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(η6-Arene)Cr(CO 3 complexes differ from their chromium-free analogs in that they undergo a variety of new transformations as a result of the electron withdrawing effect and the stereocontrol effected by the Cr(CO 3 moiety.
Indeed, even conventional X-ray TE cathode assemblies will, in general, produce an anisotropic focal spot, as a result of the electron beam dimensions, imperfect focusing, and the impact of the target angle.
The current is practically absent at voltages below ≈180 V due to extremely small carrier concentration in the active region of the structure at helium temperatures, and the current appears only as a result of the electron injection from the top n+ layer.
When ω rf =Ω e /2 (the high-frequency case), an ion-rich sheath appeared near both the anode and cathode sides of the electrodes with several scales of the electron polarization drift, because more electrons than ions are lost as a result of the electron polarization drift.
On the other hand, for a process controlled by diffusion, the reactivity of free radicals formed as a result of the electron transfer process can limit the rate of polymerization photoinitiation.
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The latter is a difficult substrate for enantioselective hydrocyanation owing to the relatively facile non-enzymatic background reaction as a result of the electron-attracting properties of the pyridine ring.
As a result of the collision, the electron recoils in a statistically random way.
The oxidative phosphorylation process (ko00190) forms ATP as a result of the transfer of electrons from NAHD or FADH2 to a final electron acceptor (usually molecular oxygen; O2) through a series of electron carriers.
Oxidative phosphorylation is the mitochondrial process by which ATP is formed as a result of the transfer of electrons from NADH or FADH2 through a series of electron carriers to oxygen.
High levels of potentially mutagenic ROS have been proposed to arise from an increased flux of electrons through the electron transport chain as a result of the more robust OXPHOS of transformed cells [20], [40].
ROS are produced as a result of the microglial enzyme NADPH oxidase expelling electrons across the cell membrane.
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