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by
Alsoraya, Mohammad Ahmad, author.
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that the magnetic actuation approach proved to be the fastest, most precise, and least energy intensive
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Nalbach, Joseph Richard, author.
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dissolvable sugar scaffold is combined with ex-situ nanocomposite generation to generate an energy harvesting
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Zhang, Peng, author.
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additional energy dissipation due to the Joule heating in the metallic FM layer. Moreover, the propagation
by
Martin, Thomas P., Jr., author.
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germanium introduced directly at the surface using ultra-low energy 200eV ion implantation shows similar
by
Gardner, Hannah Catherine, author.
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determined by the amount of energy transferred between nanoparticles. The effects of interparticle distance
by
Li, Xiang, author.
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, i.e. VCMA coefficient, to allow for low write energy, low write error rate, and high density MeRAM
by
Xu, Junwei, author.
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were also grown in the solution based method which are potentially used as new generation high energy
by
Meeker, Daniel Gregory, author.
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energy into heat to achieve thermal killing of target cells. These photothermal (PT) effects have been
by
Islam, A.B.M. Iftekharul, author.
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. The chemical parameters such as activation energy, reaction orders have been estimated. Based on the
by
Yang, Hongrong, author.
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-PEG NPs enter C2C12 cells via energy-dependent uptake; they also enter compressed C2C12 cells via clathrin
by
Reynolds, Shane Riley, author.
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specialized synthesis techniques, or produce a vast amount of solvent or energy waste. Additionally
by
Cordeiro, Mílton Jorge Santos, author.
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technology coupled to wavelength shift mediated by Forster resonance energy transfer (FRET). As a proof

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