Results 201 to 210 of about 354,149 (264)
Structural Response of the Water Dimer to an Electric Field. [PDF]
Corcino Carneiro BC +3 more
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Unveiling the roles of device structure and driving frequency in mitigating crosstalk effects in nanopixel light-emitting displays. [PDF]
Li W +5 more
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Electromechanical Coupling Analysis of a Piezoelectric-Flexoelectric-Semiconductor Cantilever Beam. [PDF]
Su Y, Wu X, Zhou Z.
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The Electric Field and the Electric Potential
1991We have seen in the preceding chapter how the presence of an electric charge has an effect on another electric charge. This raises the question: What if there is only one electric charge present? The idea of an electric field is introduced to describe the effect in all space around a charge so that if another charge is present we can predict the effect
Narciso Garcia, Arthur Damask
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The Engineer
Lotus Engineering commercial director Mark Stringer spoke with Andrew Wade about the iconic carmaker’s pivot to electrification.
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Lotus Engineering commercial director Mark Stringer spoke with Andrew Wade about the iconic carmaker’s pivot to electrification.
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Wound Healing with Electric Potential
New England Journal of Medicine, 2007Molecules that mediate cell migration in response to a chemical gradient also mediate migration in response to a gradient of electric potential in the context of wound healing.
Anna, Huttenlocher, Alan Rick, Horwitz
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Electric fields on quasiperiodic potentials
Journal of Physics: Condensed Matter, 2010The effects of an electric field on the electronic spectrum and localization properties of quasiperiodic chains are studied. As quasiperiodic systems, we use the Harper and the Fibonacci potentials since we prove that both are closely interrelated. In the limit of a strong field, a ladder spectrum with localized states is observed. The ladder structure
F, Salazar, G, Naumis
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Electrical potentials in trypsin isozymes
Biochemistry, 1989Cow and rat trypsin differ in net charge by 12.5 units yet have the same enzymatic mechanism. The role of electrical potentials in the catalytic mechanism of these trypsin isozymes is investigated by using the finite difference Poisson-Boltzmann method.
K, Soman +3 more
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