Education

  • 2D Frame Analysis Dynamic Edition 3.2 in ENGISSOL Ltd.
  • This application performs structural analysis of frames, trusses and multi span beams. The supported analysis types include static linear and non-linear analysis (second orderd effects are supported), as well as response spectrum and time history analysis. The program features a powerful, interactive and easy interface. A great majority of predefined materials and cross sections is supported.
  • 2D Frame Analysis Static Edition 3.2 in ENGISSOL Ltd.
  • This application performs structural analysis of frames, trusses and multi span beams. The supported analysis types include static linear and non-linear analysis (second orderd effects are supported). The program features a powerful, interactive and easy interface. A great majority of predefined materials and cross sections is supported.
  • 2D Frame Analysis Truss Edition 3.2 in ENGISSOL Ltd.
  • This application performs structural analysis of trusses and pinned frames. The supported analysis types include static linear and non-linear analysis (second orderd effects are supported). The program features a powerful, interactive and easy interface. A great majority of predefined materials and cross sections is supported.
  • Just Translate 2019 19.0.11 in jalada GmbH
  • Just Translate 2019 is the complete translation environment for language professionals who want to edit, review and manage translation projects as well as corporate terminology. Deliver world-class localized content to support your global sales and marketing efforts with software trusted by translation professionals worldwide.
  • Robot4 6.210 in Optimal Designs Enterprise
  • Robot4 (tm) is a Robotic Arm Movement program where the arm is moved from a given position to a desired position. The program finds the angles necessary for the desired position. Problem came from NASA. Robot4 is an Inverse Problem example. It wants to solve how to move from starting point 'A' to target 'B'. An improved productivity example do to using Calculus programming. See 'Rob4User.fc' file.
  • Robot4 6.210 in Optimal Designs Enterprise
  • Robot4 (tm) is a Robotic Arm Movement program where the arm is moved from a given position to a desired position. The program finds the angles necessary for the desired position. Problem came from NASA. Robot4 is an Inverse Problem example. It wants to solve how to move from starting point 'A' to target 'B'. An improved productivity example do to using Calculus programming. See 'Rob4User.fc' file.
  • Robot4 6.210 in Optimal Designs Enterprise
  • Robot4 (tm) is a Robotic Arm Movement program where the arm is moved from a given position to a desired position. The program finds the angles necessary for the desired position. Problem came from NASA. Robot4 is an Inverse Problem example. It wants to solve how to move from starting point 'A' to target 'B'. An improved productivity example do to using Calculus programming. See 'Rob4User.fc' file.
  • Robot4 6.210 in Optimal Designs Enterprise
  • Robot4 (tm) is a Robotic Arm Movement program where the arm is moved from a given position to a desired position. The program finds the angles necessary for the desired position. Problem came from NASA. Robot4 is an Inverse Problem example. It wants to solve how to move from starting point 'A' to target 'B'. An improved productivity example do to using Calculus programming. See 'Rob4User.fc' file.
  • Robot4 6.210 in Optimal Designs Enterprise
  • Robot4 (tm) is a Robotic Arm Movement program where the arm is moved from a given position to a desired position. The program finds the angles necessary for the desired position. Problem came from NASA. Robot4 is an Inverse Problem example. It wants to solve how to move from starting point 'A' to target 'B'. An improved productivity example do to using Calculus programming. See 'Rob4User.fc' file.
  • Robot4 6.210 in Optimal Designs Enterprise
  • Robot4 (tm) is a Robotic Arm Movement program where the arm is moved from a given position to a desired position. The program finds the angles necessary for the desired position. Problem came from NASA. Robot4 is an Inverse Problem example. It wants to solve how to move from starting point 'A' to target 'B'. An improved productivity example do to using Calculus programming. See 'Rob4User.fc' file.
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