Jack Hunt's starred repositories
tinyrenderer
A brief computer graphics / rendering course
Modern-CPP-Programming
Modern C++ Programming Course (C++03/11/14/17/20/23/26)
Awesome-Diffusion-Models
A collection of resources and papers on Diffusion Models
awesome-emacs
A community driven list of useful Emacs packages, libraries and other items.
course-plan
đź“ś Haskell course info, plan, video lectures, slides
neural-processes
This repository contains notebook implementations of the following Neural Process variants: Conditional Neural Processes (CNPs), Neural Processes (NPs), Attentive Neural Processes (ANPs).
BDA_R_demos
Bayesian Data Analysis demos for R
DropoutUncertaintyExps
Experiments used in "Dropout as a Bayesian Approximation: Representing Model Uncertainty in Deep Learning"
peripheral_examples
Simple peripheral examples for Silicon Labs EFM32/EFR32 Series 0, Series 1, and Series 2 devices
BDA_m_demos
Bayesian Data Analysis demos for Matlab/Octave
doom-emacs-config
Doom Emacs configuration finely tuned for "distraction-free' academic writing
ai-enhanced-audio-book
A repository of AI-enhanced audio plugins written using C++, JUCE, libtorch, RTNeural and other libraries. Supports my book
bmi088-arduino
Arduino library for communicating with the Bosch BMI088 6 axis IMU
mental-noise-synapse
Arduino based CV to MIDI Eurorack module to control external instrument through MIDI
NanoVNA-MATLAB
MATLAB scripts for NanoVNA vector network analyzer. Connect, save S2P, display Logmag, Smith chart and TDR step response
haskell-vae
Learning about Haskell with Variational Autoencoders
EFM32-getting-started
Getting Started with a Giant Gecko EFM32GG11B
40MHz-GPS-FT8-WSPR-MEPT
This project uses the very popular Arduino Nano and Si5351A clock generator board to generate FT8 or WSPR signals. Frequency and time accuracy are maintained by using an inexpensive (NEO-6M) GPS receiver board. A 60 minute schedule sets operation on the 40.62 or 40.68 Mhz band and the mode of operation. Other frequencies below 40 MHz may also be used.
matlab-visualize-sdf
A toy example for visualizing the Signed Distance Function (SDF), the Truncated Signed Distance Function (TSDF), and the occupancy function in 2D.