“暗物质”能解释“灵魂”吗?

更新时间:2023-06-29 06:28:21 阅读: 评论:0

“暗物质”能解释“灵魂”吗?
precily我所支持的E一分形时空从杨振宁的方法计算出的暗物质的比列与最近其他方法计算的值,基本一致,但方法更询单,看原文
Wave particle duality and dark energy
上海师范大学天华
Continuing in the same vein, El Naschie propos that Einstein’s famous formula E = mc consists of two parts. The first part is the positive energy of the quantum particle modeled by the topology of the zero t. The cond is the absolute value of the negative energy of the quantum Schrödinger wave modeled by the topology of the empty t [3] (e above). The latter is the missing dark energy (actually dark energy and dark matter) of the univer accounting for 95.45 % of the total energy-matter in agreement with the findings from the Wilkinson Microwave Anisotropy Probe and the supernova cosmic measurement awarded the 2011 Nobel Prize in Physics. The dark energy of the quantum wave cannot be detected in the normal way becau measurement collaps the quantum wave. Several recent attempts to detect dark matter with sophisticated detectors have failed [4]
老罗英语培训 骗子No Dark Matter Detected Yet
(SiS62), which is potentially devastating for the standard model of cosmology that depends on postulates of dark matter and dark energy.
The Menger-Urysohn dimension and Hausdorff dimension of a random Cantor t are [o, f] [3]. The dimensions of the complement (gaps) are [-1, and 1 – f = f], as established above.
Raising both the f (points) and f(gaps) t to the Kaluza-Klein 5 dimensional spacetime gives f(volume) and 5f (boundary) and respectively equal to 4.5 % and 95.5 % of Einstein’s energy, the latter corresponding to dark energy/matter.三个小矮人
(Different estimates of dark matter and dark energy vary somewhat. According to the latest figure, dark energy plus dark matter constitute 95.1 % of the total content of the univer [5].)festivals
The Kaluza-Klein 5 dimensional spacetime attempted to unify gravity with electromagneti
sm [6]. It originated with German mathematician physicist Theodor Kaluza (1885-1954) who extended general relativity to a five-dimensional spacetime to include the electromagnetic field. Swedish theoretical physicist Oskar Klein (1894-1977) later propo that the extra fourth spatial dimension is curled up, or compactified, in a circle of very small radius, so that a particle moving a short distance along that axis would return to where it began. This compactification of dimensions is now widely employed in string theories that attempt to give a realist explanation of why the univer looks and feels 4 dimensional (e Box). There may well be a more intimate relationship between the Kaluza-Klein spacetime and E-infinity spacetime, which El Naschie has not pointed to, though it is implicit in his work. Recall that the embedding dimension for E-infinity space-time of Hausdorff dimension 4 + f = 4. 236067977 is also 5, and the fuzzy tail of 0. 236067977 is the compactified (∞ - 4) dimensions. If we equate 0.236067977 = f with the sum of ordinary matter and energy that we can detect, and ask what percentage it is of the transfinite dimension of the Kaluza-Klein 5 dimensional spacetime, 5+ f, we get 4.5 %. In other words,
amg是什么意思
英语自我介绍 面试
f/(5+ f) = .04721359…. ≈ 4.5 %
which gives 95.5 % dark matter/energy.
Thus, the compactified spacetime dimensions is likened to the super-particle of the univer, while the rest is the empty-t ‘halo’ and quantum wave that collaps as soon as it is measured. If that is the ca, neither dark matter nor dark energy would be detected.
托福考试报名时间Strings and superstrings, current theories of the univer [7, 8]
String theory replaces point-like particles of particle physics by one-dimensional strings, and different types of obrved elementary particles ari from the different quantum states of the strings. In addition, string theory naturally incorporates gravity, and is therefore a candidate for a ‘theory of everything’ or at least of quantum gravity. String theory requires extra spatial dimensions for mathematical consistency. In realistic physical models constructed from string theory, the extra dimensions are typically com
pactified to extremely small scales. This is a generalization of the Kaluza-Klein theory (e main text), which tries to reconcile the gap between the conception of our univer bad on its four obrvable dimensions with the ten, eleven, or 26 dimensions that theoretical equations of string theories entail. Esntially, it is assumed that the extra dimensions are wrapped up on themlves into extremely small scales.
The earliest string model, the bosonic string, incorporated only the class of particles known as bosons (any number of which can occupy the same quantum state, unlike the other class of particle fermions, which cannot). Roughly speaking, bosons are the constituents of radiation, but not of matter, which is made of fermions. Investigating how a string theory could include fermions led to the invention of supersymmetry, a mathematical relationship between bosons and fermions. String theories that include fermionic vibrations are known as superstring theories, all are now thought to be different limits of a theory called M-theory. According to British theoretical physicist Stephen Hawking in particular, M-theory is the only candidate for a complete theory of the univer. Other physicists including Richard Feynman and Roger Penro have criticized
string theory for not providing novel experimental predictions at accessible energy scales and say it is a failure as a theory of everything.
日文学习报名>rainy daySupersymmetry is a propod extension of spacetime symmetry that relates two basic class of elementary particles: bosons that have integer-value spin, and fermions with a half-integer spin. Each particle from one group is associated with a particle from the other group, called its superpartner, who spin differs by a half-integer. No super-partners have yet been obrved. The failure of the Large Hadron Collider to find evidence for supersymmetry has led some physicists to suggest that the theory should be abandoned.

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