visual engineering environment (vee) product (Agilent technologies)
90
Structured Review
Agilent technologies
visual engineering environment (vee) product
Visual Engineering Environment (Vee) Product, supplied by Agilent technologies, 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/visual+engineering+environment+(vee)+product/us11360747-1341-75-81
Average 90 stars, based on 1 article reviews
Visual Engineering Environment (Vee) Product, supplied by Agilent technologies, 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/visual+engineering+environment+(vee)+product/us11360747-1341-75-81
Average 90 stars, based on 1 article reviews
visual engineering environment (vee) product - by Bioz Stars,
2026-09
90/100 stars
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Generated:Article Title: Systems and methods for highlighting graphical models Article Snippet: In some implementations, the generated code may conform to one or more programming languages, such as Ada, Basic, C, C++, C #, FORTRAN, or MATLAB, among other, or it may be assembly code, Exemplary modeling environments include the MATLAB® technical computing environment (TCE) and the Simulink® model-based design environment from The MathWorks, Inc., as well as the SimscapeTM physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, TX, the Article Title: Variant modeling elements in graphical programs Article Snippet: Exemplary modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Systems and methods for generating code from executable models with floating point data Article Snippet: Exemplary modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Variant modeling elements in graphical programs Article Snippet: Exemplary modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the SimscapeTM physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Systems and methods for generating optimized hardware descriptions for models Article Snippet: Suitable high-level modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Systems and methods for estimating performance characteristics of hardware implementations of executable models Article Snippet: Suitable high-level modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Scheduling technique to transform dataflow graph into efficient schedule Article Snippet: Suitable high-level modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc. of Natick, Mass., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Software:Article Title: Systems and methods for highlighting graphical models Article Snippet: In some implementations, the generated code may conform to one or more programming languages, such as Ada, Basic, C, C++, C #, FORTRAN, or MATLAB, among other, or it may be assembly code, Exemplary modeling environments include the MATLAB® technical computing environment (TCE) and the Simulink® model-based design environment from The MathWorks, Inc., as well as the SimscapeTM physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, TX, the Article Title: Variant modeling elements in graphical programs Article Snippet: Exemplary modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Systems and methods for generating code from executable models with floating point data Article Snippet: Exemplary modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Variant modeling elements in graphical programs Article Snippet: Exemplary modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the SimscapeTM physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Systems and methods for generating optimized hardware descriptions for models Article Snippet: Suitable high-level modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Systems and methods for estimating performance characteristics of hardware implementations of executable models Article Snippet: Suitable high-level modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc., as well as the Simscape™ physical modeling system and the Stateflow state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the Article Title: Scheduling technique to transform dataflow graph into efficient schedule Article Snippet: Suitable high-level modeling environments include the MATLAB® algorithm development environment and the Simulink® model-based design environment from The MathWorks, Inc. of Natick, Mass., as well as the Simscape™ physical modeling system and the Stateflow® state chart tool also from The MathWorks, Inc., the MapleSim physical modeling and simulation tool from Waterloo Maple Inc. of Waterloo, Ontario, Canada, the LabVIEW virtual instrument programming system and the NI MatrixX model-based design product both from National Instruments Corp. of Austin, Tex., the |