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Dynamics of cold Fermi atoms in one
Dynamics of cold Fermi atoms in one

On the Study of Quantum Properties of Space-Time with
On the Study of Quantum Properties of Space-Time with

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Physics 207: Lecture 2 Notes

... You like to drive home fast, slam on your brakes at the start of the driveway, and screech to a stop “laying rubber” all the way. It’s particularly fun when your mother is in the car with you. You practice this trick driving at 20 mph and with some groceries in your car with the same mass as your mo ...
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Brane effects in vacuum currents on AdS spacetime with toroidal

... We aim to consider combined effects of topology and gravity on the properties of quantum vacuum Gravitational field is considered as a classical curved background Back-reaction of quantum effects is described by Einstein equations with the expectation value of the energymomentum tensor for quantum f ...
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Abstracts - INAF-Osservatorio Astronomico di Roma

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MATHEMATICAL HISTORY OF WAVE AND MATRIX QUANTUM

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... Three-level systems have also been used to model the absorber. One example is the two-photon absorber 关22兴, in which the middle level is assumed to be far from resonance so that the system is very similar to a two-level system. Agrawal considered the case of a ⌳ system 关23兴. The laser frequency is a ...
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... the orbital of every atom hybridize (due to interaction with his neighbours) to form bonding and antibonding state which broaden into bands because of a great number of unit cells interacting. Two electrons fill the s band and remaining six electrons occupy the p bands. Antibonding bands are empty a ...
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AP Physics 1 Investigation 5: Impulse and Momentum

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Preparation of Papers in Two-Column Format for the

... lead to the evolution of the latter one. And the answer that follows is that although a classical computer can theoretically simulate a quantum computer, it is incredibly inefficient, so much so that a classical computer is effectively incapable of performing many tasks that a quantum computer could ...
Chapter 8. Atoms and Electromagnetism
Chapter 8. Atoms and Electromagnetism

... come to next. Everyday magnets come in two general types. Permanent magnets, such as the ones on your refrigerator, are made of iron or substances like steel that contain iron atoms. (Certain other substances also work, but iron is the cheapest and most common.) The other type of magnet, an example ...
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Path integrals in quantum mechanics

Transport and Non-Equilibrium Dynamics in Optical Lattices
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... “I want to talk about the possibility that there is to be an exact simulation, that the computer will do exactly the same as nature” - with these words, Richard Feynman promoted his idea of quantum simulation. He suggested to try to build a quantum mechanical machine - a quantum computer - that woul ...
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... since they neglect significant contributions from the tail of the phase space distribution function in the channel regions [14,15]. Within the requirement of self-consistently solving the coupled transport-field problem in this emerging domain of device physics, there are several computational chall ...
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Vacuum fluctuations and moving atoms/detectors: From Casimir

... αoh̄ω02 d 3 1 Z ∞ dx Fsa (R, τ >> 2R/c) = êz e−2Rx/c . ...
< 1 ... 134 135 136 137 138 139 140 141 142 ... 1073 >

Theoretical and experimental justification for the Schrödinger equation

The theoretical and experimental justification for the Schrödinger equation motivates the discovery of the Schrödinger equation, the equation that describes the dynamics of nonrelativistic particles. The motivation uses photons, which are relativistic particles with dynamics determined by Maxwell's equations, as an analogue for all types of particles.This article is at a postgraduate level. For a more general introduction to the topic see Introduction to quantum mechanics.
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