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Dave Bacon on Quantum Error Correction. Slides in PPT.
Dave Bacon on Quantum Error Correction. Slides in PPT.

... what will a quantum computer look like? Experimentalists all just thought ...
QUANTUM COMPUTATION: THE TOPOLOGICAL APPROACH
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Abstracts - Departamento de Matemáticas

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... structure problems for theoretical physicists to solve; this tradition has been however punctuated by mathematical contributions made to the space-time structure problem by major contributors such as Minkowski, Poincaré, Weyl, viewed in conjunction with, or separate from, those of Einstein and Lore ...
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2. Fermi Statistics of Electrons and Some Definitions

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... Well defined qubits (no extended states) Initializable Universal set of quantum gates (highly nonlinear) Qubit specific measurements Long coherence time (in excess of 104 operations in the coherence time) ...
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... search an N size database N/2 tries on average before they find a specific piece of data.  Quantum computer search algorithms have to search an N size database N^(1/2) tries on average to find specific data (Grover’s algorithm). ...
Lecture #21 04/14/05
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... •When there is a net current flowing into a region, the charge in the region must be changing, as must the electric field. •By Gauss’s Law, the electric flux must be changing as well •Change in electric flux creates magnetic fields, just like currents do •Displacement current – proportional to time ...
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... The closest shell to the nucleus is called the "1 shell" (also called "K shell"), followed by the "2 shell" (or "L shell"), then the "3 shell" (or "M shell"), and so on farther and farther from the nucleus. The shells correspond with the principal quantum numbers (1, 2, 3, 4 ...) or are labeled alp ...
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...  Define LH : H = ΣiU|0⟩⟨0|iU+  H distinguishes Ψ from any orthogonal code-state but is 2d-local   contradiction.   no codestate can be locally generated   Ω(log n) circuit lower-bound. ...
Teaching Modern Physics - IMSA Digital Commons
Teaching Modern Physics - IMSA Digital Commons

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Chapter 8 - Chemistry

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... dx where we have denoted the momentum eigenvalue as p. It is easily shown that neither of the functions sin kx or cos kx from (4) is an eigenfunction of p̂x . But e±ikx are both eigenfunctions with eigenvalues p = ±h̄k, respectively. Evidently the momentum p can take on any real value between −∞ and ...
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Reality Final: Why Ask Why?

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Rewriting the Schrodinger Equation

... energies, Schrӧdinger is trying to explain to himself what the potential energy V is standing for. He is defining potential as future energy, which he calls future expectation. But I cover this problem in detail in my Lagrangian paper. I show that the Lagrangian has been completely misunderstood fro ...
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... The radius found is in agreement with that suggested by Rutherford. Drawbacks: Rutherford had described the atomic model with electrons rapidly revolving around the nucleus as the planets revolve around the sun. When classical mechanics (based on Newtons laws of motion) was applied to the solar syst ...
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- IMSA Digital Commons

Chapter 11 Coordination Chemistry III: Electronic Spectra
Chapter 11 Coordination Chemistry III: Electronic Spectra

Ramsay_20_01_09
Ramsay_20_01_09

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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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