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If the equation is an identity.
What is the absolute value of you. Oh wait I know.$ -9000000000
If this value a satisfy the equation, then a is a solution for that equation. ( or we can say that for the value a the equation is true)
Factorise it!
They Are infinitely many solutions for an equation when after solving the equation for a variable(let us suppose x),we get the expression 0 = 0. Or Simply L.H.S = R.H.S For Ex. x+3=3+x x can have any value positive or negative, rational or irrational, it doesn't matter the sequence will be infinite. And No Solutions when after solving the equations the expression obtained is unequal For Ex. x+3=x+5 for every value of x, The Value in L.H.S And R.H.S. will differ. Hence It Has No Solutions.
absolute value of 8 is 8.
You know if an equation is linear if it is a straight line. You can also know if the equation is y = mx + b where there are no absolute values nor exponents.
You know if an equation is linear if it is a straight line. You can also know if the equation is y = mx + b where there are no absolute values nor exponents.
The absolute value of a number is the distance to zero. When adding which ever number has the greater absolute value will determine the sign of the answer.
Absolute value refers to how far a number is from zero on the number line. The absolute value of 4.6 is 4.6. However, if you wanted to know what the absolute value of -4.6, it would also have the absolute value of 4.6.
x is a variable. You do not have to know what its value is. In that equation you have to find the value of x, so if you already know what x stands for then you know the answer
-- A single equation with more than one variable in it has infinitely many solutions. -- An equation where the variable drops out has infinitely many solutions. Like for example x2 + 4x -3 = 0.5 (2x2 + 8x - 6) As mean and ugly as that thing appears at first, you only have to massage it around for a few seconds to get -3 = -3 and that's true no matter what 'x' is. So any value for 'x' is a solution to the equation, which means there are an infinite number of them.