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Mathsoft Engineering Education mathcad
Mathcad, supplied by Mathsoft Engineering Education, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/technical+computing+environment+mathematica/mathcad/us08527973-61-7-26
Average 90 stars, based on 1 article reviews
mathcad - by Bioz Stars, 2026-09
90/100 stars

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Software:

Article Title: System and method for automatically generating a graphical model from a text-based program
Article Snippet: Illustrative embodiments will be described below for illustrative purposes relative to the technical computing environment of the MATLAB® programming environment and the Simulink® model-based design system from The MathWorks, Inc. of Natick, Mass. .. Although the illustrative embodiments are described relative to a Math Works-based application, one of ordinary skill in the art will appreciate that the present invention may be applied to other graphical modeling environments and technical computing environments, such as any technical computing environments using software products of Rhapsody from I-Logix Inc., TargetLink and Real-Time Interface from dSPACE GmbH, RT-LABTM from Opal-RT Technologies, Inc., EXITE from EXTESSY AG, LabVIEW and MATRIXx from National Instruments, Inc., SystemVueTM from Eagleware-Elanix Corporation, Mathematica® from Wolfram Research, Inc., Mathcad of Mathsoft Engineering & Education Inc., COSSAP from Synopsys, Inc., HyperSignal® from Hyperception, Inc., Dymola from Dynasim AB, or MapleTM from Maplesoft, a division of Waterloo Maple Inc. ..

Article Title: Run-time or compile-time error solutions for locating missing program elements in a programming environment
Article Snippet: .. Additional examples of TCEs to which the present embodiments can be applied include Octave; Python; Julia; Comsol Script; MATRIXx from National Instruments; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from Imagine That Inc.; Scilab from The French Institution for Research in Computer Science and Control (INRIA); Virtuoso from Cadence; Modelica or Dymola from Dynasim; etc.); a graphically-based environment (e.g., Simulink® software, Stateflow® software, SimEvents® software, SimscapeTM software, etc., by The MathWorks, Inc.; VisSim by Visual Solutions; LabView® by National Instruments; Dymola by Dynasim; SoftWIRE by Measurement Computing; WiT by DALSA Coreco; VEE Pro or SystemVue by Agilent; Vision Program Manager from PPT Vision; Khoros from Khoral Research; Gedae by Gedae, Inc.; Scicos from (INRIA); Virtuoso from Cadence; Rational Rose from IBM; Rhopsody or Tau from Telelogic; Ptolemy from the University of California at Berkeley; and aspects of a Unified Modeling Language (UML) or SysML environment; etc.). ..

Article Title: Dynamic definition for concurrent computing environments
Article Snippet: The following illustrative embodiments will be described solely for illustrative purposes relative to a MATLAB-based technical computing environment. .. Although the illustrative embodiment will be described relative to a MATLAB-based application, one of ordinary skill in the art will appreciate that the present invention may be applied to parallel or distributed processing of technical computing tasks with other technical computing environments, such as technical computing environments using software products of Lab VIEW® or MATRIXx from National Instruments, Inc., or Mathematica® from Wolfram Research, Inc., or Mathcad of Mathsoft Engineering & Education Inc., or MapleTM from Maplesoft, a division of Waterloo Maple Inc. FIG. 1 depicts an environment suitable for practicing an illustrative embodiment of the present invention. ..

Article Title: Identification and visualization of associations among code generated from a model and sources that affect code generation
Article Snippet: .. For example, a text-based modeling environment may be implemented using products such as, but not limited to, MATLAB by The MathWorks, Incorporated; Octave from the Free Software Foundation; MATRIXx from National Instruments; Python, from the Python Software Foundation; Comsol Script, from Comsol Inc.; Mathematica from Wolfram Research, Inc.; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from Imagine That Inc.; Scilab from The French Institution for Research in Computer Science and Control (INRIA); Virtuoso from Cadence Design Systems, Inc.; or Modelica from the Modelica Association or Dymola from Dassault Systèmes. ..

