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COMSOL Inc simulated absorption spectra of u, pb, co, and th nanoparticles
Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
Simulated Absorption Spectra Of U, Pb, Co, And Th Nanoparticles, 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
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Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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COMSOL Inc shg spectra simulated with comsol multiphysics software
Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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COMSOL Inc simulated eis spectra
Model geometry of uranium <t>nanoparticle</t> of 40 nm size.
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Image Search Results


Model geometry of uranium nanoparticle of 40 nm size.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: Model geometry of uranium nanoparticle of 40 nm size.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

Schematic diagram illustrating the construction of the model for U, Pb, Co, and Th nanoparticle (layers are the thickness of PML, thickness of the air, and sphere radius).

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: Schematic diagram illustrating the construction of the model for U, Pb, Co, and Th nanoparticle (layers are the thickness of PML, thickness of the air, and sphere radius).

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

Screenshot of 3D meshing creation of uranium nanoparticle of 40 nm size from COMSOL.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: Screenshot of 3D meshing creation of uranium nanoparticle of 40 nm size from COMSOL.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

3D plots of U, Pb, Co, and Th nanoparticles from diverse sizes produced via COMSOL, where the color scale illustrates the amplitude of H-field or E-field.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: 3D plots of U, Pb, Co, and Th nanoparticles from diverse sizes produced via COMSOL, where the color scale illustrates the amplitude of H-field or E-field.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques: Produced

COMSOL-simulated absorption spectra of U, Pb, Co, and Th nanoparticles.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: COMSOL-simulated absorption spectra of U, Pb, Co, and Th nanoparticles.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

The COMSOL-simulated maximum absorption peak of U, Pb, Co, and  Th nanoparticles  for different particle sizes.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: The COMSOL-simulated maximum absorption peak of U, Pb, Co, and Th nanoparticles for different particle sizes.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

The far-field radiation patterns of U, Pb, Co, and Th nanoparticles of diverse sizes in the E-plane (blue) and H-plane (green) when the wavelength is 800 nm.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: The far-field radiation patterns of U, Pb, Co, and Th nanoparticles of diverse sizes in the E-plane (blue) and H-plane (green) when the wavelength is 800 nm.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

( A ) COMSOL-simulated plots of d l n α h ν / d h ν versus h ν for the U and Th nanoparticles, displaying a discontinuity on the computed band gap energy value. ( B ) COMSOL-simulated plots of d l n α h ν / d h ν versus h ν for the Pb and Co nanoparticles, displaying a discontinuity on the computed band gap energy value.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: ( A ) COMSOL-simulated plots of d l n α h ν / d h ν versus h ν for the U and Th nanoparticles, displaying a discontinuity on the computed band gap energy value. ( B ) COMSOL-simulated plots of d l n α h ν / d h ν versus h ν for the Pb and Co nanoparticles, displaying a discontinuity on the computed band gap energy value.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

COMSOL-simulated band gap values of d(ln(αhν))/d(hν) versus hν for the U, Pb, Co, and  Th nanoparticles.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: COMSOL-simulated band gap values of d(ln(αhν))/d(hν) versus hν for the U, Pb, Co, and Th nanoparticles.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques:

Comparison of the band gap of U, Pb, Co, and Th nanoparticles at different particle sizes.

Journal: Nanomaterials

Article Title: Simulation and Modeling of Optical Properties of U, Th, Pb, and Co Nanoparticles of Interest to Nuclear Security Using Finite Element Analysis

doi: 10.3390/nano12101710

Figure Lengend Snippet: Comparison of the band gap of U, Pb, Co, and Th nanoparticles at different particle sizes.

Article Snippet: The simulated absorption spectra of U, Pb, Co, and Th nanoparticles of diverse sizes obtained with COMSOL are given in , respectively, while simulated maximum absorption peaks of U, Pb, Co, and Th nanoparticles for different particle sizes have been indicated in .

Techniques: Comparison