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It is also interesting that there is an energy peak around 18 MeV, which is caused by an interaction with heavier ions.
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The hidden charm content of $K^*(4307)$ favors its decay to a state like $J/\psi\pi K$ and the study of $B$-decays with these particles in their final states can constitute a way of finding experimental evidences for such an exotic vector meson, whose width, in spite of its large mass, is still quite narrow (around 18 MeV).
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18 Mev sentence examples within 18 mev electron
Tonic water samples were irradiated with static beams for a variety of energies and dose rates: 6 and 10 MV photons at 600 MU/min; 6 MV flattening-filter-free photons at 1400 MU/min; 6, 9, 12, 15 and 18 meV electrons at 400 MU/min and 6 meV electrons at approximately 2474 MU/min (used for total skin electron irradiation).
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We confirm the deflection of the low-energy 18 MeV electron beam trajectory by the Earth's magnetic field.
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18 Mev sentence examples within 18 mev alpha
The effect of electron injection on minority carrier transport in Si-doped β-Ga2O3 Schottky rectifiers with 18 MeV alpha particle exposure (fluences of 1012–1013 cm−2) was studied from room temperature to 120°C.
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Vertical geometry Ga2O3 rectifiers were irradiated with 18 MeV alpha particles to fluences of 1–3 × 1013 cm−2 or 10 MeV protons to fluences of 1–3 × 1014 cm−2 and then annealed to establish the thermal stability of the radiation damage.
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Tonic water samples were irradiated with static beams for a variety of energies and dose rates: 6 and 10 MV photons at 600 MU/min; 6 MV flattening-filter-free photons at 1400 MU/min; 6, 9, 12, 15 and 18 meV electrons at 400 MU/min and 6 meV electrons at approximately 2474 MU/min (used for total skin electron irradiation).
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The effect of electron injection on minority carrier transport in Si-doped β-Ga2O3 Schottky rectifiers with 18 MeV alpha particle exposure (fluences of 1012–1013 cm−2) was studied from room temperature to 120°C.
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1 mM were embedded in the gel, poured into falcon tubes and irradiated with 18 MeV beams of an Elekta linac.
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In this document we present the calculation and experimental validation of a source term for F-18 production with a cyclotron for medical applications operating at 18 MeV proton energy and 30 microA proton current.
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10 eV) goes from 18 meV for the 1,2-ethylene-bis(dithiocarbamate) linker to 66 meV for sulfide dianions, corresponding to an apparent increase of the exciton radius of 0.
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5) images obtained using the Bremsstrahlung gamma radiation of 18 MeV betatron with a narrow tantalum (Ta) target inside are presented.
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Este ciclotron sera de 18 MeV en protones.
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We demonstrate that strain fields exerted by the piezoelectric device can be used to tune the energy of localized excitons in WSe2 up to 18 meV in a reversible manner, while leaving the single photon purity unaffected over a wide range.
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7 eV, and obtain an overall time resolution of 1 ps and energy resolution of 18 meV.
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Heavy ion irradiation test result indicates that the hardened CRAMs had a high linear energy transfer threshold of upset ∼18 MeV/(mg/cm 2 ) with an extremely low saturation cross-section of 6.
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We confirm the deflection of the low-energy 18 MeV electron beam trajectory by the Earth's magnetic field.
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Excitation functions were measured by the activation method using the stacked-foil technique for the natMo(p,x)93(m+g),94m,g,95m,g,96(m+g),99mTc, 92m,95Nb reactions up to 18 MeV.
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Watertank-based measurements were made on a Varian TrueBeam linear accelerator covering electron beam energies 6 to 18 MeV.
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It provides proton beams of variable intensity at a nominal fixed energy of 18 MeV.
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In the X-ray irradiation of the 18 MeV electron linac, the spatial distributions of neutron and photon ambient dose equivalent rates were measured by ADC plastic dosimeter and Optical Stimulated Luminescence dosimeter in the linac room.
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17% strain reach 118 meV and 978, respectively, resulting in an ultrahigh gauge factor of 575 294, which is approximately 500 times higher than that of metal/TMD junction strain sensors (1160) and 140 times higher than the conventional strain sensors (4036).
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A commercial cyclotron has been modelled with an energy of 18 MeV for protons.
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It is also interesting that there is an energy peak around 18 MeV, which is caused by an interaction with heavier ions.
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The IR values at different neutron energies were also calculated from the cross sections values based on TENDL-2017 library and are found to be in agreement around 10–18 MeV but not at higher energy.
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The final energy gain of ACM1 was limited to around 17~18 MeV with significant energy instability [ ].
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Vertical geometry Ga2O3 rectifiers were irradiated with 18 MeV alpha particles to fluences of 1–3 × 1013 cm−2 or 10 MeV protons to fluences of 1–3 × 1014 cm−2 and then annealed to establish the thermal stability of the radiation damage.
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28em}{0ex}}5p$ states; (ii) multiple Fermi surface sheets and complex band structure; and (iii) an obvious kink in the dispersion at an energy of about 18 meV below the Fermi energy, which is an experimental observation of the kink structure in $1T\text{\ensuremath{-}}{\mathrm{TiTe}}_{2}$ single crystal.
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The tight confinement of the SPPs in the plasmonic cavity enables strong coupling between excitons and SPPs when the WSe2 exciton absorption is resonant with the cavity mode, leading to a vacuum Rabi splitting of up to 18 meV.
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018 MeV for 58Ni and 62Ni, respectively.
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Material and Methods: The present study was conducted to investigate the characteristics of transparent bolus (Senflab) material, such as transmission factor, percentage depth dose (PDD), stability over time and high dose, homogeneity and transparency using 6 and 15 MV photons beam and 12, 15, and 18 MeV electrons beam.
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The hidden charm content of $K^*(4307)$ favors its decay to a state like $J/\psi\pi K$ and the study of $B$-decays with these particles in their final states can constitute a way of finding experimental evidences for such an exotic vector meson, whose width, in spite of its large mass, is still quite narrow (around 18 MeV).
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The electrical resistivity of the ReO4− salt follows a thermally activated behavior already at T = 300 K, although with a small activation energy in the range 16−18 meV.
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