Control:

Article Title: Run-time or compile-time error solutions for locating missing program elements in a programming environment
Article Snippet: .. Additional examples of TCEs to which the present embodiments can be applied include Octave; Python; Julia; Comsol Script; MATRIXx from National Instruments; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from Imagine That Inc.; Scilab from The French Institution for Research in Computer Science and Control (INRIA); Virtuoso from Cadence; Modelica or Dymola from Dynasim; etc.); a graphically-based environment (e.g., Simulink® software, Stateflow® software, SimEvents® software, SimscapeTM software, etc., by The MathWorks, Inc.; VisSim by Visual Solutions; LabView® by National Instruments; Dymola by Dynasim; SoftWIRE by Measurement Computing; WiT by DALSA Coreco; VEE Pro or SystemVue by Agilent; Vision Program Manager from PPT Vision; Khoros from Khoral Research; Gedae by Gedae, Inc.; Scicos from (INRIA); Virtuoso from Cadence; Rational Rose from IBM; Rhopsody or Tau from Telelogic; Ptolemy from the University of California at Berkeley; and aspects of a Unified Modeling Language (UML) or SysML environment; etc.). ..

Article Title: Generating a state diagram
Article Snippet: .. The TCE may be implemented using products such as, but not limited to, MATLAB® by The MathWorks, Inc.; Octave; Python; Comsol Script; MATRIXx from National Instruments; Mathematica from Wolfram Research, Inc.; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from Imagine That Inc.: Scilab from The French Institution for Research in Computer Science and Control (INRIA); Virtuoso from Cadence; or Modelica or Dymola from Dassault Systèmes. .. An alternative embodiment may implement a TCE in a graphically-based TCE using products such as, but not limited to, Simulink®, Stateflow®, SimEvents®, etc., by The MathWorks, Inc.; VisSim by Visual Solutions; LabView® by National Instruments; Dymola by Dassault Systèmes; SoftWIRE by Measurement Computing; WiT by DALSA Coreco; VEE Pro or SystemVue by Agilent; Vision Program Manager from PPT Vision; Khoros from Khoral Research; Gedae by Gedae, Inc.; Scicos from (INRIA); Virtuoso from Cadence; Rational Rose from IBM; Rhopsody or Tau from Telelogic; Ptolemy from the University of California at Berkeley; or aspects of a Unified Modeling Language (UML) or SysML environment.

Article Title: Identification and visualization of associations among code generated from a model and sources that affect code generation
Article Snippet: .. For example, a text-based modeling environment may be implemented using products such as, but not limited to, MATLAB by The MathWorks, Incorporated; Octave from the Free Software Foundation; MATRIXx from National Instruments; Python, from the Python Software Foundation; Comsol Script, from Comsol Inc.; Mathematica from Wolfram Research, Inc.; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from Imagine That Inc.; Scilab from The French Institution for Research in Computer Science and Control (INRIA); Virtuoso from Cadence Design Systems, Inc.; or Modelica from the Modelica Association or Dymola from Dassault Systèmes. ..

other:

Article Title: Utilizing clock rate pipelining to generate code for multi-rate systems
Article Snippet: TCE 220 may include a text-based environment (e.g., MATLAB software; Octave; Python; Comsol Script; MATRIXx from National Instruments; Mathematica from Wolfram Research, Inc.; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from Imagine That Inc.; Scilab from The French Institution for Research in Computer Science and Control (INRIA); Virtuoso from Cadence; Modelica or Dymola from Dynasim; etc.); a graphically-based environment (e.g., Simulink® software, Stateflow® software, SimEvents® software, SimscapeTM software, etc., by The MathWorks, Inc.; VisSim by Visual Solutions; LabView® by National Instruments; Dymola by Dynasim; SoftWIRE by Measurement Computing; WiT by DALSA Coreco; VEE Pro or SystemVue by Agilent; Vision Program Manager from PPT Vision; Khoros from Khoral Research; Gedae by Gedae, Inc.; Scicos from (INRIA); Virtuoso from Cadence; Rational Rose from IBM; Rhapsody or Tau from Telelogic; Ptolemy from the University of California at Berkeley; aspects of a Unified Modeling Language (UML) or SysML environment; etc.); or another type of environment, such as a hybrid environment that includes one or more of the above-referenced text-based environments and one or more of the above-referenced graphically-based environments.

Article Title: Measuring strain on display device
Article Snippet: Inc.; Mathcad from Mathsoft Engineering & Education Inc.; Maple from Maplesoft; Extend from imagine That Inc.; or Modelica and/or Dymola from Dassault Systemes.



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