You don't solve for a constant. It's given. That's why we call it a constant.
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Correction I believe if you are talking about the Equation for finding a constant on the part of a line in Algebra Y=Mx + B should suffice? If not their are other equations used to find the areas under curves and volume of a cylinder on graphs. There must be more information here. I don't see very much to work with at all.
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You are right. If that is what they are asking.
To find this "constant" you have to have a point on the line(an x and a y) and you have to know the slope.
If the equation is y = kx then the constant of proportionality is k.
You find the equation of a graph by finding an equation with a graph.
Yes.
answer: 2.5 :)
The equation is xy = k where k is the constant of variation. It can also be expressed y = k over x where k is the constant of variation.
A linear equation is when each term in the algebraic equation is either a constant or the product has a single variable and a constant.
That depends on what the equation is.
The constant "t" in an equation represents time, and its significance lies in determining how the variables in the equation change over time.
If the equation is y = kx then the constant of proportionality is k.
You find the equation of a graph by finding an equation with a graph.
Not necessarily. The equation of a projectile, moving under constant acceleration (due to gravity) is a parabola - a non-linear equation.
A reciprocal equation is usually y = k/x where k is a constant. This is an inverse relationship because y is equal to k divided by x.
V = constant Speed = constant Direction = constant Acceleration = 0
constant
finding the soultion or answer .
In a mathematical equation, the constant is defined as a term in the equation that only includes a real number. Since a negative number is a real number, then yes, a negative number can be considered a constant. For example, in the equation 6x -2... -2 would be the constant because it is a term that contains only the real number (-2).
- Planck's constant ^.^