical line is not a function so all linear equations are not functions. And all functions are not linear equations.
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