# Analyze mathematical functions interactively

**URL:** <https://discourse.julialang.org/t/analyze-mathematical-functions-interactively/42012>\
**Category:** Teaching & Outreach\
**Created:** [June 24, 2020, 9:59pm UTC](https://discourse.julialang.org/t/analyze-mathematical-functions-interactively/42012 "2020-06-24T21:59:20Z")\
**Posts on this page:** 1\
**Page:** 1

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**Author:** ![anon37204545](https://avatars.discourse-cdn.com/v4/letter/a/439d5e/32.png) [@anon37204545](https://discourse.julialang.org/u/anon37204545)\
**Post date:** [June 24, 2020, 9:59pm UTC](https://discourse.julialang.org/t/analyze-mathematical-functions-interactively/42012/1 "2020-06-24T21:59:20Z")

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I thought it’d be useful to have some starting point for analyzing mathematical functions in Julia, so I wrote a post sharing some of my experience. It goes from plotting to symbolic differentiation.

Julia packages are very convenient for this problem, but I still hit too many walls trying to do some basic things. (mostly since there are too few basic examples in docs)

Here’s the post:  
[https://zdroid.github.io/blog/2020/06/analyze-mathematical-functions-interactively/](https://zdroid.github.io/blog/2020/06/analyze-mathematical-functions-interactively/)

(You may be interested to see [the previous post](https://zdroid.github.io/blog/2020/06/make-your-julia-package/) about making a Julia package, too.)
