Questions tagged [graphing-functions]

For questions regarding the plotting or graphing of functions. For questions about the kinds of graphs with vertices and edges, use the (graph-theory) tag instead.

Given a real-valued function $f\colon \mathbf{R} \to \mathbf{R}$, the graph of $f$ is the set of all input-output pairs $(x,f(x))$ regarded as a set of points in the plane $\mathbf{R} \times \mathbf{R}$. Considering the graph of a function gives us a geometric perspective on the data that the function represents.

  • If the function $f$ is continuous, the graph of $f$ "looks continuous." That is, there are no gaps, and the graph is a connected curve.

  • If the function $f$ is differentiable, then it will contain no "sharp corners."

  • If we're thinking of the domain of the function as representing time, the the graph gives us a nice visualization of the change in outputs of the function over time.

A graph can be defined much more generally though. Let $\mathbf{k}$ be a local field, and suppose $f$ is a vector-valued function $f\colon \mathbf{k}^n \to \mathbf{k}^m$ where $f(x_1, \dotsc, x_n) = (y_1, \dotsc, y_m)$ and each coordinate $y_i$ of the output is a function of the $x_1, \dotsc, x_n$. In this setting, the graph of $f$ is the set of points

$$(x_1, \dotsc, x_n, y_1, \dotsc, y_m) \subset \mathbf{k}^{n+m}\,.$$

This general construction of the graph of a function can be useful in the study of algebraic geometry or the study of manifolds.

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Graph of $\{(x,y)\in \Bbb R: |x|+|y|=1\}$

Graph of $\{(x,y)\in \Bbb R: |x|+|y|=1\}$ If I use graph transformation to solve this que. Transformation $|x|+|y|=1 \to |Y|=1-|X| \to Y = 1-|X|\to Y = 1-X$ Using this transformation I got a graph which is available in the attachment. I wonder is…
Tips
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How to graphically add two functions

I have tried looking for tutorials or guides online, but I keep finding problems that are fairly similar but not exactly what I am looking for. I know how to add functions regularly, I am familiar with graphing an equation using its slope and…
Lex_i
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Behaviour of $x^n$ for very large $n$?

when I plotted the graphs of $y=x^{10},x^{100},x^{1000}$ etc. I noticed that the shape approached an open rectangle with base between $x=-1$ and $x=1$, But why does $x^n$ approaches this shape and is almost zero for $x \in (-1,1)$ and increases…
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How can I calculate properly the graph of a quadratic function?

I want to know how to calculate this: (I don't know his name in english, or in spanish, our teacher call it "the little belly" :)) We've just today had the math final in school and we had to draw a function very similar like that one, our teacher…
Ender Look
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How can I change $y=\left(\frac{1}{x}\right)$ to have it land on $2$ specific points?

I feel the need to prefix this by saying I've not touched maths for over $3$ years... Because $y=\left(\frac{1}{x}\right)$ goes from practically vertical to practically horizontal, surely this means some part of it can be positioned between $(1,…
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How to plot graph online

Need help plotting $0\leq t\leq 2\pi$, $z(t)=e^{(1+i)t}$ and $z(t)=e^{(-1+i)t}.$ How can I plot them online or any software that I should use to get the graph of such curves? I am familiar with Wolfram but not able to get this.
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point of symmetry of the graph of a function

the graph of the function $$f(x)=\frac{1}{1+x}+\frac{2x}{1+x^2}+\cdots+\frac{2^{n-1}x^{2^{n-1}-1}}{1+x^{2^{n-1}}}+\cdots$$ where $x \in (-1,1)$ is symmetric about the point--- I tried to integrate the function and could not proceed to find centre…
Navin
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Given the equation of a line, travel X points along it.

I have the equation of a line: $$y=\frac{7}{4}x\ +\frac{9}{2}$$ I want to find the point 4 units along the line, starting from the point $(-2,1)$. I tried using Pythagoras and forming this equation: $$\sqrt{(7a)^2 + (4b)^2} = 4$$ with the gradient -…
Tim
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How to calculate a heart?

I really like this girl Jenny in my math class. She is smart and kind and sweet and really, REALLY hot. I want to get her to notice me by graphing a heart on my TI calculator but I don't know if there's a single mathematical equation that can draw…
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A scale for plotting zero to infinity

There are methods to convert quantities to certain scales and plot them on a graph (e.g., logarithmic scale graph). I wanted to plot quantities that belong to range $(0, \infty)$ on a graph of a fixed size (let's say 1). I came up with using the…
sawa
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Plotting a quadratic equation in the $\,xy\,$- plane

My question is: Represent the following set of points in the $\,xy\,$- plane: $$\left\{ (x,y)\,\, |\,\, x^2 + y^2 - 2x - 2y + 1 = 0 \right\}$$ What i got: $\,\,(x-2)^2 + (y-2)^2 = 1\,\,$ I am not getting what to do next. Any help to solve this…
mgh
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How to find an equation given the absolute value graph?

my question is how can i get a equation out of this i have gathered the following $$ y = a|x-h| + k$$ $$y = a|x-1| - 4$$ ($a$ i don't know yet and this is where i have a question) to find $a$ can i just use any point in the graph and plug it in…
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Proving that $y=x$ is an asymptote.

I'm currently investigating the curve implicitly defined by $x^2-y^2= \ln (xy)$. Now I can see that by considering the region $xy>1$ and $xy<1$, we can determine where the curve is above or below the line $y=x$. However, I do not feel that this is…
Trogdor
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What kind of trend, and relationship is this graph?

I need some help with labeling the trend of this graph, and also deciding what the relationship is between the two variables (X,Y). Here is a picture of it: The Excel document can be downloaded here: http://tempsend.com/5079DC65F4 Using Excels…
Hatmix5
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Why does this graph only the positive side

The following equation graphs a love heart, $x^2+(y- \sqrt[3]{x^2})^2=1$ And since (please correct me if I'm wrong) $\sqrt[3]{x^2}=x^{2/3}$ I should be able to write it like this: $x^2+(y- x^{2/3})^2=1$ However when I graph the latter I only get the…