Free learning resources
Quickly learn how to integrate Schrödinger technology into your research. From overviews to deep dives, you can find information about applications, workflows, and analysis here.
Quickly learn how to integrate Schrödinger technology into your research. From overviews to deep dives, you can find information about applications, workflows, and analysis here.
Video
Life Science
Video
Life Science
A free video series introducing the basics of using Maestro Bioluminate.
Self-guided step-by-step introductions to various workflows with example files for getting comfortable with Schrödinger tools.
Short video overviews of specific introductory and scientific topics, including summaries of new release features.
A one-page PDF that visually describes the panel or workflow.
An advanced tool to facilitate protein crystal structure refinement and produces accurate structures more compatible with computational chemistry applications than those produced by other protein refinement programs.
A fully-integrated protein structure prediction solution that incorporates homology modeling and fold recognition into a single solution.
An intuitive pharmacophore modeling tool that allows assessment of compounds based on the steric and electronic features of molecules known to have biological activity.
A force field that is a model of the potential energy of a chemical system – a set of functions and parameters used to model the potential energy of the system, and thereby to calculate the forces on each particle.
Calculate the passive membrane permeability of a set of congeneric ligands.
Schrödinger’s streamlined portal for access to state-of-the-art predictive computational modeling and machine learning workflows for molecular discovery.
A force field-based molecular modeling tool, with a range of advanced features and methods for examining molecular conformations, molecular motion, and intermolecular interactions.
An automated solution for predicting macroscopic pKa values and pH-dependent tautomeric populations of ligands that combines physics-based DFT calculations with empirical corrections.
A LiveDesign plug-in that provides a highly-automated system for deploying supervised learning modeling pipelines within LiveDesign.
Computational prediction of protein-ligand binding using physics-based free energy perturbation technology at an accuracy matching experimental methods.
Rapidly prepare high-quality small molecule ligand structures for structure-based virtual screening and other computational workflows.
Level up your skill set with hands-on, online molecular modeling courses. These self-paced courses cover a range of scientific topics and include access to Schrödinger software and support.
Connect your students to industry-leading molecular modeling software through a web-based platform. Incorporate molecular modeling in the classroom.