Примери за използване на Entropy drive на Английски и техните преводи на Български
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Hence the intrinsic motion of light is the primordial entropy drive of free energy.
Conserving either the entropy drive or the non-local distributional symmetry of light conserves both linked functions by default.
In Hawking's"quantum radiance", even the"all-way" symmetry of light's entropy drive is conserved.
The intrinsic motion of time is the entropy drive of bound energy and creates the historic conservation domain of information and matter's"causal matrix".
Space is the conservation domain of light(free electromagnetic energy)created by light's entropy drive.
Space is the conservation domain of light,created by the entropy drive(“intrinsic motion”) of free electromagnetic energy.
This duality extends backward in a conservation chain to the dual role of velocity c,which gauges both the“non-local” distributional/metric symmetry and the spatial entropy drive of light.
The intrinsic motion of time is the primordial entropy drive of bound energy, creating the historic conservation domain of information and matter's“causal matrix”(historic spacetime).
Light requires one dimension each for its electric and magnetic fields,and a third for its entropy drive(forward motion, spatial expansion).
This conservation circuit between the entropy drives of the long-range force pair(gravitation and the electromagnetic force) may be expressed by a symbolic“concept equation”.
Because the spatial expansion is driven by the intrinsic motion of light, it is the spatial entropy drive(S), which ultimately funds the historical entropy drive(T).
The entropic time charge"picks up" the lost intrinsic motion or spatial entropic drive of light, andconserves it as the intrinsic motion of matter's historic entropy drive, time.
Conserves/converts the spatial entropy drive of free energy(the intrinsic motion of light), to the metrically equivalent historical entropy drive of bound energy(the intrinsic motion of time);
The non-local symmetric energy state of light is a consequence of light's intrinsic motion,"velocity c", which gauges both the distributional symmetry andthe symmetric,"all-way" spatial entropy drive of free energy.
Time is a local entropy drive required by bound energy for numerous conservation reasons consequent upon matter's lack of absolute motion(velocity"c"), including the conservation of energy and causality.
The“graviton” or field vector of the gravitational charge is a quantum unit of temporal entropy, the“flipped” or transformed entropy drive or intrinsic motion of the photon- implicit spatial time transformed to explicit historical time.
Because gravity creates matter's temporal entropy drive by the annihilation and transformation of space, a“falling force” is created around a massive body by the accelerated motion of space(as time pulls space into history) at the center of mass;
The universal gravitational constant G is an entropy conversion gauge, determining how much space must be annihilated andconverted to time(per given mass) to provide matter with its requisite historical entropy drive, as locally gauged by"velocity T".
It takes energy to create the one-way temporal entropy drive from the“all-way” spatial entropy drive, because an asymmetric, one-way time order must be imposed upon the symmetric,“all-way” spatial expansion.
Gravity has a double conservation role because gravity conserves all metric symmetries associated with velocity c, including the symmetric“non-local” spatial distribution of light's energy, and the symmetric(“all-way”)spatial entropy drive of free energy(the intrinsic motion of light).
One of gravity's several roles, as mentioned above, is to conserve the spatial entropy drive of light(the intrinsic motion of light)by transforming it into the historical entropy drive of matter(the intrinsic motion of time).
These two entropy drives exist simultaneously in matter due to the gravitational conversion of space and the drive of spatial entropy(the intrinsic motion of light) into time and the drive of historical entropy(the intrinsic motion of time).
On the other hand, gravitation's conservation role is simplified because both light's spatial entropy drive and non-local symmetric energy state are consequences of the"intrinsic motion" of light, producing light's a-temporal, a-causal, and"non-local" character.
Time and its asymmetric intrinsic motion is the pivotal featureof the entire process, providing both the active principle of gravity's“location” charge, and producing matter's positive entropy drive, including information's historic and causal conservation domain.
Matter's positive historical entropy drive is associated with an entropy debt(light's lost intrinsic motion c, the entropy drive of free energy), which gravity's“location” charge replaces with time, the entropy drive of matter.
Time and its asymmetric intrinsic motion is the pivotal feature of the entire process, providing both the activeprinciple of gravity's"location" charge, and producing matter's positive entropy drive, including the historic conservation domain of matter's causal information field.
Gravity's negative spatial entropy drive is associated with a symmetry debt- light's lost“non-local” metric and distributional symmetry- as reflected by the“location” charge of gravitation(Gm), which in the aggregate records the spacetime position, quantity, and density of immobile matter.
Time continuously renews itself via the extraction of new temporal residues from the space annihilated by time's own intrinsic motion- a self-feeding cycle producing an enduring gravitational field,matter's temporal entropy drive, and an historical conservation domain for bound energy and matter's causal information field.
Because the entropy drive and"non-local" symmetric energy state of light are both gauged by"c"(both are consequences of light's intrinsic motion),Noether's theorem will automatically require the conservation of light's entropy drive in any transformation in which light's non-local symmetry must be conserved- as in the conversion of free to bound energy, and/or the creation of matter.
Space is consumed by gravity, leaving behind a metrically equivalent temporal residue,producing matter's temporal entropy drive and the historic conservation domain of information and matter's“causal matrix”(historic spacetime), the joint dimensional conservation domain of free and bound energy.