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QuantumAI-lab/atmos-chem-quantum

Domaine:

environment and energyclimate

Type de record:

project
Créateur:
Qua
Hôte:
🧪 Challenge Track 1: Quantum Computing for Atmospheric Chemistry in Egypt # atmos-chem-quantum Challenge Track 1: Quantum Computing for Atmospheric Chemistry in Egypt # 🌟 Dry-Run-Hackathon: Advancing Egypt Through Quantum Innovation ## Overview Welcome to an exclusive quantum computing hackathon focused on leveraging quantum computational paradigms to address critical challenges specific to Egypt. This event brings together quantum researchers, computational scientists, and domain experts to explore cutting-edge applications of quantum algorithms in atmospheric chemistry, meteorological forecasting, and archaeological discovery. ## 🎯 Hackathon Objectives * Develop quantum-enhanced solutions for Egypt-specific scientific and cultural challenges * Foster interdisciplinary collaboration between quantum computing and domain expertise * Prototype novel quantum algorithms with real-world applications * Advance quantum computing research in the Middle East and North Africa region ## 🧪 Challenge Track 1: Quantum Computing for Atmospheric Chemistry in Egypt ### Challenge Description: Quantum Modeling of Humidity-Dependent Reaction Kinetics in the Nile Delta Title: Quantum Simulation of Sulfate Aerosol Formation under High Humidity Conditions Relevance: The Nile Delta experiences humidity >80% year-round, accelerating sulfate aerosol formation from industrial emissions. This quantum challenge simulates how humidity affects: SO₂ + OH → HOSO₂ → SO₃ → SO₄²⁻ (sulfate aerosol) ### Problem Statement Develop a hybrid quantum-classical model that: 1. Simulates the reaction pathway energy surface for SO₃ + nH₂O → H₂SO₄ clusters (n=1-3) 2. Predicts reaction rates at 60-100% relative humidity 3. Maps quantum outputs to aerosol nucleation probabilities

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