Blogging using Pluto.jl notebooks.
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Updated
Dec 31, 2024 - HTML
Blogging using Pluto.jl notebooks.
Este é um repositório que contem os notebooks do projeto PET.py do PET - Física da UFRN.
Hey there! Are you looking to learn Linear Algebra, Thermodynamics or Quantum Mechanics? Here you can find a collection of notebooks related to physics and mathematics!
Python Jupyter Notebooks made throughout my Physics degree at University of Alaska Fairbanks
Repositório contendo Notebooks elaborados pelo membro do PET - Física UFRN Gabriel Wendell Celestino Rocha como contribuição ao projeto PET.py.
A Jupyter Notebook Collection for PHY240 iLab
Aqui ficaram todos os meus rascunhos dos notebooks que fiz para o projeto PET.py.
A Jupyter notebook to calculate orbital mechanics using Python.
A Jupyter notebook to calculate sequential Nuclear Decay using Python.
A collection of notebooks and tools for analysing Seiberg-Witten geometries.
Contains the ipynb notebooks where I implemented the concepts taught in the Phase Field Modelling course on NPTEL in python
A Jupyter notebook to calculate the motion of a chaos (non-linear) pendulum with Python.
Repositório contendo o notebook utilizado durante a palestra "Análise Numérica com Python: O Poder da Linguagem que Conquistou o Coração de Cientistas e Engenheiros", ministrada na conferência Python Brasil 2020.
A jupyter notebook approach using pythong to track and estimate the rotation period of an asteroid.
Github repo for the submission of the codes and notebooks for the LSN course at UNIMI
A collection of Jupyter notebooks demonstrating the use of Python to solve classical and modern physics problems through computational modeling.
Programs developed for the class of Computational Physics (FIS2018-FCUP), based on the book "Computational Physics" by Mark Newman, using Python (Jupyter Notebook)
This is a repository for the class PHYS-7810: Computational Statistical Physics at CU Boulder that includes jupyter notebooks of tutorials and homework.
This is a Jupyter Notebook to illustrate the difference between the Velocity-Verlet and Euler methods for integrating classical equations of motion for a homonuclear diatomic molecule.
jupyter notebooks containing beginner work done in computational science with python. done as a part of the course titled "Computing in Science -2" at IIIT Hyderabad.
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