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self-compiled program  (MathWorks Inc)


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    Structured Review

    MathWorks Inc self-compiled program
    Spatial distribution of the <t>mesophase</t> content on two types of test chips: (a) circular chip and (b) square chip. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.
    Self Compiled Program, 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/self-compiled program/product/MathWorks Inc
    Average 90 stars, based on 1 article reviews
    self-compiled program - by Bioz Stars, 2026-03
    90/100 stars

    Images

    1) Product Images from "Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil"

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    Journal: ACS Omega

    doi: 10.1021/acsomega.4c09961

    Spatial distribution of the mesophase content on two types of test chips: (a) circular chip and (b) square chip. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.
    Figure Legend Snippet: Spatial distribution of the mesophase content on two types of test chips: (a) circular chip and (b) square chip. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Techniques Used: Residue

    Variation of mean values and standard deviation with the number of images. (a) Dem and (b) mesophase content. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.
    Figure Legend Snippet: Variation of mean values and standard deviation with the number of images. (a) Dem and (b) mesophase content. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Techniques Used: Standard Deviation, Residue

    Size distribution of the mesophase regions in five repeated tests. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.
    Figure Legend Snippet: Size distribution of the mesophase regions in five repeated tests. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Techniques Used: Residue

    Effect of reaction temperature on the mean Dem and mesophase content of cokes derived from (a) VR and (b) AR. Reaction time 30 min, atmospheric pressure.
    Figure Legend Snippet: Effect of reaction temperature on the mean Dem and mesophase content of cokes derived from (a) VR and (b) AR. Reaction time 30 min, atmospheric pressure.

    Techniques Used: Derivative Assay

    Comparison of the Minimum Number and the Actual Number of Images <xref ref-type= a " title="Comparison of the Minimum Number and the Actual Number of Imagesa" property="contentUrl" width="100%" height="100%"/>
    Figure Legend Snippet: Comparison of the Minimum Number and the Actual Number of Images a

    Techniques Used: Comparison

    Characterization Results of Three Typical Oils <xref ref-type= a " title="Characterization Results of Three Typical Oilsa" property="contentUrl" width="100%" height="100%"/>
    Figure Legend Snippet: Characterization Results of Three Typical Oils a

    Techniques Used:



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    Image Search Results


    Spatial distribution of the mesophase content on two types of test chips: (a) circular chip and (b) square chip. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Journal: ACS Omega

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    doi: 10.1021/acsomega.4c09961

    Figure Lengend Snippet: Spatial distribution of the mesophase content on two types of test chips: (a) circular chip and (b) square chip. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Article Snippet: However, in this study, the mesophase regions in the image were segmented by a self-compiled program of MATLAB.

    Techniques: Residue

    Variation of mean values and standard deviation with the number of images. (a) Dem and (b) mesophase content. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Journal: ACS Omega

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    doi: 10.1021/acsomega.4c09961

    Figure Lengend Snippet: Variation of mean values and standard deviation with the number of images. (a) Dem and (b) mesophase content. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Article Snippet: However, in this study, the mesophase regions in the image were segmented by a self-compiled program of MATLAB.

    Techniques: Standard Deviation, Residue

    Size distribution of the mesophase regions in five repeated tests. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Journal: ACS Omega

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    doi: 10.1021/acsomega.4c09961

    Figure Lengend Snippet: Size distribution of the mesophase regions in five repeated tests. Reaction conditions: 480 °C, 30 min, atmospheric pressure, vacuum residue.

    Article Snippet: However, in this study, the mesophase regions in the image were segmented by a self-compiled program of MATLAB.

    Techniques: Residue

    Effect of reaction temperature on the mean Dem and mesophase content of cokes derived from (a) VR and (b) AR. Reaction time 30 min, atmospheric pressure.

    Journal: ACS Omega

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    doi: 10.1021/acsomega.4c09961

    Figure Lengend Snippet: Effect of reaction temperature on the mean Dem and mesophase content of cokes derived from (a) VR and (b) AR. Reaction time 30 min, atmospheric pressure.

    Article Snippet: However, in this study, the mesophase regions in the image were segmented by a self-compiled program of MATLAB.

    Techniques: Derivative Assay

    Comparison of the Minimum Number and the Actual Number of Images <xref ref-type= a " width="100%" height="100%">

    Journal: ACS Omega

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    doi: 10.1021/acsomega.4c09961

    Figure Lengend Snippet: Comparison of the Minimum Number and the Actual Number of Images a

    Article Snippet: However, in this study, the mesophase regions in the image were segmented by a self-compiled program of MATLAB.

    Techniques: Comparison

    Characterization Results of Three Typical Oils <xref ref-type= a " width="100%" height="100%">

    Journal: ACS Omega

    Article Title: Novel Characterization Method of the Mesophase Optical Textures Based on In Situ Coking of Heavy Oil

    doi: 10.1021/acsomega.4c09961

    Figure Lengend Snippet: Characterization Results of Three Typical Oils a

    Article Snippet: However, in this study, the mesophase regions in the image were segmented by a self-compiled program of MATLAB.

    Techniques: