dakota Logo
  • Getting Started
  • Using Dakota
    • About Dakota
    • Dakota Beginner’s Tutorial
    • Examples
    • Coupling Dakota to a Simulation
    • Dakota Input File
    • Running Dakota
    • Dakota Output
    • Study Types
    • Topics
      • Aleatory Uncertainty Quantification Methods
      • Design and Analysis of Computer Experiments (DACE)
      • Epistemic Uncertainty Quantification Methods
      • Evidence Theory
      • Interval Estimation
      • Linear Constraints
      • Method-Independent Controls
      • Nonlinear Constraints
      • Nonlinear Least Squares
      • Optimization and Calibration
      • Package: COLINY
      • Package: CONMIN
      • Package: DDACE
      • Package: DOT
      • Package: FSUDace
      • Package: HOPSPACK
      • Package: JEGA
      • Package: NLPQL
      • Package: NPSOL
      • Package: OPT++
      • Package: PSUADE
      • Package: QUESO
      • Package: SCOLIB
      • Parameter Studies
      • Pointers
      • Reliability Methods
      • Response Types
      • Sampling
      • Sequential Quadratic Programming (SQP)
      • Stochastic Expansion Methods
      • Uncertainty Quantification
      • Variable Support
    • Advanced Topics
    • Dakota Theory
    • Keyword Reference
  • Using Dakota GUI
  • Using External Tools
  • Developing Dakota
  • Miscellaneous
dakota

Sandia National Laboratories

  • Search Sandia.gov
  • All Sandia Websites
  • »
  • Using Dakota »
  • Topics
  • View page source

Topics

  • Aleatory Uncertainty Quantification Methods
  • Design and Analysis of Computer Experiments (DACE)
  • Epistemic Uncertainty Quantification Methods
  • Evidence Theory
  • Interval Estimation
  • Linear Constraints
  • Method-Independent Controls
  • Nonlinear Constraints
  • Nonlinear Least Squares
  • Optimization and Calibration
  • Package: COLINY
  • Package: CONMIN
  • Package: DDACE
  • Package: DOT
  • Package: FSUDace
  • Package: HOPSPACK
  • Package: JEGA
  • Package: NLPQL
  • Package: NPSOL
  • Package: OPT++
  • Package: PSUADE
  • Package: QUESO
  • Package: SCOLIB
  • Parameter Studies
  • Pointers
  • Reliability Methods
  • Response Types
  • Sampling
  • Sequential Quadratic Programming (SQP)
  • Stochastic Expansion Methods
  • Uncertainty Quantification
  • Variable Support
Previous Next

Exceptional service in the national interest

© 2022 National Technology and Engineering Solutions of Sandia, LLC. | Questions & Comments | Privacy & Security

U.S. Department of Energy National Nuclear Security Administration

Sandia National Laboratories is a multimission laboratory managed and operated by National Technology and Engineering Solutions of Sandia, LLC., a wholly owned subsidiary of Honeywell International, Inc., for the U.S. Department of Energy’s National Nuclear Security Administration under contract DE-NA-0003525.