exploit full potential - перевод на испанский
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exploit full potential - перевод на испанский

VELOCITY FIELD AS THE GRADIENT OF A SCALAR FUNCTION
Potential flow in 2d; Potential flow in two dimensions; Ideal flow; Full potential equation; Doublet (potential flow); Uniform flow; Two-dimensional potential flow; Complex potential
  • A potential flow is constructed by adding simple elementary flows and observing the result.

full time job         
TYPE OF EMPLOYMENT OR STUDY IN WHICH A PERSON DEVOTES A MINIMUM NUMBER OF HOURS
Full time job; Full-time employee; Full-time work; Full time work
jornada completa
uniform flow         
Flujo uniforme (corriente que fluye sin molestias)
potentially         
WIKIMEDIA DISAMBIGUATION PAGE
Potential (physics); Potential field; Local potential; Potentially; Potentials
= en potencia, potencialmente
Ex: Thus, potentially the scope of a catalogue code is wide, but in practice most codes are restricted to 1, 2, 3, 4, 5 and 8 above.

Определение

exploit
<security> A security hole or an instance of taking advantage of a security hole. "[...] hackers say exploit. sysadmins say hole" -- Mike Emke (http://emke.com/). Emke reports that the stress is on the second syllable. If this is true, this may be a case of hackerly zero-deriving verbs (especially instantials) from nouns, akin to "write" as a noun to describe an instance of a disk drive writing to a disk. (2001-11-24)

Википедия

Potential flow

In fluid dynamics, potential flow (or ideal flow) describes the velocity field as the gradient of a scalar function: the velocity potential. As a result, a potential flow is characterized by an irrotational velocity field, which is a valid approximation for several applications. The irrotationality of a potential flow is due to the curl of the gradient of a scalar always being equal to zero.

In the case of an incompressible flow the velocity potential satisfies Laplace's equation, and potential theory is applicable. However, potential flows also have been used to describe compressible flows. The potential flow approach occurs in the modeling of both stationary as well as nonstationary flows.

Applications of potential flow include: the outer flow field for aerofoils, water waves, electroosmotic flow, and groundwater flow. For flows (or parts thereof) with strong vorticity effects, the potential flow approximation is not applicable.