Documentation

### This is machine translation

Translated by
Mouseover text to see original. Click the button below to return to the English version of the page.

# limit

Limit of symbolic expression

## Syntax

``limit(f,var,a)``
``limit(f,a)``
``limit(f)``
``limit(f,var,a,'left')``
``limit(f,var,a,'right')``

## Description

example

````limit(f,var,a)` returns the Bidirectional Limit of the symbolic expression `f` when `var` approaches `a`.```
````limit(f,a)` uses the default variable found by `symvar`.```
````limit(f)` returns the limit at `0`.```

example

````limit(f,var,a,'left')` returns the Left Side Limit of `f` as `var` approaches `a`.```

example

````limit(f,var,a,'right')` returns the Right Side Limit of `f` as `var` approaches `a`.```

## Examples

collapse all

Calculate the bidirectional limit of this symbolic expression as `x` approaches `0`.

```syms x h f = sin(x)/x; limit(f,x,0)```
```ans = 1```

Calculate the limit of this expression as `h` approaches `0`.

```f = (sin(x+h)-sin(x))/h; limit(f,h,0)```
```ans = cos(x)```

Calculate the right and left limits of symbolic expressions.

```syms x f = 1/x; limit(f,x,0,'right')```
```ans = Inf```
`limit(f,x,0,'left')`
```ans = -Inf```

Calculate the limit of expressions in a symbolic vector. `limit` acts element-wise on the vector.

```syms x a V = [(1+a/x)^x exp(-x)]; limit(V,x,Inf)```
```ans = [ exp(a), 0]```

## Input Arguments

collapse all

Input, specified as a symbolic expression, function, vector, or matrix.

Independent variable, specified as a symbolic variable. If you do not specify `var`, then `symvar` determines the independent variable.

Limit point, specified as a number or a symbolic number, variable, or expression.

collapse all

### Bidirectional Limit

`$L=\underset{x\to a}{\mathrm{lim}}f\left(x\right),x-a\in ℝ\text{\}\left\{0\right\}.$`

### Left Side Limit

`$L=\underset{x\to {a}^{-}}{\mathrm{lim}}f\left(x\right),x-a<0.$`

### Right Side Limit

`$L=\underset{x\to {a}^{+}}{\mathrm{lim}}f\left(x\right),x-a>0.$`