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Capillary isoelectrofocusing (cIEF) and cation exchange chromatography (CEX) were used to evaluate charge heterogeneity; glycosylation profiles were assessed through hydrophilic interaction liquid chromatography (HILIC); aggregates content was evaluated through size exclusion chromatography (SEC) while binding affinity to FcRn was evaluated using isothermal titration calorimetry (ITC).
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Densification kinetics and grain growth mechanisms of nano-TiN were evaluated using non-isothermal heating up to 1500 °C with variable heating rates.
The effectiveness of the in situ formed stereocomplex crystallites for nucleating PLLA crystallization was evaluated using self-nucleation and non-isothermal DSC methods.
The modifications were confirmed by FT-IR whereas; the structural and textural properties of mesoporous silica are evaluated using FE-SEM, FE-TEM, and nitrogen physisorption isothermal analysis.
Their interactions with telomeric and c-myc quadruplexes as well as a reference duplex sequence have been evaluated using thermal melting, biosensor-surface plasmon resonance, circular dichroism, isothermal titration calorimetry and mass spectrometry.
The morphology developed by the nanocomposites during non-isothermal crystallization at different cooling rates was evaluated using various experimental techniques.
Soil P lability was evaluated using Hedley fractionation and pearl resin extractions, and P desorption/adsorption was assessed by isothermal titration calorimetry (ITC).
Isothermal growth of C. perfringens at various temperatures from 10 to 48.9 °C were evaluated using a methodology that employed a numerical technique to solve a set of differential equations.
Cement chemistry and microstructure characteristics were evaluated by using isothermal calorimeter, quantitative X-ray diffracthermogravimetricmetric analysis, and scanning electron microscopy analysis.
Experimental data and biosorbent capacity was evaluated to use isothermal studies using Langmuir, Freundlich and Dubinin Raduskevich adsorption models.
DOI: http://dx.doi.org/10.7554/eLife.05767.026 Using isothermal calorimetry (ITC), we evaluated the binding affinities between wild type K63-Ub2 and tUIM, and between wild type K63-Ub2 aNZFNZF.
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