Examples of 'y is equal to x' in a sentence
Meaning of "y is equal to x"
y is equal to x: This phrase is a mathematical statement that asserts the equality between two variables, y and x. It signifies that the values of y and x are the same or equivalent in a given equation or mathematical relationship
How to use "y is equal to x" in a sentence
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y is equal to x
So this curve right there is y is equal to x squared.
And you get y is equal to x times the natural log of x plus c.
So let us first just graph y is equal to x squared.
Or y is equal to x squared.
So our upper bound is y is equal to x squared.
This curve is y is equal to x squared, or x is equal to the square root of y.
See how it relates to y is equal to x squared.
And then add x to both sides of this equation, and we get y is equal to x.
And you get y is equal to x times the natural.
A bit of a classic implicit differentiation problem is the problem y is equal to x to the x.
So this is for y is equal to x squared.
I have been asked implicitly differentiate the equation tangent of x over y is equal to x plus y.
This is y is equal to x squared.
So let us say that we have the equation y is equal to x squared plus x.
Because y is equal to x squared.
See also
And the curve that specifies the inside would be y is equal to x squared.
So let us say that f of x y is equal to x squared plus x times y plus y squared.
Let us say I were to also draw the function y is equal to x squared.
So let us say we have y is equal to x over x squared minus x minus 6.
So the boundary line is going to look like y is equal to x minus 8.
So the curve is just y is equal to x squared, look something like that.
For example, the classic parabola is y is equal to x squared.
So the graph of y is equal to x squared, and we have seen this before.
Now let me draw the function y is equal to x squared.
And we say y is equal to x squared divided by x squared minus 16.
Along the line y is equal to x.
Like y is equal to x minus 8.
You have seen things like y is equal to x plus 1.
This is y is equal to x squared plus 1.
So this first equation right here is y is equal to x minus 2.
The area underneath y is equal to x squared, but above the x-axis.
There are three places where y equals negative 2 intersects y is equal to x to the third minus 4x.
So y is equal to x plus 5.
Let us say I have y is equal to x to the x.
And actually, these are symmetric around the line, y is equal to x.
So we get the natural log of y is equal to x times the natural log of x.
What is that upper bound if x is constant? Oh, it 's x squared . y is equal to x squared.
The graph of the equation y is equal to x squared minus 3x minus 4 is shown below.
Well, I will because you are probably familiar with it . y is equal to x squared.
Let us say it 's the curve y is equal to x squared, which looks something like that.
So let us say I have a function of x and y ; f of x and y is equal to x plus y squared.
So if I were to just draw y is equal to x squared, that looks something like this.
Here I have drawn the most classic parabola, y is equal to x squared.
So if I had the graph of y is equal to x squared, what does that look like?
That 's this yellow curve . So x squared is equal to y, or y is equal to x squared.
So what is y is equal to x squared plus 3?
Let us say I have the equation y is equal to x plus 3.
This is a curve y is equal to x squared, so f of x is 3 squared -- this is the point 9.
So x squared is equal to y, or y is equal to x squared.
So if y is equal to x plus 3, this is the largest side of the triangle, right?
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