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Overview
How to model a reaction
How metabolism affects blood–brain-barrier permeability
Diels-Alder 2D potential energy surfaces
Studying atropisomerism with dihedral scans
Studying azide–alkyne cycloaddition with the freezing-string method
Computing barrier heights
Integrating Rowan into a user-facing platform

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Applications

Using Rowan to explore concepts in chemistry and apply computation to challenging real-world problems.

How to model a reaction

Find transition states, trace reaction paths, and calculate barrier heights.

What to do with a pose

Inspect and refine protein–ligand poses, assess strain, and plan follow-up workflows.

Integrating Rowan into your platform

Build a Rowan integration with projects, scoped API keys, and the Python API.

Explore more applications

  • Studying atropisomerism with dihedral scans
  • How metabolism affects blood–brain-barrier (BBB) permeability
  • Diels–Alder 2D potential energy surfaces
  • Computing barrier heights
  • Studying azide–alkyne cycloaddition with the freezing-string method
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