Partner Certification & Solutions Catalog


MacroModel 11.0

The energy and properties of a chemical system depend on the exact three-dimensional molecular structure. Subtle variations in functional groups can result in dramatic differences in behavior. Force field methods that represent the potential energy of a molecule as simple functions of distances and angles between atoms have proven to be an efficient and effective approach to obtaining accurate relative energies for chemical systems. The efficiency of force field-based calculations allows the exploration of large portions of the conformational space, revealing the detailed relationship between structure and energy.
Force field-based molecular modeling is routinely applied to examine molecular conformations, molecular motion, and intermolecular interactions, such as those in a ligand-receptor complex.

							
							
							
							
						
  • Category Engineering
  • Highlights
  • Platform SLED 12
  • Hardware Architecture x86-64
  • Certification SUSE Ready
  • Platform SLES 12
  • Hardware Architecture x86-64
  • Certification SUSE Ready
  • Platform SLED 11
  • Hardware Architecture x86-64
  • Certification SUSE Ready
  • Platform SLES 11
  • Hardware Architecture x86-64
  • Certification SUSE Ready

Other Versions

MacroModel 2022-2

  • Platform SLES 15, SLES 12
  • Hardware Architecture x86-64
  • Certification SUSE Ready
  • Highlights

MacroModel 2019-2

  • Platform SLED 15, SLES 15, SLED 12, SLES 12
  • Hardware Architecture x86-64
  • Certification SUSE Ready
  • Highlights

MacroModel 11.2

  • Platform SLED 12, SLES 12, SLED 11, SLES 11
  • Hardware Architecture x86-64
  • Certification SUSE Ready
  • Highlights

MacroModel 9.9.111

  • Platform SLED 11, SLES 11
  • Hardware Architecture x86-64, x86
  • Certification SUSE Ready
  • Highlights

MacroModel 9.9

  • Platform SLED 11, SLES 11
  • Hardware Architecture x86-64, x86
  • Certification SUSE Ready
  • Highlights