second derivative function originpro 9.1 software Search Results


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OriginLab corp originpro 9.1 software
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp second derivative function originpro 9.1 software
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp originlab originpro v.8.0
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp originpro
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
Originpro, supplied by OriginLab corp, 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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OriginLab corp nonlinear curve fit function of originpro
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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F1000Research originpro
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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Minitab Inc minitab version 12
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp originpro (originlab corp)
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp quick peaks routine in originpro
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp originpro originlab
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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OriginLab corp fast fourier transform function of origin 2021, originpro
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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RStudio r studio version 4.3.0
Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second <t>derivative</t> function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).
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Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second derivative function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).

Journal: European Journal of Pharmaceutics and Biopharmaceutics

Article Title: Investigating how the attributes of self-associated drug complexes influence the passive transport of molecules through biological membranes

doi: 10.1016/j.ejpb.2016.03.002

Figure Lengend Snippet: Graph depicting the changes in total light scattering for samples at pH 4. Inset graph represents the application of a second derivative function that determined the discontinuity in the slope of the derived count rate data. Critical aggregation concentration (CAC) values for each test system are displayed in the table. ∗ p < 0.05 represents significant difference between CAC results (Tukey’s Honestly Significant Difference test). Each point represents mean ± standard deviation ( n = 3).

Article Snippet: The critical aggregation concentration was determined from the data discontinuity in the linear model applied to the derived count rate data; this was confirmed by the application of a second derivative function (OriginPro 9.1 Software, OriginLab, Northampton, USA).

Techniques: Derivative Assay, Concentration Assay, Standard Deviation