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The use of two photons is necessary to transport one electron (factor 0.5).
They are generally connected with the behavior of electrons; therefore, ZBW calls them electron factor.
The electron factor is determined by the bond effect, the difference in electronegativity and the alloying effect of an element.
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Firstly, the electron factors of these two constituents Co and Cu are not very different but rather similar.
Therefore, electron deficiency factor combined with steric hindrance factor inhibits the cross-linking of these PFCP polymers via free radical mechanism.
From simulations, an electron rejection factor of ∼105 in antiproton measurements (∼90% antiproton identification efficiency) is demonstrated.
Electron filling factor, gives a design constraints for the size of the quantum dots and distance between the layers.
Also, for electron Lorentz factor, we can approximately write: gamma_{e} approx sqrt {1 + frac{{|{bar{mathbf{A}}}|^{2} }}{{(1 - sigma alpha )^{2} }}}.
The electron Landé factor g determines the effect of B z, which in this geometry is reduced to the Zeeman spin splitting only.
It is also determined that the recombination at the barrier region can cause a dramatic drop in the limiting efficiency of the cell (up to 46.0% for an electron filling factor of the unit cell in the dot array of 52%) if the wave function of the electrons in the dots does not significantly penetrate the barrier region.
Currently CNS (Brunger, 2007 ▸), Phaser, phenix.refine and REFMAC take electron scattering factors into account during structure-factor calculation; other software may assume the diffracted intensities are due to the scattering of X-rays.
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CEO of Professional Science Editing for Scientists @ prosciediting.com