Quantum Chemistry Course
Dive into quantum chemistry methods to predict spectra, energies, and structures of conjugated molecules. Master Hückel, DFT, and ab initio approaches, select optimal theory levels, and create dependable workflows for research and innovative chemical design. This course equips you with tools for precise electronic structure analysis and reliable predictions in molecular systems.

from 4 to 360h flexible workload
certificate valid in your country
What will I learn?
Gain key skills to grasp and forecast electronic structures in conjugated systems via this targeted Quantum Chemistry Course. Explore Hückel and semiempirical techniques, Hartree-Fock, post-HF methods, and DFT. Apply them to calculate geometries, spectra, ionisation energies, and excitations. Develop practical workflows, verify outcomes, and present data effectively for trustworthy, publication-ready computational research.
Elevify advantages
Develop skills
- Apply Hückel and semiempirical methods for quick, dependable π-system predictions.
- Choose ab initio and DFT methods to optimise accuracy, cost, and desired properties.
- Calculate and analyse HOMO-LUMO gaps, spectra, and vital electronic properties.
- Develop strong quantum chemistry workflows: setup, optimisation, and issue resolution.
- Validate and document computational results with clear, repeatable reports.
Suggested summary
Before starting, you can change the chapters and the workload. Choose which chapter to start with. Add or remove chapters. Increase or decrease the course workload.What our students say
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