「MeV」の共起表現一覧(1語右で並び替え)
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The 8.4 | MeV activity was also assigned to 257Lr. |
The 8.6 | MeV activity was tentatively assigned to 257Lr. |
They reported a 9.40 | MeV and a 9.70 MeV alpha-activity and assigned the |
nt (first population) at energies lower than 25 | MeV and |
Protons of energy greater than 5 | MeV and electrons with energies greater 40 keV were |
as 10 & 12, the spectrum fell sharply up to 1.5 | MeV and was flat for higher energies. |
determined to be approximately 170 years (0.21 | MeV), and it decays by beta - emission to 32P (whic |
(β−, an electron) with a maximum energy of 1.33 | MeV and an antineutrino. |
o 210 keV) and an MIT gamma-ray instrument (>50 | MeV), besides a complement of solar physics instrum |
apparatus onto his Martian Exploration Vehicle ( | MEV), Black misinterpreted this as a weapons system |
Mev Brown stood as an independent candidate. | |
eutron that has a kinetic energy in excess of 1 | MeV can cause the nucleus of 238U to split in two. |
er (SGR) covering the energy range (0.21 - 6.67 | MeV) consists of a phoswich type CsI(Tl) scintillat |
The small 7.7 | MeV cyclotron designed to function as the proton in |
The game was written by | Mev Dinc, J.P. Dean, E.M. Dean and Nick Cooke. |
ed X-rays produced by colliding high-energy (25 | MeV) electrons into a "target". |
spectra show a peculiar excess in the 26 - 200 | MeV energy range produced by neutral pion (π0) deca |
the reactor and its strong gamma emissions (1.7 | MeV for 124Sb) interact with beryllium-9 by an (γ,n |
electron capture, with the emission of a 1.460 | MeV gamma ray and a neutrino. |
that is also associated with a very strong 100 | MeV gamma-ray source, and the rather weak Uhuru X-r |
ompound nuclei at low excitation energy (~10-20 | MeV, hence "cold"), leading to a higher probability |
The megaelectronvolt ( | MeV) is commonly used as a unit of mass in particle |
The Mission Extension Vehicle ( | MEV) is a spacecraft being developed by ViviSat, a |
celerator complex consisting primarily of a 600 | MeV linac, a 3 GeV synchrotron and 50 GeV synchrotr |
os Alamos National Laboratory to measure a 14.1 | MeV neutron signal far above background. |
also used for detection of high-energy (10-150 | MeV) neutrons, and use pulse shape discrimination t |
ator and able to accelerate most elements to 10 | MeV per nucleon. |
cause of its high density of stored energy, 2.5 | MeV per nucleus, and long 31-year half life for sto |
high energies (larger than several hundreds of | MeV per nucleon), nuclear reactions and (especially |
MeV photons. | |
initiatives by June 6, 1946 a leading-edge 450 | MeV proton synchrocyclotron was built at the Nuclea |
Also in the wheel was a cosmic gamma-ray (>50 | MeV) sky survey instrument contributed by MIT, with |
Prof. Edward Chupp., observed 0.3-10 | MeV solar flare gamma rays with a NaI(Tl) scintilla |
geomagnetic cutoff latitude for low-energy (> 2 | MeV) solar protons and comparisons with changes in |
e, the lifting body control-systems onboard the | MEV sustained damage during the confrontation, caus |
ell as in the development and building of a 350 | MeV synchrotron at MIT Radiation Laboratory. |
n measured for center-of-mass energies from 400 | MeV to 150 GeV. |
detecting individual gamma rays ranging from 30 | MeV to 30 GeV, EGRET was equipped with a plastic sc |
ent Telescope, (EGRET) measured high energy (20 | MeV to 30 GeV) gamma ray source positions to a frac |
The 8.2 | MeV was subsequently associated with nobelium. |
ccess in 1948, with Canada's first betatron (25 | MeV) was constructed in the Physics Building. |
r γ-ray emission in the energy range 0.05 - 300 | MeV was observed by the SONG instrument onboard the |
patients that should have received therapy at 7 | MeV were instead treated at 40 MeV. |
The emission lines at 2.23 and 4.43 | MeV were detected, with the 2.23 MeV emission occur |
It covers energy range 0.3 MeV-100 | MeV, which is divided into 6 PC channels and 128+16 |
977, solar flare was observed at energies ≤ 4.9 | MeV with the gamma-ray detectors aboard Prognoz 6. |
EROS operated at a maximum energy of 296 | MeV, with the experimental equipment including a ta |
rved three alpha activities of 8.6, 8.4 and 8.2 | MeV, with half-lives of about 8 and 15 seconds, res |
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