Funciones para la evaluación energética y gráficas de los diferentes casos que se estudian en Química Cuántica
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Updated
Jan 15, 2018 - Python
Funciones para la evaluación energética y gráficas de los diferentes casos que se estudian en Química Cuántica
Practice Deep Learning From Scratch
This repository contains exercises using Python 3.7
Visualization of the hydrogen atom orbitals using the analytical solution of the time independent Schrodinger equation for the hydrogen atom
Hydrogen-electron collision solver (ECS + B-spline)
Semiannual project of the subject of Optical Physics, taught at Centro Universitário FEI. It consists of some programs developed in python in order to perform some calculations
Jupyter MicroPython Kernel made with upydevice
Program for calculating the energies of the eigenstates of hydrogen, as well as writing the specified (radial) wavefunction to a .txt file. This is my solution to a homework problem in computational atomic physics.
Subject of Electronic structure for my master's degree
SuperSpruce's Incremental game about creating atoms: Elemental Incremental!
Visualization of the probability density in quantum chemistry
Functions to calculate and visualize the probability density of hydrogen atom orbitals
Hydrogen wavefunction modeling and electron probability density plots
Source code of the Hydrogen Atom Orbitals app for Android
Python scripts using the Visualization Toolkit (VTK) and Topology ToolKit (TTK) libraries. Tasks: visualize and explore topological features of a 3D volume and 2D scalar field datasets. 1. Probability density for the 3d electron position in a hydrogen atom and 2. 2D scalar field.
Implements the Time-Independant Schrödinger Equation numerically to solve for the stationary wavefunctions and energy states of a quantum system.
Introduction to Quantum Mechanics for Chemists
Steinmetz, A., Formanek, M. & Rafelski, J. Magnetic dipole moment in relativistic quantum mechanics. Eur. Phys. J. A 55, 40 (2019).
Lecture notes for PHYS2700: Modern Physics
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