A chemical and climate model of planetary atmospheres
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Updated
Sep 3, 2026 - Fortran
A chemical and climate model of planetary atmospheres
An astrochemical network parser that supports multiple reaction network formats including KIDA, UDFA, PRIZMO, KROME, and UCLCHEM.
Web application to explore the QUEST database
Combining SchNet, PaiNN and SHARC – Bridging the Gap between Machine Learning and Photoinduced Dynamics
Antagonistic dual-wavelength TVAM reconstruction with examples and proof-of-principle simulations.
This app is for fitting Time Resolved Photoluminescence (TRPL) measurement data that includes the Instrument Response Function (IRF). It uses a reconvolution method to account for the IRF of the instrument system. It outputs fitting parameters and offers multiple lifetime decay models.
Highly experimental research on Cheonelium/Photochemistry: light-machinery nanofabrication using dark-state attractors, photonic kinetic proofreading, dissipative self-correction, and massively parallel reaction cages.
AI-powered botanical analysis tool using LangGraph and local Ollama (Llama3) for real-time phytochemical tracking and clinical report generation.
Computational Data for the study of the photoisomerization mechanism of PAT
Fault-tolerant matter programming with light: a 2027–2028 experimental roadmap using molecular addressing, heralded chemistry, and dissipative repair.
Automated application of Woodward-Fieser, Fieser and Fieser-Kuhn rules to predict absorption maxima of organic chromophores.
12-well cell culture plate irradiation setup with a 3D-printed case, with 808nm IR lasers and LM2596.
CDFD Part II: Origins of Life and Tri-Regime Bioenergetics
The Horiba Duetta fluorescence and absorbance spectrometer outputs data as .txt, which is not useful to anyone trying to do anything with this data. This program will convert the .txt file to .csv for analysis.
GJ 3470 b: TESS transit analysis plus a primary-literature evidence review of JWST H2O, CH4, CO2 and photochemical SO2 detections.
CXLILY: quantum-optical nanofabrication research on photochemical instruction sets, compiler-driven fabrication, reversible chemistry, self-assembly, and nanoscale error correction.
Chemical Pixel Stream: a theoretical framework for programmable photochemical nanofabrication using causal-separator compilation, reversible chemistry, hierarchical error correction, and closed-loop fabrication.
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