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finite element method (fem) comsol multiphysics 6.0  (COMSOL Inc)

 
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    COMSOL Inc finite element method (fem) comsol multiphysics 6.0
    Finite Element Method (Fem) Comsol Multiphysics 6.0, 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+method+(fem)+in+comsol+multiphysics/comsol+multiphysics/pm40640124-179-5-5
    Average 90 stars, based on 1 article reviews
    finite element method (fem) comsol multiphysics 6.0 - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Software:

    Article Title: Current-induced resonance in long conductive ferromagnetic nano-wires
    Article Snippet: Ferromagnetic nanowires are receiving attention as functional elements in technologically important applications in microwave devices, spintronics, and biomedicine.. They can be readily fabricated over large areas using electrodeposition, and their magnetic response can be tuned through control of their size, geometry, and composition.. Additionally, their geometrical properties provide a stable spin structure for manipulating magnetization dynamics using spin-polarized currents for spintronic applications.

    Article Title: Hearing the dynamical Floquet-Thouless pump of a sound pulse
    Article Snippet: Notice that in our COMSOL MULTIPHYSICS finite-element-method (FEM) simulation, we set the rigid boundary for sound pressure in solids for replacing the acrylic sheets; hence, the speed of sound in the region acr occupied by these sheets is approximately close to infinity.

    Article Title: Photo-thermo-optical modulation of Raman scattering from Mie-resonant silicon nanostructures
    Article Snippet: The calculation of the field distribution inside the nanoblock and the multipole decomposition analysis in these resonances are performed by using the commercial finite element method (FEM) (COMSOL Multiphysics, COMSOL Inc.), as respectively shown in Figure S1 and Figure S2.

    Article Title: Klein tunneling in phononic crystals: A step case
    Article Snippet: Rd In a recent paper [Jiang, et al., Science 370, 1447 (2020)], it was reported that zero reflection or Klein tunneling can be observed for normally incident quasiparticles upon a potential barrier constructed by two phononic crystals (PCs) with Dirac cone band structures.. Here, we develop a firstprinciples approach for accurate computation of the reflection of quasiparticles by a potential step with two PCs at normal incidence.. Strikingly, it is found that minimal reflection of quasiparticles ( = 0.8%) occurs at an energy below the potential step, while moderate reflection ( = 17%) remains at the center energy of the potential step, even with the PCs adopted by Jiang et al. A physical model is presented to understand such phenomena, where the zigzag interface in the step serves as a graded antireflection layer and reflection increases dramatically near the band gap of PCs.

    Article Title: Directional microwave ablation in spine: experimental assessment of computational modeling.
    Article Snippet: II.2 Computational models of MWA in vertebral body A 3D finite element method (FEM) solver (COMSOL Multiphysics v5.5, COMSOL, INC. Burlington, MA) operating on a machine with an Intel Xeon W-2225 Processor operating at 4.1 GHz and 64 GB of RAM was used to model the electromagnetic radiation pattern and subsequent heat transfer from the MWA applicator in a manner similar to that reported by McWilliams et al. [13] and Sebek et al. [14].

    Article Title: Performance optimization of Bloch surface wave based devices using an XGBoost machine learning model
    Article Snippet: Data Pre-processing112 The data sets considered in the study are generated using the finite element method (FEM) of113 COMSOL Multiphysics.

    Article Title: Ultrathin Ionic Diodes with Electrostatically Heterogeneous Hybrid Interfaces of Nanoporous SiO 2 Nanofilms and Polymer Layer-by-Layer Multilayers.
    Article Snippet: A gray solid line shows corresponding experimental data. (d) Comparison of experimental and calculated fICR. equations using the commercial finite element method (FEM) software package COMSOL Multiphysics (see the details of calculation theory and theoretical models in Supporting Information).

