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  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • Pirate Desire 4.24 in Dynamic Applications
  • Transparency. Privacy Protection. and Participation. our values. Pirate Desire can do calculations in x / y / t, and it can integrate over time. All Business Plan Calculations will be fully Transparent. It's protecting user's Privacy, by gathering no data. The third thing to know is that it's Participative. We are voting on new ideas to publish. We are Dynamic Applications. We work to empower people. We are Sharing Economy. Follow us to gain.
  • 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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