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Open image in new window Fig. 2 Dependence of the conversion rate of polymeric systems curing time at different isothermal temperatures (the A series) and isothermal reaction rate of the polymeric systems curing as a function of conversion at different isothermal temperatures (the B series).
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Curing energetics as a function of alkyne type, investigated through a dynamic differential scanning calorimetry approach, showed a distinct divide between the averaged activation energies of the propiolate and propargyl-type crosslinkers, 69.2 73.6 kJ/mol versus 82.3 86.4 kJ/mol, respectively.
The adhesion properties of the room temperature cured films as a function of alkoxysilane concentration were evaluated.
We developed a natural history model of cancer to estimate the probability of disease-specific cure as a function of tumor size, the tumor volume doubling time (TVDT), and disease-specific mortality reduction achievable by screening.
Cross-plot analyses serve as an estimate of likelihood of cure as a function of these and other factors.
Multivariable analysis was used to explain bacteriological cure as a function of sex, age, initial body weight, history of previous treatment and the region of report.
A logistic regression model was built to analyse cure as a function of sex, age, initial body weight, previous treatment history, and the region where the patient was treated.
Measured friction coefficients were maximum at the start of the cure cycle and varied as a function of degree of cure and ramp rate owing to change in the tool part interface, cure shrinkage, resin/composite properties, residual stress, and mode of interface failure.
Ultrahigh strain rate performance in a series of model amine cured epoxy resins was investigated as a function of the glass transition temperature (Tg) of the cured polymer network, where the network Tg was systematically varied through the monomer stiffness, structure, and size.
This approach allows an evaluation of cure chemistry and kinetics as a function of temperature, resin constituents, or catalyst addition.
By using the hydration model, the evolution of properties of low-calcium fly ash blended concrete is predicted as a function of curing age and these properties are adopted as input parameters for the chloride penetration model.
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