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Strain sweep experiments were done in the range of 0.1 40% strain at 60 °C.
Anodic sweep experiments were also performed using mixtures of benzoate and acetate buffers.
Strain sweep experiments were performed at a frequency of 1 rad/s from 0.001 200% strain.
Strain sweep experiments were performed at a frequency of 1 rad/s (which was determined to be in the linear viscoelastic region) from 0.001 to 100% strain.
Stress sweep experiments were performed (25°C and 1 Hz) in the range γ = 0.001 ÷ 1000; frequency sweep experiments were carried out in the range 0.01 ÷ 10 Hz, in the linear viscoelastic region (usually γ = 0.01), preliminary assessed by stress sweep experiments; flow curves were performed in the range 0.001 ÷ 1000 s−1, applying a stepwise increase of the stress.
After formation, these gels were allowed to equilibrate overnight in phosphate buffered saline (PBS) upon which rheological frequency sweep experiments were conducted to determine the shear elastic moduli of the constructs.
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LSV (Linear Sweep Voltammogram) experiments were conducted for O2 reduction reactions in the same environment with a scan rate of 10 mVs−10
A model for the resistance-induced potential distribution at thin layer electrodes during linear sweep voltammetric experiments is considered and results of calculations based on this model are presented.
Detailed linear sweep voltammetric and chronoamperometric experiments were undertaken to investigate the electrocatalytic behavior of tyrosine.
Linear sweep voltammetry and potentiostatic experiments were carried out for the GN/ZnO/Cu2O catalyst coated on Cu foil.
Cyclic voltammograms (CV) were recorded from −0.2 to 0.6 V at various sweep rates and charge discharge experiments were carried out from 0 to 0.6 V at various current densities.
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