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A Quantum-Mechanical Argument for Mind
A Quantum-Mechanical Argument for Mind

Turing machine
Turing machine

... simple operations like addition and subtraction. ...
Acoustomagnetoelectric Effect in Graphene
Acoustomagnetoelectric Effect in Graphene

results, conjectures and applications to quasicrystals
results, conjectures and applications to quasicrystals

... Rd with 0∈Rω and Rτ −a ω . The set of ω’s with 0∈Rω is called the canonical transversal and will be denoted by ΓΩ0 . It is a compact subset of Ω. The set of pairs (ω, a) with ω ∈ ΓΩ0 , a ∈ Rd and τ −a ω ∈ ΓΩ0 is called the groupoid of the transversal and is denoted by Γ Ω [16]. A covariant family of ...
Bell inequalities made simple(r):
Bell inequalities made simple(r):

Quantum Phenomena Modeled by Interactions between Many
Quantum Phenomena Modeled by Interactions between Many

... perspective of the dBB interpretation of quantum mechanics, and, hence, start with a brief review of the latter. We regard the MIW approach as fundamental, but to show that it should (in an appropriate limit) reproduce the predictions of orthodox quantum mechanics, it is convenient to build up to it ...
Two-level quantum dot in the Aharonov–Bohm ring. Towards understanding “phase lapse”  P.
Two-level quantum dot in the Aharonov–Bohm ring. Towards understanding “phase lapse” P.

... for Δ < 0, with Fano resonance shapes being mirror reflected. It shows that the position of ε2 with respect to the Fermi level determines the shape of the Fano conductance peaks through ε1 and Fano parameter q ∝ –Γ2/ε2. A similar situation has been encountered in the case of a large dot with strongl ...
Physics 535 lecture notes: - 9 Oct 2nd, 2007 Homework: Griffiths: 4.8
Physics 535 lecture notes: - 9 Oct 2nd, 2007 Homework: Griffiths: 4.8

Quantum Sphere
Quantum Sphere

Electrogravitic References
Electrogravitic References

Quantum Objects - Philsci
Quantum Objects - Philsci

Ultrafast geometric control of a single qubit using chirped pulses
Ultrafast geometric control of a single qubit using chirped pulses

... gates have been proposed for quantum computation [1–3]. Various combinations of quantum gates have been intensively discussed in the literature related to the universality in quantum computation [1, 4–6]. To perform quantum computation, one must have two major building blocks at their disposal: (i) ...
ElectroGravitics_01
ElectroGravitics_01

... terms dynamic electrical circuits. There was and is uncertainty as to the exact physical understanding of the Biot-Savart-Lorentz law and Ampere's law involving the set of reaction forces. Peter Graneau has studied these expressions. Hooper's view was that there are three different types of electric ...
and invariance principles Events, laws of nature,
and invariance principles Events, laws of nature,

... dynamic symmetry principles which are symmetries of specific interactions, such as electromagnetic interactions or strong interactions, and are not formulated in terms of events7. On the other hand, it should be noted that the invariance principles themselves depend on the dividing line between init ...
Singlemode Fiber A Deeper look
Singlemode Fiber A Deeper look

... In transformers, eddy-current power loss is undesirable and can be reduced by using core materials that have high permeability but low conductivity (high  and low  ). For low-frequency, high-power applications an economical way for eddy-current power loss is to use laminated cores. ...
Rutherford atom in quantum theory
Rutherford atom in quantum theory

... There is growing interest in the quantum-mechanical realizations of ‘‘classical’’ atoms: atoms with electron wave packets that are fully localized 共in three space dimensions兲 yet do not spread 关1兴. Such behavior was recently shown to exist for so-called Trojan states, rotating and nonspreading wave ...
Paper - MaPhySto
Paper - MaPhySto

Turing machine
Turing machine

... simple operations like addition and subtraction. ...
K a - IDEALS @ Illinois
K a - IDEALS @ Illinois

... Monodromy in the water molecule, Zobov, Shirin, Polyansky, Tennyson, Coheur, Bernath, Chemical physics letters, 414, 193 (2005): Comparison of high temperature HOH data with predictions ...
Chapter 6
Chapter 6

... man who by his very simple atomic model in a theoretical way for the first time succeeded to describe the emission spectrum from the most simple known atom- the hydrogen atom. In spite of its simplicity this theory was revolutionary for this time and started up an enormous researching activity and d ...
The theory of the ‘0.7 anomaly’ in quantum point contacts
The theory of the ‘0.7 anomaly’ in quantum point contacts

... long standing puzzle since it was first realized [1] that this is a generic phenomenon, which in fact had been already evident in the first experiments on conductance quantization in quantum points contacts (QPCs) [2, 3]. In this article I will demonstrate that existing experimental observations are ...
Effective Quantum Spin Systems with Trapped Ions
Effective Quantum Spin Systems with Trapped Ions

Numerical study of the strongly screened vortex-glass model in an...
Numerical study of the strongly screened vortex-glass model in an...

... Two remarks 共1兲 In the pure case this procedure would not work, since at some point spontaneously all links in the z direction would increase their flow value by one. It is only for the disordered case with a continuous distribution for the random variables bi that a unique loop can be expected. 共2兲 ...
Chapter 6
Chapter 6

Br - Research
Br - Research

... striking the metal, since the photoelectron is ejected as a result of being hit by just one quantum of light.5 Einstein later showed that Planck’s law could be derived from the assumption that the radiation is in thermal equilibrium with molecules whose internal energy is distributed over a discrete ...
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History of quantum field theory

In particle physics, the history of quantum field theory starts with its creation by Paul Dirac, when he attempted to quantize the electromagnetic field in the late 1920s. Major advances in the theory were made in the 1950s, and led to the introduction of quantum electrodynamics (QED). QED was so successful and ""natural"" that efforts were made to use the same basic concepts for the other forces of nature. These efforts were successful in the application of gauge theory to the strong nuclear force and weak nuclear force, producing the modern standard model of particle physics. Efforts to describe gravity using the same techniques have, to date, failed. The study of quantum field theory is alive and flourishing, as are applications of this method to many physical problems. It remains one of the most vital areas of theoretical physics today, providing a common language to many branches of physics.
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