It depends on the direction of the relationship.
Consider y = x2 where x is a real number.
The relationship from x to y is a function but the one in the opposite direction (x = sqrt(y) is not a function because it is a one-to-many mapping.
In that case, one quantity (the quantity that depends on the other) is said to be a function of the other quantity.
The word sought is probably "function", although in some contexts "equation" would also work.
When one quantity depends on another, it means that the value of the first quantity is influenced or determined by the value of the second quantity. This relationship can be direct, where changes in the second quantity lead to proportional changes in the first, or it can be more complex, involving various factors. In mathematical terms, this is often expressed through functions or equations, illustrating how one variable changes in response to another. Essentially, it signifies a cause-and-effect relationship between the two quantities.
The answer depends on the quantities and the nature of the relationship. It can be a line-of-best-fit (or regression line), or a formula.
-3x + 4x = 12 x = 12 A graph normally shows the relationship between two interconnected quantities, such as 'x' and 'y' . This equation can't be graphed. There's only one quantity ... 'x' . It doesn't depend on any other quantity, and no other quantity depends on 'x'. 'x' is 12, it's always 12, and it doesn't change, and that's the whole story.
In that case, one quantity (the quantity that depends on the other) is said to be a function of the other quantity.
I Have No Clue, Please Help Me...? * * * * * It depends on the direction of the relationship. Consider y = x2 where x is a real number. The relationship from x to y is a function but the one in the opposite direction (x = sqrt(y) is not a function because it is a one-to-many mapping.
The word sought is probably "function", although in some contexts "equation" would also work.
Function
it would be a function * * * * * Not always. It depends on the direction of the relationship. Consider y = x2 where x is a real number. The relationship from x to y is a function but the one in the opposite direction (x = sqrt(y) is not a function because it is a one-to-many mapping.
function
Base quantities are independent and cannot be expressed in terms of other quantities, while derived quantities are dependent and derived from combinations of base quantities. Base quantities are fundamental in a system of measurement, while derived quantities are derived through mathematical relationships. For example, length is a base quantity, while speed is a derived quantity that depends on both length and time.
When one quantity depends on another, it means that the value of the first quantity is influenced or determined by the value of the second quantity. This relationship can be direct, where changes in the second quantity lead to proportional changes in the first, or it can be more complex, involving various factors. In mathematical terms, this is often expressed through functions or equations, illustrating how one variable changes in response to another. Essentially, it signifies a cause-and-effect relationship between the two quantities.
What is the proper term for a relationship between two variables in which one quantity depends on the other It depends on the direction of the relationship. Consider y = x2 where x is a real number. The relationship from x to y is a function but the one in the opposite direction (x = sqrt(y) is not a function because it is a one-to-many mapping.
these type of quantities are called derived quantities. Their value depends on some fundamental quantities or some other derived quantities. eg. force is a derived quantity whose value depends on mass(fundamental) and acceleration(derived).
The answer depends on the quantities and the nature of the relationship. It can be a line-of-best-fit (or regression line), or a formula.
Scalar quantities are easier to deal with, the math is simpler. But if you have quantities that include both a magnitude and a direction, you really have no choice but using a vector quantity, to represent them correctly.