matlab curve fitting toolbox (MathWorks Inc)
96
Structured Review
MathWorks Inc
matlab curve fitting toolbox
Matlab Curve Fitting Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 2340 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/matlab+curve-fit+toolbox/Database+Toolbox/pm41448268-135-13-16
Average 96 stars, based on 2340 article reviews
Matlab Curve Fitting Toolbox, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 96/100, based on 2340 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/matlab+curve-fit+toolbox/Database+Toolbox/pm41448268-135-13-16
Average 96 stars, based on 2340 article reviews
matlab curve fitting toolbox - by Bioz Stars,
2026-10
96/100 stars
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Suspension:Article Title: Detection of Bacterial Spores with Lanthanide-Macrocycle Binary Complexes Article Snippet: I obs = ( [ Tb ( DO 2 A ) ( DPA ) − ] eq [ Tb ( DO 2 A ) ( DPA ) − ] Tot ) I 1 + ( 1 − [ Tb ( DO 2 A ) ( DPA ) − ] eq [ Tb ( DO 2 A ) ( DPA ) − ] Tot ) I 2 where [ Tb ( DO 2 A ) ( DPA ) − ] eq = − { ( 10 − 7 − [ Ca 2 + ] Tot ) K cation − 2 ( 10 − 7 ) } + { ( 10 − 7 − [ Ca 2 + ] Tot ) K cation − 2 ( 10 − 7 ) } 2 − 4 ( 1 − K cation ) { [ Tb 3 + ] Tot } 2 2 ( 1 − K cation ) [13] This equation was used in the Article Title: A review of inhalability fraction models: discussion and recommendations. Article Snippet: A particle can only pose an inhalation hazard if it can actually enter the body.. The ability of a particle to enter the head, either through nasal or oral passages, is described as the inhalability of the particle.. Inhalability, or inspirability, is defined as the ratio of the inspired particle concentration as a function of particle size (aerodynamic diameter, d ae ), to the ambient particle concentration of the same size. Article Title: Optogenetic feedback control of neural activity Article Snippet: A sigmoid of the form a 1 + e x p ( b x + c ) was fit to the resulting data using Article Title: Kinetics of formic acid decomposition in subcritical and supercritical water – a Raman spectroscopic study Article Snippet: The decomposition of formic acid is studied in a continuous subor supercritical water reactor at temperatures between 300 and 430 C, a pressure of 25 MPa, residence times between 4 and 65 s, and a feedstock concentration of 3.6 wt%.. In situ Raman spectroscopy is used to produce real-time data and accurately quantify decomposition product yields of H2, CO2, and CO.. Collected spectra are used to determine global decomposition rates and kinetic rates for individual reaction pathways. Concentration Assay:Article Title: Detection of Bacterial Spores with Lanthanide-Macrocycle Binary Complexes Article Snippet: I obs = ( [ Tb ( DO 2 A ) ( DPA ) − ] eq [ Tb ( DO 2 A ) ( DPA ) − ] Tot ) I 1 + ( 1 − [ Tb ( DO 2 A ) ( DPA ) − ] eq [ Tb ( DO 2 A ) ( DPA ) − ] Tot ) I 2 where [ Tb ( DO 2 A ) ( DPA ) − ] eq = − { ( 10 − 7 − [ Ca 2 + ] Tot ) K cation − 2 ( 10 − 7 ) } + { ( 10 − 7 − [ Ca 2 + ] Tot ) K cation − 2 ( 10 − 7 ) } 2 − 4 ( 1 − K cation ) { [ Tb 3 + ] Tot } 2 2 ( 1 − K cation ) [13] This equation was used in the Article Title: A review of inhalability fraction models: discussion and recommendations. Article Snippet: A particle can only pose an inhalation hazard if it can actually enter the body.. The ability of a particle to enter the head, either through nasal or oral passages, is described as the inhalability of the particle.. Inhalability, or inspirability, is defined as the ratio of the inspired particle concentration as a function of particle size (aerodynamic diameter, d ae ), to the ambient particle concentration of the same size. Article Title: Optogenetic feedback control of neural activity Article Snippet: A sigmoid of the form a 1 + e x p ( b x + c ) was fit to the resulting data using Article Title: Kinetics of formic acid decomposition in subcritical and supercritical water – a Raman spectroscopic study Article Snippet: The decomposition of formic acid is studied in a continuous subor supercritical water reactor at temperatures between 300 and 430 C, a pressure of 25 MPa, residence times between 4 and 65 s, and a feedstock concentration of 3.6 wt%.. In situ Raman spectroscopy is used to produce real-time data and accurately quantify decomposition product yields of H2, CO2, and CO.. Collected spectra are used to determine global decomposition rates and kinetic rates for individual reaction pathways. Sterility:Article Title: Detection of Bacterial Spores with Lanthanide-Macrocycle Binary Complexes Article Snippet: I obs = ( [ Tb ( DO 2 A ) ( DPA ) − ] eq [ Tb ( DO 2 A ) ( DPA ) − ] Tot ) I 1 + ( 1 − [ Tb ( DO 2 A ) ( DPA ) − ] eq [ Tb ( DO 2 A ) ( DPA ) − ] Tot ) I 2 where [ Tb ( DO 2 A ) ( DPA ) − ] eq = − { ( 10 − 7 − [ Ca 2 + ] Tot ) K cation − 2 ( 10 − 7 ) } + { ( 10 − 7 − [ Ca 2 + ] Tot ) K cation − 2 ( 10 − 7 ) } 2 − 4 ( 1 − K cation ) { [ Tb 3 + ] Tot } 2 2 ( 1 − K cation ) [13] This equation was used in the Article Title: A review of inhalability fraction models: discussion and recommendations. Article Snippet: A particle can only pose an inhalation hazard if it can actually enter the body.. The ability of a particle to enter the head, either through nasal or oral passages, is described as the inhalability of the particle.. Inhalability, or inspirability, is defined as the ratio of the inspired particle concentration as a function of particle size (aerodynamic diameter, d ae ), to the ambient particle concentration of the same size. Article Title: Optogenetic feedback control of neural activity Article Snippet: A sigmoid of the form a 1 + e x p ( b x + c ) was fit to the resulting data using Article Title: Kinetics of formic acid decomposition in subcritical and supercritical water – a Raman spectroscopic study Article Snippet: The decomposition of formic acid is studied in a continuous subor supercritical water reactor at temperatures between 300 and 430 C, a pressure of 25 MPa, residence times between 4 and 65 s, and a feedstock concentration of 3.6 wt%.. In situ Raman spectroscopy is used to produce real-time data and accurately quantify decomposition product yields of H2, CO2, and CO.. Collected spectra are used to determine global decomposition rates and kinetic rates for individual reaction pathways. |