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finite element analysis-based model comsol multiphysics  (COMSOL Inc)

 
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    Structured Review

    COMSOL Inc finite element analysis-based model comsol multiphysics
    Finite Element Analysis Based Model Comsol Multiphysics, supplied by COMSOL Inc, 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/finite+element+analysis-based+model+comsol+multiphysics/comsol+multiphysics+model/10__3390_slash_molecules23112736-58-26-30
    Average 90 stars, based on 1 article reviews
    finite element analysis-based model comsol multiphysics - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Solid-phase Microextraction:

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: The goal of this research was to develop a model for SPME with both absorptive and adsorptive fibers located (retracted) inside a protecting needle using a finite element analysis-based model (COMSOL Multiphysics) and use it to disclose potential sources of inaccuracies in the quantification of time-weighted average concentrations of VOCs in ambient air.

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: 97 The goal of this research was to develop a model for TWA-SPME and optimize time-weighted 98 average SPME sampling of ambient air with both absorptive and adsorptive retracted fibers using 99 finite element analysis-based model (COMSOL Multiphysics).

    Extraction:

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: The goal of this research was to develop a model for SPME with both absorptive and adsorptive fibers located (retracted) inside a protecting needle using a finite element analysis-based model (COMSOL Multiphysics) and use it to disclose potential sources of inaccuracies in the quantification of time-weighted average concentrations of VOCs in ambient air.

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: 97 The goal of this research was to develop a model for TWA-SPME and optimize time-weighted 98 average SPME sampling of ambient air with both absorptive and adsorptive retracted fibers using 99 finite element analysis-based model (COMSOL Multiphysics).

    Software:

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: The goal of this research was to develop a model for SPME with both absorptive and adsorptive fibers located (retracted) inside a protecting needle using a finite element analysis-based model (COMSOL Multiphysics) and use it to disclose potential sources of inaccuracies in the quantification of time-weighted average concentrations of VOCs in ambient air.

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: 97 The goal of this research was to develop a model for TWA-SPME and optimize time-weighted 98 average SPME sampling of ambient air with both absorptive and adsorptive retracted fibers using 99 finite element analysis-based model (COMSOL Multiphysics).

    Sampling:

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: The goal of this research was to develop a model for SPME with both absorptive and adsorptive fibers located (retracted) inside a protecting needle using a finite element analysis-based model (COMSOL Multiphysics) and use it to disclose potential sources of inaccuracies in the quantification of time-weighted average concentrations of VOCs in ambient air.

    Article Title: Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software
    Article Snippet: 97 The goal of this research was to develop a model for TWA-SPME and optimize time-weighted 98 average SPME sampling of ambient air with both absorptive and adsorptive retracted fibers using 99 finite element analysis-based model (COMSOL Multiphysics).



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