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Methodology
  • Tutorial
Crystal Morphology

Learn to predict the macroscopic shape of a crystal using the Crystal Morphology and Wulff Viewer panels.

  • Tutorial
Glass Transition Temperatures for Active Pharmaceutical Ingredients (API)

Learn to predict glass transition temperature for several active pharmaceutical ingredients using the thermophysical properties workflow.

  • Tutorial
Molecular Dynamics Simulations for Active Pharmaceutical Ingredient (API) Miscibility

Learn to predict the miscibility of an active pharmaceutical ingredient using molecular dynamics simulations.

  • Tutorial
Applying Barrier Potentials for Molecular Dynamics Simulations

Learn how to apply barrier potentials for periodic systems for molecular dynamic simulations.

  • Tutorial
Cyclic Stress Strain

Learn how to calculate cyclic stress strain of a polymeric material.

  • Tutorial
Periodic Descriptors for Inorganic Solids

Generate descriptors for inorganic periodic crystal systems which can be used to build machine learning models.

  • Tutorial
Bond and Ligand Dissociation Energy

Calculate the energy associated with the fragmentation of a parent molecule at various dissociation sites.

  • Tutorial
R-group Enumeration with the Materials Science Suite

Manage R-group libraries and apply them for R-group enumeration over a core structure.

  • Tutorial
Calculating Reaction Energetics for Molecular Systems

Perform geometry optimizations and frequency calculations to predict the thermodynamics of a sample Diels-Alder reaction.

  • Tutorial
Meta Workflow

Learn to use the Meta Workflow Builder to string together multiple workflows for automating user-specific projects.

  • Tutorial
Machine Learning Property Prediction

Learn to use pre-built machine learning models to predict polymer properties and volatility for organic and organometallic molecules.

  • Tutorial
Cheminformatics Machine Learning for Homogeneous Catalysis

Learn to develop and use a machine learning model to predict reaction rate constants for iridium catalysts.

Case Studies

Documentation

  • Documentation
Materials Science Panel Explorer

Quickly learn which Schrödinger tools are the best fit for your research.

  • Documentation
Online Help and Documentation

An online resource of information and instruction on how to use Schrödinger software including user manuals, panel descriptions, installation guides, reference sheets, tutorials, and more.

Materials Science Documentation Documentation Materials Science
Materials Science Documentation

Comprehensive reference documentation covering materials science panels and workflows.

Training Videos

Getting Going with Materials Science Maestro Video Series Video Materials Science
Getting Going with Materials Science Maestro Video Series

A free video series introducing the basics of using Materials Science Maestro.

Building Small Molecules in MS Maestro Video Materials Science
Building Small Molecules in MS Maestro

The sixth video in the Getting Going with Materials Science (MS) Maestro Video Series: 2D Sketcher, 3D Builder, and Force Field Minimization.

Building Organometallic Complexes in MS Maestro Video Materials Science
Building Organometallic Complexes in MS Maestro

The seventh video in the Getting Going with Materials Science (MS) Maestro Video Series: Buidling an organometallic complex.

Publications

Quick Reference Sheets

Tutorials

Introduction to Materials Science Maestro Tutorial Tutorial Materials Science
Introduction to Materials Science Maestro Tutorial

An introduction to Materials Science Maestro, covering basic navigation, an intro to building models and several of the key functionalities of the graphical user interface.

  • Tutorial
Disordered System Building and Molecular Dynamics Multistage Workflows

Learn to use the Disordered System Builder and Molecular Dynamics Multistage Workflow panels to build and equilibrate model systems.

  • Tutorial
Introduction to Geometry Optimizations, Functionals and Basis Sets

Perform geometry optimizations on simple organic molecules and learn basics regarding functionals and basis sets.

Webinars

Accelerating OLED innovation with multi-scale, multi-physics simulations Webinar Materials Science
  • Apr 16, 2025
Accelerating OLED innovation with multi-scale, multi-physics simulations

Join us to explore how integrated digital workflows drive the design of next-generation, high-performance OLEDs.

Accelerating pharmaceutical formulations using machine learning approaches Webinar Life Science Materials Science
  • Apr 8, 2025
Accelerating pharmaceutical formulations using machine learning approaches

In this webinar, we will demonstrate how Schrödinger’s integrated ML- and physics-based approaches are transforming pharmaceutical formulation design.

High-performance materials discovery: A decade of cloud-enabled breakthroughs Webinar Materials Science
  • Feb 26, 2025
High-performance materials discovery: A decade of cloud-enabled breakthroughs

This talk will showcase how Schrödinger’s integrated materials science platform enables massive parallel screening and de novo design campaigns across diverse applications.

White Papers

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Latest insights from Extrapolations blog

How L’Oreal Uses Digital Simulation to Explore Sustainable Product Ingredients Blog
How L’Oreal Uses Digital Simulation to Explore Sustainable Product Ingredients

Most of us could name at least one cosmetic or personal care product that’s essential to looking and feeling our best. Whether it’s a specific kind of soap, a brand of mascara, the right shade of lipstick or the shampoo that works best for our hair, these products have become a critical part of our daily routine.

Uncovering Better Materials for the Spacecraft of Tomorrow
Uncovering Better Materials for the Spacecraft of Tomorrow

When it comes to solving problems for his job, the work done by Dr. Levi Moore actually is rocket science. As a research chemist with the United States Air Force Research Laboratory, he’s tasked with helping to develop new materials that make it easier and safer to launch rockets into space.

Sustainable Food Packaging Designed at the Atomic Level
Sustainable Food Packaging Designed at the Atomic Level

Each year, an estimated 330 million metric tonnes of plastic are produced globally. A significant portion of that plastic becomes waste, clogging landfills, rivers, and the ocean for centuries, damaging ecosystems and negatively impacting human health.

Training & Resources

Online certification courses

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.

Free learning resources

Learn how to deploy the technology and best practices of Schrödinger software for your project success. Find training resources, tutorials, quick start guides, videos, and more.