    Article Title: Room-Temperature Lasing at Flatband Bound States in the Continuum.
    Article Snippet: High-quality factor optical modes with a low dispersion in the momentum space are highly desirable for applications such as low-threshold lasers, strong light−matter interactions, and optical trapping.. Bound states in the continuum (BICs) have recently gained attention as a promising optical cavity concept due to their theoretically infinite quality factors.. However, their quality factor decreases exponentially when deviating from the BIC singularity in the momentum space, which limits their practical use.

    Construct:

    Article Title: Current-induced resonance in long conductive ferromagnetic nano-wires
    Article Snippet: Ferromagnetic nanowires are receiving attention as functional elements in technologically important applications in microwave devices, spintronics, and biomedicine.. They can be readily fabricated over large areas using electrodeposition, and their magnetic response can be tuned through control of their size, geometry, and composition.. Additionally, their geometrical properties provide a stable spin structure for manipulating magnetization dynamics using spin-polarized currents for spintronic applications.

    Article Title: Hearing the dynamical Floquet-Thouless pump of a sound pulse
    Article Snippet: Notice that in our COMSOL MULTIPHYSICS finite-element-method (FEM) simulation, we set the rigid boundary for sound pressure in solids for replacing the acrylic sheets; hence, the speed of sound in the region acr occupied by these sheets is approximately close to infinity.

    Article Title: Photo-thermo-optical modulation of Raman scattering from Mie-resonant silicon nanostructures
    Article Snippet: The calculation of the field distribution inside the nanoblock and the multipole decomposition analysis in these resonances are performed by using the commercial finite element method (FEM) (COMSOL Multiphysics, COMSOL Inc.), as respectively shown in Figure S1 and Figure S2.

    Article Title: Klein tunneling in phononic crystals: A step case
    Article Snippet: Rd In a recent paper [Jiang, et al., Science 370, 1447 (2020)], it was reported that zero reflection or Klein tunneling can be observed for normally incident quasiparticles upon a potential barrier constructed by two phononic crystals (PCs) with Dirac cone band structures.. Here, we develop a firstprinciples approach for accurate computation of the reflection of quasiparticles by a potential step with two PCs at normal incidence.. Strikingly, it is found that minimal reflection of quasiparticles ( = 0.8%) occurs at an energy below the potential step, while moderate reflection ( = 17%) remains at the center energy of the potential step, even with the PCs adopted by Jiang et al. A physical model is presented to understand such phenomena, where the zigzag interface in the step serves as a graded antireflection layer and reflection increases dramatically near the band gap of PCs.

    Article Title: Directional microwave ablation in spine: experimental assessment of computational modeling.
    Article Snippet: II.2 Computational models of MWA in vertebral body A 3D finite element method (FEM) solver (COMSOL Multiphysics v5.5, COMSOL, INC. Burlington, MA) operating on a machine with an Intel Xeon W-2225 Processor operating at 4.1 GHz and 64 GB of RAM was used to model the electromagnetic radiation pattern and subsequent heat transfer from the MWA applicator in a manner similar to that reported by McWilliams et al. [13] and Sebek et al. [14].

    Article Title: Performance optimization of Bloch surface wave based devices using an XGBoost machine learning model
    Article Snippet: Data Pre-processing112 The data sets considered in the study are generated using the finite element method (FEM) of113 COMSOL Multiphysics.

    Article Title: Ultrathin Ionic Diodes with Electrostatically Heterogeneous Hybrid Interfaces of Nanoporous SiO 2 Nanofilms and Polymer Layer-by-Layer Multilayers.
    Article Snippet: A gray solid line shows corresponding experimental data. (d) Comparison of experimental and calculated fICR. equations using the commercial finite element method (FEM) software package COMSOL Multiphysics (see the details of calculation theory and theoretical models in Supporting Information).

    Article Title: Room-Temperature Lasing at Flatband Bound States in the Continuum.
    Article Snippet: High-quality factor optical modes with a low dispersion in the momentum space are highly desirable for applications such as low-threshold lasers, strong light−matter interactions, and optical trapping.. Bound states in the continuum (BICs) have recently gained attention as a promising optical cavity concept due to their theoretically infinite quality factors.. However, their quality factor decreases exponentially when deviating from the BIC singularity in the momentum space, which limits their practical use.

