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by
Soto, Adrián, author.
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microscopic interactions with different energy density functionals, shedding light on how to improve them. We
by
Othman, Ahmad P. H., author.
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studied. All the constant residual energy spectra are in the energy regions where the previous electron
by
Honarvar, Hossein, author.
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materials/devices for thermoelectric energy conversion. The performance of current thermoelectric materials
by
Lochocki, Edward, author. (orcid)0000-0002-4912-9783
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applications as a transparent conductor for use in solar energy harvesting or fully transparent electronics and
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Riley, Grant Alston, author.
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magnetization state that can propagate and hence can carry energy. If such a spin-based paradigm is to be
by
Xing, Zhen, author.
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temperature range in the uncollapsed tetragonal phase, and this spectral weight is recovered at energy scales
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Wilson, Derrek Joseph, author.
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the energy gained is proportional to the wavelength squared. Recent evidence supports the claim that
by
Kanter, Jesse, author.
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plane magnetic field to vary the ratio between the Zeeman energy between electrons of different spins
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Wiecki, Paul Waymouth, author.
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compete with low-energy AFM spin fluctuations. In sulfur-doped FeSe1--xSx, the observed behavior of the
by
Balkan, A. Naci, author.
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energy that is a function of the method of preparation. The interpretation of the results in terms of the
by
McKendrick, William H., author.
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contribution was postulated. Domain energy models, both analytical and numerical were developed to account for
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Schreiber, Katherine A., author.
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possible with other techniques. In particular, we may tune the energy scales of the fractional quantum Hall

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