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Transformers dynamic currents

The current version of CalTOX (CalTOX4) is an eight-compartment regional and dynamic multimedia fugacity model. CalTOX comprises a multimedia transport and transformation model, multi-pathway exposure scenario models, and add-ins to quantify and evaluate variability and uncertainty. To conduct the sensitivity and uncertainty analyses, all input parameter values are given as distributions, described in terms of mean values and a coefficient of variation, instead of point estimates or plausible upper values. [Pg.60]

No matter the topic, though, the purpose of this essay remains the same to reveal something personal about you that will give the admissions department a better idea of who you are and why they should accept you. This isn t the time to wow your reader with your insights into current social problems or the poetry of the seventeenth century. Your audience, an admissions officer, want to learn about yon. A successful college application essay transforms you from a two-dimensional applicant into a dynamic, three-dimensional real person. And in most cases, the more real you are to the admissions officer, the more likely it is that he or she will accept you. [Pg.9]

Solids undergoing martensitic phase transformations are currently a subject of intense interest in mechanics. In spite of recent progress in understanding the absolute stability of elastic phases under applied loads, the presence of metastable configurations remains a major puzzle. In this overview we presented the simplest possible discussion of nucleation and growth phenomena in the framework of the dynamical theory of elastic rods. We argue that the resolution of an apparent nonuniqueness at the continuum level requires "dehomogenization" of the main system of equations and the detailed description of the processes at micro scale. [Pg.196]

Because the flow of electric current always involves the transport of matter in solution and chemical transformations at the solution-electrode interface, local behavior can only be approached. It can be approximated, however, by a reference electrode whose potential is controlled by a well-defined electron-transfer process in which the essential solid phases are present in an adequate amount and the solution constituents are present at sufficiently high concentrations. The electron transfer is a dynamic process, occurring even when no net current flows and the larger the anodic and cathodic components of this exchange current, the more nearly reversible and nonpolarizable the reference electrode will be. A large exchange current increases the slope of the current-potential curve so that the potential of the electrode is more nearly independent of the current. The current-potential curves (polarization curves) are frequently used to characterize the reversibility of reference electrodes. [Pg.184]

This review is organized as follows in Sec. 2, the large scale phenomenological physics of meteors is discussed, detailing observations as well as the respective current interpretations. Meteorites will not be discussed in this review. Studies of the chemical and physical processes associated with meteorites have been largely concerned with composition, phase transformations and entrapment of noble gases in the solid meteorites. The reader is referred to several reviews and textbooks on the subject.The elementary gas-phase molecular dynamics relevant to the meteor environment is discussed in Sec. 3, and will primarily focus on the hyperthermal nonequilibrium processes, in concert with the subject matter of this book. [Pg.272]


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Current transformers

Dynamic currents

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