    Comparison:

    Article Title: Current-induced resonance in long conductive ferromagnetic nano-wires
    Article Snippet: Ferromagnetic nanowires are receiving attention as functional elements in technologically important applications in microwave devices, spintronics, and biomedicine.. They can be readily fabricated over large areas using electrodeposition, and their magnetic response can be tuned through control of their size, geometry, and composition.. Additionally, their geometrical properties provide a stable spin structure for manipulating magnetization dynamics using spin-polarized currents for spintronic applications.

    Article Title: Hearing the dynamical Floquet-Thouless pump of a sound pulse
    Article Snippet: Notice that in our COMSOL MULTIPHYSICS finite-element-method (FEM) simulation, we set the rigid boundary for sound pressure in solids for replacing the acrylic sheets; hence, the speed of sound in the region acr occupied by these sheets is approximately close to infinity.

    Article Title: Photo-thermo-optical modulation of Raman scattering from Mie-resonant silicon nanostructures
    Article Snippet: The calculation of the field distribution inside the nanoblock and the multipole decomposition analysis in these resonances are performed by using the commercial finite element method (FEM) (COMSOL Multiphysics, COMSOL Inc.), as respectively shown in Figure S1 and Figure S2.

    Article Title: Klein tunneling in phononic crystals: A step case
    Article Snippet: Rd In a recent paper [Jiang, et al., Science 370, 1447 (2020)], it was reported that zero reflection or Klein tunneling can be observed for normally incident quasiparticles upon a potential barrier constructed by two phononic crystals (PCs) with Dirac cone band structures.. Here, we develop a firstprinciples approach for accurate computation of the reflection of quasiparticles by a potential step with two PCs at normal incidence.. Strikingly, it is found that minimal reflection of quasiparticles ( = 0.8%) occurs at an energy below the potential step, while moderate reflection ( = 17%) remains at the center energy of the potential step, even with the PCs adopted by Jiang et al. A physical model is presented to understand such phenomena, where the zigzag interface in the step serves as a graded antireflection layer and reflection increases dramatically near the band gap of PCs.

    Article Title: Directional microwave ablation in spine: experimental assessment of computational modeling.
    Article Snippet: II.2 Computational models of MWA in vertebral body A 3D finite element method (FEM) solver (COMSOL Multiphysics v5.5, COMSOL, INC. Burlington, MA) operating on a machine with an Intel Xeon W-2225 Processor operating at 4.1 GHz and 64 GB of RAM was used to model the electromagnetic radiation pattern and subsequent heat transfer from the MWA applicator in a manner similar to that reported by McWilliams et al. [13] and Sebek et al. [14].

    Article Title: Performance optimization of Bloch surface wave based devices using an XGBoost machine learning model
    Article Snippet: Data Pre-processing112 The data sets considered in the study are generated using the finite element method (FEM) of113 COMSOL Multiphysics.

    Article Title: Ultrathin Ionic Diodes with Electrostatically Heterogeneous Hybrid Interfaces of Nanoporous SiO 2 Nanofilms and Polymer Layer-by-Layer Multilayers.
    Article Snippet: A gray solid line shows corresponding experimental data. (d) Comparison of experimental and calculated fICR. equations using the commercial finite element method (FEM) software package COMSOL Multiphysics (see the details of calculation theory and theoretical models in Supporting Information).

    Article Title: Room-Temperature Lasing at Flatband Bound States in the Continuum.
    Article Snippet: High-quality factor optical modes with a low dispersion in the momentum space are highly desirable for applications such as low-threshold lasers, strong light−matter interactions, and optical trapping.. Bound states in the continuum (BICs) have recently gained attention as a promising optical cavity concept due to their theoretically infinite quality factors.. However, their quality factor decreases exponentially when deviating from the BIC singularity in the momentum space, which limits their practical use.



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