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I. Waves & Particles
I. Waves & Particles

... A. Waves Wavelength () - length of one complete wave; units of m or nm Frequency () - # of waves that pass a point during a certain time period hertz (Hz) = 1/s Amplitude (A) - distance from the origin to the trough or crest ...
GRW Theory - Roman Frigg
GRW Theory - Roman Frigg

... Neumann’s, by postulating that upon measurement the system’s state is instantaneously reduced to one of the eigenstates of the measured observable, which leaves the system in a state that can be interpreted on the basis of EER ( Measurement Theory). However, it is generally accepted that this propo ...
Modeling Single Electron Transistor Sensitivity for Read
Modeling Single Electron Transistor Sensitivity for Read

ppt - MIT
ppt - MIT

... r=ipi|iihi| and treated as a classical source. ...
Quantum Numbers and Electron Configurations Worksheet
Quantum Numbers and Electron Configurations Worksheet

... n = the principal quantum number = specifies the size and energy of the orbital n can equal any positive integer (1, 2, 3, 4, etc…) l = the angular momentum quantum number = specifies the shape of the orbital l is all whole numbers between zero and n-1…so if n = 3, l = 0,1, and 2 l=0=s l=1=p l=2=d l ...
A Quantum Version of Wigner`s Transition State Theory
A Quantum Version of Wigner`s Transition State Theory

Welcome to Physics 112N
Welcome to Physics 112N

Syllabus: Quantum computing - University of Hawaii Physics and
Syllabus: Quantum computing - University of Hawaii Physics and

... (Dated: December 31, 2012) ...
On coloring the rational quantum sphere
On coloring the rational quantum sphere

Lecture 6: The Fractional Quantum Hall Effect Fractional quantum
Lecture 6: The Fractional Quantum Hall Effect Fractional quantum

... by Laughlin [4-61. The wave function turns out to be exact for short range interactions and still an excellent approximation for the case of Coulombic interaction. This is corroborated by many sophisticated numerical few-particle calculations. This approach has been very successful in explaining the ...
QNSR
QNSR

... dominating presence – the Moon! – that has a control and influence which is precisely a coherent phenomena, even though it did not emerge from anything other than the statistical ensemble of all these particles being within some general closeness of certain other members of the set. ...
Nanodevices for quantum computation
Nanodevices for quantum computation

... system resides at the point C On the other hand, if we start from point B and apply the same pulse, the system does not reach the degeneracy point. Thus the system comes back to B after termination of the pulse. Similarly, we can realize the transition from the |01l> state to the |00> state by the s ...
AOW- Time Travel
AOW- Time Travel

A tutorial on non-Markovian quantum processes
A tutorial on non-Markovian quantum processes

... we characterise non-Markovian quantum processes? If so, how? ...
Chapter 7 - Quantum Numbers, Orbitals, and Electron
Chapter 7 - Quantum Numbers, Orbitals, and Electron

Partition Functions in Classical and Quantum Mechanics
Partition Functions in Classical and Quantum Mechanics

... . Now that we have evaluated the partition function of the classical harmonic oscillator we now wish to evaluate the same quantity for the quantum harmonic oscillator. In other words, we wish to answer the question : ‘What is the canonical partition function if the mass attached to the spring obeys ...
The Second Law of Thermodynamics
The Second Law of Thermodynamics

Quantum Numbers Activity
Quantum Numbers Activity

Does Time Exist? - Leibniz Universität Hannover
Does Time Exist? - Leibniz Universität Hannover

Signal Analysis
Signal Analysis

Eighth International Conference on Geometry, Integrability and Quantization
Eighth International Conference on Geometry, Integrability and Quantization

... and the algebraic topology is pointed out. It is proved that the correlators in TQM can be expressed via intersection numbers of some submanifolds of the target space with paths of steepest descent between critical points. Another correspondence is only conjectured, namely the correspondence between ...
Quantum Processes and Functional Geometry: New Perspectives in
Quantum Processes and Functional Geometry: New Perspectives in

... raises a lot of difficulties. For example, some cortical areas are non-linear or rough, so the tensor network theory becomes very much complicated and almost intractable to solve the mathematical equations. In one of our recent papers (ROY and KAFATOS, 2002), we proposed that the statistical distanc ...
Measuring Quantum Yields of Powder Samples
Measuring Quantum Yields of Powder Samples

Physics 218. Quantum Field Theory. Professor Dine Green`s
Physics 218. Quantum Field Theory. Professor Dine Green`s

... somewhat simpler than the LSZ discussion. But it relies on the identification of the initial and final states with their leading order expansions. We can refine this by thinking about the structure of the perturbation expansion. The LSZ formula systematizes this. LSZ has other virtues. Most importan ...
Optomechanics Experiments
Optomechanics Experiments

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Orchestrated objective reduction

Orchestrated objective reduction (Orch-OR) is a hypothesis that consciousness in the brain originates from processes inside neurons, rather than from connections between neurons as in the conventional view. The mechanism is held to be a quantum physics process called objective reduction which is orchestrated by molecular structures called microtubules.The hypothesis, which was put forward in the early 1990s by theoretical physicist Roger Penrose and anaesthesiologist and psychologist Stuart Hameroff, has so far been rejected by the majority of cognitive scientists.
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