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open-source matlab-based package  (MathWorks Inc)


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    MathWorks Inc open-source matlab-based package
    Open Source Matlab Based Package, supplied by MathWorks 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/result/open-source matlab-based package/product/MathWorks Inc
    Average 90 stars, based on 1 article reviews
    open-source matlab-based package - by Bioz Stars, 2026-03
    90/100 stars

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    MathWorks Inc mcr based on ref. (open-source matlab package)
    Gradual loading of Pd nanorods. a Loading states of four nanorods are shown at different hydrogen pressures. The color of the points shows <t>the</t> <t>β-spectral</t> contributions of the point spectra (calculated using <t>MCR)</t> collected at that position of the nanorod. The β-phase is indicated by red and α is indicated by blue. The scale bar is 20 nm for the first two columns and 100 nm for the last two. b 34 nanorods showing that nanorods shorter than 55 nm (with ~10 nm radii) tend not to support phase coexistence, whereas nanorods longer than 250 nm are more likely to support two phase boundaries
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    Gradual loading of Pd nanorods. a Loading states of four nanorods are shown at different hydrogen pressures. The color of the points shows <t>the</t> <t>β-spectral</t> contributions of the point spectra (calculated using <t>MCR)</t> collected at that position of the nanorod. The β-phase is indicated by red and α is indicated by blue. The scale bar is 20 nm for the first two columns and 100 nm for the last two. b 34 nanorods showing that nanorods shorter than 55 nm (with ~10 nm radii) tend not to support phase coexistence, whereas nanorods longer than 250 nm are more likely to support two phase boundaries
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    MathWorks Inc matlab-based free open source software package
    Gradual loading of Pd nanorods. a Loading states of four nanorods are shown at different hydrogen pressures. The color of the points shows <t>the</t> <t>β-spectral</t> contributions of the point spectra (calculated using <t>MCR)</t> collected at that position of the nanorod. The β-phase is indicated by red and α is indicated by blue. The scale bar is 20 nm for the first two columns and 100 nm for the last two. b 34 nanorods showing that nanorods shorter than 55 nm (with ~10 nm radii) tend not to support phase coexistence, whereas nanorods longer than 250 nm are more likely to support two phase boundaries
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    Gradual loading of Pd nanorods. a Loading states of four nanorods are shown at different hydrogen pressures. The color of the points shows the β-spectral contributions of the point spectra (calculated using MCR) collected at that position of the nanorod. The β-phase is indicated by red and α is indicated by blue. The scale bar is 20 nm for the first two columns and 100 nm for the last two. b 34 nanorods showing that nanorods shorter than 55 nm (with ~10 nm radii) tend not to support phase coexistence, whereas nanorods longer than 250 nm are more likely to support two phase boundaries

    Journal: Nature Communications

    Article Title: In-situ visualization of solute-driven phase coexistence within individual nanorods

    doi: 10.1038/s41467-018-04021-1

    Figure Lengend Snippet: Gradual loading of Pd nanorods. a Loading states of four nanorods are shown at different hydrogen pressures. The color of the points shows the β-spectral contributions of the point spectra (calculated using MCR) collected at that position of the nanorod. The β-phase is indicated by red and α is indicated by blue. The scale bar is 20 nm for the first two columns and 100 nm for the last two. b 34 nanorods showing that nanorods shorter than 55 nm (with ~10 nm radii) tend not to support phase coexistence, whereas nanorods longer than 250 nm are more likely to support two phase boundaries

    Article Snippet: To fit the EEL specta and spectral images, we use MCR based on ref. (open-source MATLAB package).

    Techniques:

    Phase progression along the length of nanorods. a – d TEM images and EEL spectral images of four different nanorods at 100 K while cooling started from 254 Pa. The collected EEL spectral images have been decomposed into constituent spectra using MCR and the α-spectral and β-spectral weights are superimposed to produce the figures. The nanorod boundaries are drawn approximately as a guide to the eye. The scale bars correspond to 20 nm for ( a ) and 50 nm for ( b – d ), respectively in x -axis. Along y -axis, scale bar is 20 nm

    Journal: Nature Communications

    Article Title: In-situ visualization of solute-driven phase coexistence within individual nanorods

    doi: 10.1038/s41467-018-04021-1

    Figure Lengend Snippet: Phase progression along the length of nanorods. a – d TEM images and EEL spectral images of four different nanorods at 100 K while cooling started from 254 Pa. The collected EEL spectral images have been decomposed into constituent spectra using MCR and the α-spectral and β-spectral weights are superimposed to produce the figures. The nanorod boundaries are drawn approximately as a guide to the eye. The scale bars correspond to 20 nm for ( a ) and 50 nm for ( b – d ), respectively in x -axis. Along y -axis, scale bar is 20 nm

    Article Snippet: To fit the EEL specta and spectral images, we use MCR based on ref. (open-source MATLAB package).

    Techniques: