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The Zeta Potential - Colloidal Dynamics
The Zeta Potential - Colloidal Dynamics

... Colloidal Dynamics Inc, 11 Knight Street, Building E18, Warwick, RI 02886 USA www.colloidal-dynamics.com ...
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$doc.title

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... In view of the smallness of the « h » compared to macroscopic quantities of the same dimension effect of the uncertainty principle applies mainly to the atomic scale phenomena and does not appear in experiments with macroscopic objects. Niels Bohr supporting Heisenberg’s uncertainty principle added ...
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... with χ(α) obvious analogues of φ(α) in Eq. (1.51). (This approach works because it is clear that there are two, and only two, linearly-independent solutions of the momentum space free-fermion Dirac equations, Eqs. (1.46), and, for the homogeneous equations, any two covariant solutions with the corr ...
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Quantum Potential - Fondation Louis de Broglie

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Can Transactional Description of Quantum-Mechanical Reality be Considered Complete?

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... Angular momentum is any quantity that obeys the commutation relations (1) and (2). The same relations apply to all types of angular momentum. These relations constitute one of the great generalizations of physics and provide the basis for the structure of the periodic table and the organization of e ...
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Peridynamics simulation of the comminution of particles containing

... ical elongation s0 as G = (9Ehs0 2 )/4π [24]. The computation of the evolution of the system is similar to Molecular Dynamics or Discrete Element Method simulations. We use the velocity-Verlet algorithm [25] to integrate the equations of motion with a time step δt. ...
what is wave function?
what is wave function?

... intensity profile is | 1 |2 If slit 2 is opened (slit 1 closed), then we can represent the wave function of the electrons passing through slit 1 as 2 and therefore the intensity profile is | 2 |2 ...
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... Viewed at the quantum level, two electrons in a collision path would result in a scattering event in which a photon is emitted by one electron and absorbed by another, and then the two particles diverge. Schematic diagrams may be used to represent this activity, and were first used by Richard Feynma ...
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Magnetic-field-induced Anderson localization in a strongly
Magnetic-field-induced Anderson localization in a strongly

... We now consider the high-field regime (cp, t), where the physics of localization presents new aspects due to the quasi-1D Fermi surface. In the limit rp, t, the magnetic field localizes the electrons on the chains of highest The term in the Hamiltonian (1) which conductivity. breaks time-reversal sy ...
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Propagator

In quantum mechanics and quantum field theory, the propagator gives the probability amplitude for a particle to travel from one place to another in a given time, or to travel with a certain energy and momentum. In Feynman diagrams, which calculate the rate of collisions in quantum field theory, virtual particles contribute their propagator to the rate of the scattering event described by the diagram. They also can be viewed as the inverse of the wave operator appropriate to the particle, and are therefore often called Green's functions.
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