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Organic organic and metal organic interfaces are explored.
Resonating and antiresonating properties of electrochemical interfaces are explored.
Mechanical effects differentiating this model from conventional zero-thickness interfaces are explored for static and dynamic problems.
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Using a questionnaire and interaction clinics, the influence of cultural values and driving patterns on drivers' preferences for, and comprehension of, surface- and interaction-level aspects of IVIS interfaces was explored.
In this paper, the trade-off between heat transfer and evaporation on the microbubble interface are explored, largely by computational modelling but supported by some experimental evidence.
The mechanisms that control these characteristic fracture propagation behaviors ("turning", "kinking", and "branching") near the layer interface are explored in detail.
Game theoretic tools and the global trade-environment interface are explored within a 26-region, 13-commodity computable general equilibrium framework to characterize the incentives of OECD regions to comply with a non-binding agreement in a carbon abatement coalition.
In addition, surface trapping and recombination phenomena at the BP/electrolyte interface were explored with impedance techniques.
The influence of the molar ratio of the MW and OEG deposited onto the sensor interface was explored relative to the final sensor sensitivity.
The position of solid/liquid interface was explored and the effects of design parameters, including that of metal foam pore density and porosity, configuration of fin and Rayleigh number, on melting and solidifying rate and energy stored in each time step were revealed and discussed.
Asynchronous serial communication interfaces (UART) and synchronous serial communication interfaces (SPI and I2C) are explored comparing their relative strengths and limitations for their use in embedded control applications.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com