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It can be concluded that the configurations in which an entrainer is added are more capable to reach the required conversion of 99.0%: the required reactive section and energy amount is significantly smaller than in the configurations without entrainer.
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However, the neutron cross sections and energy and/or angular dependent neutron spectra from FENDL-2.1 showed some discrepancies with the differential and integral measured data available for tungsten and tantalum.
In the second section, mass and energy balances coupling is derived for the different chemical reactors.
This paper focuses on the development of much-needed numerical and experimental models for understanding the mechanical behaviour, section capacity and energy absorption of the innovative fabricated columns consisting of corrugated mild-steel plates.
The morphology and composition of the thermally grown oxide (TGO) layer in a thermal barrier system with a NiCoCrAlY bond coat are characterized by a combination of scanning and transmission electron microscopy, focused ion beam sectioning and energy-dispersive spectroscopy (EDS) element mapping.
The beams produced by the ECR-IS are transported through Low Energy Beam Transport (LEBT) section to Radio Frequency Quadrupole (RFQ), Medium Energy Beam Transport (MEBT) section, and low energy superconducting linac (SCL1).
In our calculations, the neutron density profile is directly dependent on the correlation of the neutron production cross section and the energy of the GCR particles.
EEC(τ i, t) is the estimation of the required energy of task τ i at time t, which can be computed with the remaining computing ability, the running speed in the non-critical section, the static running speed in the critical section, and the energy consumption defined in Section 1.2.1.
In dynamic spot scanning, the Bragg peak of a narrow pencil beam entering the treatment nozzle is magnetically scanned across the target cross section and the energy of the protons is adjusted to vary the depth of the spot to achieve the intended dose pattern.
It is known that the longitudinal development of a particle cascade in the atmosphere strongly depends on the type of the primary nucleus, and an air shower initiated by a heavier nucleus develops faster than that by a lighter primary of the same energy, because of the differences in the interaction cross-section and the energy per nucleon.
The Si NCs acting as the classical sensitizers embedded in the SROEr films can provide large excitation cross-section and efficient energy transfer to Er3+, from which the luminescence of Er3+ can be improved significantly[11].
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