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The solution of the “constant term problem” and the ζ
The solution of the “constant term problem” and the ζ

Quantum Databases
Quantum Databases

... were all willing to delay finalizing their daily work schedules until the evening of the previous day; high-priority events could now be added at short notice with much less disruption. The uncertainty of not knowing your schedule until the day before may be worrisome to certain employees, but in hi ...
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New Concepts in Inverse Quantum Chemistry - ETH E
New Concepts in Inverse Quantum Chemistry - ETH E

... In this design procedure, we rely on density functional theory (DFT), which is the only current quantum chemical theory capable of treating relatively large systems at acceptable computational cost. The fact that the accuracy of a given density functional for a particular molecular system cannot be ...
The averaged dynamics of the hydrogen atom in crossed electric
The averaged dynamics of the hydrogen atom in crossed electric

Ab initio study of plasmons and electron
Ab initio study of plasmons and electron

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III–V Nanowire Surfaces Hjort, Martin

... All of the mentioned techniques have been developed to study 2-dimensional samples and issues related with the adaption to 3-dimensional nanostructures are discussed, together with solutions on how to overcome them. Preparation techniques of NW samples for surface science studies, including an effec ...
Spectroscopy - Metameso.org
Spectroscopy - Metameso.org

... burner with a round burning outlet. A higher temperature flame than atomic absorption spectroscopy (AA) is typically used to produce excitation of analyte atoms. Since analyte atoms are excited by the heat of the flame, no special elemental lamps to shine into the flame are needed. A high resolution ...
DEVELOPMENT OF HIGH-BRIGHTNESS ELECTRON SOURCES
DEVELOPMENT OF HIGH-BRIGHTNESS ELECTRON SOURCES

Classical Simulation of Quantum Systems
Classical Simulation of Quantum Systems

... classical systems typically scales as a low polynomial in N. Thus, simulations of many-body systems are now possible for quite large particle numbers N. Nevertheless, classical many-body physics is far from being fully explored. In quantum mechanical problems, computations are much more difficult du ...
Teoría Total simplificada, Revista Chilena de Ingeniería, Vol. 16, Nº1
Teoría Total simplificada, Revista Chilena de Ingeniería, Vol. 16, Nº1

... Electromagnetic engineering is a branch of applied physics which is developing so fast that in the near future electromagnetic engineers will be indispensable in an important emerging area, that which is now known as Wave Structure Matter (WSM). The main reason for this is the penetration capacity o ...
Extracting resonance parameters from experimental data on scattering of charged particles. Paul Vaandrager
Extracting resonance parameters from experimental data on scattering of charged particles. Paul Vaandrager

... Furthermore, the S-Matrix is analytic everywhere except for isolated poles corresponding to the spectral points: the bound and resonance states, which are on the physical and non-physical sheet of the Riemann surface, respectively [3]. Thus knowledge of the splitting of the Riemann surface is fundam ...
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Electron Fluxes During Chemical Processes - diss.fu

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Computation of Intrinsic Breakdown Based on Computational

... APPENDIX B EXAMPLE OF QUANTUM-ESPRESSO INPUT FILES .......................... - 88 B.1 Calculation Procedure................................................................................................ - 88 B.2 Sample Input File of Silicon ........................................................ ...
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Physics of Superheroes, The

... was seduced by the comic’s cover (see fig. 1), which promised a glimpse into the inner workings of our institutions of higher learning. As a kid I was deeply curious as to what college life would be like. Now that I am a university professor, I realize that this was a premonition that once I entered ...
Charge Transport and Recombination in Dye
Charge Transport and Recombination in Dye

Electronic and Optical Properties of Quantum Dots: A Tight - E-LIB
Electronic and Optical Properties of Quantum Dots: A Tight - E-LIB

The Causal Set Approach to Quantum Gravity
The Causal Set Approach to Quantum Gravity

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Decoherence and the Classical Limit of Quantum

... mathematical expressions can look classical, there is nothing like an apple and nothing from which the apple can be derived. It is important to appreciate that the solutions to the easy problems cannot provide, by themselves, a solution to the hard problem. In order to predict trajectories, one woul ...
Coupling ultracold atoms to mechanical oscillators
Coupling ultracold atoms to mechanical oscillators

Introduction to Nonequilibrium Quantum Field Theory
Introduction to Nonequilibrium Quantum Field Theory

Exploring topological phases with quantum walks
Exploring topological phases with quantum walks

Photodissociation of ozone in the Hartley band: Potential energy
Photodissociation of ozone in the Hartley band: Potential energy

... while R correlates with channel 共1兲. Transitions to and dissociation via the X state are in principle also possible. With increasing photon energy the dissociating molecule will access regions of coordinate space where even more excited states are required for understanding the dynamics. For wavelen ...
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Far-from-equilibrium dynamics of ultra

A Sequential Molecular Mechanics/Quantum Mechanics Study of the
A Sequential Molecular Mechanics/Quantum Mechanics Study of the

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Hydrogen atom



A hydrogen atom is an atom of the chemical element hydrogen. The electrically neutral atom contains a single positively charged proton and a single negatively charged electron bound to the nucleus by the Coulomb force. Atomic hydrogen constitutes about 75% of the elemental (baryonic) mass of the universe.In everyday life on Earth, isolated hydrogen atoms (usually called ""atomic hydrogen"" or, more precisely, ""monatomic hydrogen"") are extremely rare. Instead, hydrogen tends to combine with other atoms in compounds, or with itself to form ordinary (diatomic) hydrogen gas, H2. ""Atomic hydrogen"" and ""hydrogen atom"" in ordinary English use have overlapping, yet distinct, meanings. For example, a water molecule contains two hydrogen atoms, but does not contain atomic hydrogen (which would refer to isolated hydrogen atoms).
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