33 A.D. earthquake(passive) caused byfc2.com Neutron radiation
Khorsandi B. Modeling of displacement damage in silicon carbide detectorsresultingfrom neutron irradiation
from observing an alpha particle colliding with a beryllium nucleus , which was transformed into a carbon nucleus while emitting a neutron , Be(α(passive) was discoveredNeutron radiation
the fusion reaction(passive) caused byfast neutron radiation
as a result of observing a beryllium nucleus reacting with an alpha particle thus transforming into a carbon nucleus and emitting a neutron , Be(α , n)C. Cold , thermal and hot neutron radiation is most commonly used for scattering and diffraction experiments in order to access the properties and the structure of materials in crystallography , condensed matter physics , biology , solid state chemistry , materials science , geology , mineralogy and related sciences(passive) was discoveredNeutron radiation
structural materials for atomic reactors ; packaging materialto preventneutron radiation
Alarms Gamma radiation as well ascan causeneutron radiation
the decrease in upper - shelf energy ( USEresultingfrom neutron radiation
similar changeswould resultfrom neutron irradiation
changes in density and microstructureresultfrom neutron irradiation
nuclear fusion reactionscreateneutron radiation
the main pathway for the fusioncreatesno neutron radiation
33 ad earthquake(passive) caused byNeutron radiation
an earthquake in 33 ad(passive) caused byneutron radiation
nuclear fission or nuclear fusion(passive) can be created byNeutron radiation
nuclear reactions such as fission and fusion(passive) is created byNeutron radiation
Coolant 22 removes heatresultingfrom the neutron radiation
an earthquake that hit Jerusalem in 33 C.E. ... strong enoughto causeneutron radiation
piezonuclear fission reactions triggered when brittle rocks were compressed as a result of an earthquake(passive) caused byneutron radiation
when regular stars explode after using all of their available fuel and can no longer take part in nuclear fusion(passive) are createdradiation Neutron stars
fast moving free neutrons(passive) is caused byNeutron Radiation
The ionizing doseresultingfrom neutron irradiation
as a result of fission reactions(passive) is createdNeutron radiation
fission which is generated by nuclear reactors(passive) is usually caused byNeutron radiation
He plasma etching , andmay leadneutron irradiation
equipmentresultingfrom neutron irradiation
which has been known previouslyto resultfrom neutron irradiation
grease or release of radioactive substances is detected(passive) has been discoveredneutron radiation ... 16.5
A decrease of approximates 50 % in K uresultedfrom neutron irradiation
decay or fission in a nuclear reactor accident behaves when released as steam into the atmosphere(passive) caused byhow neutron radiation
as a result of observing a beryllium nucleus reacting with an alpha particle thus transforming into a nucleus and emitting a neutron(passive) was discoveredNeutron radiation
the interval from 10000 to 100000 µSv / hdiscovereda neutron radiation
Tissue damage(passive) caused byTissue damage
the damage structures(passive) caused bythe damage structures
the crystal damage(passive) created bythe crystal damage
severe radiation damagecausessevere radiation damage
damage primarily embrittlement in materials that are exposed to itcausesdamage primarily embrittlement in materials that are exposed to it
a significant heterogeneity of damage to organs and tissuescausesa significant heterogeneity of damage to organs and tissues
Neutron embrittlement(passive) is caused byNeutron embrittlement
far more damage to living tissue than other types of radiationcan also causefar more damage to living tissue than other types of radiation
from these clusters and other lattice defectsresultedfrom these clusters and other lattice defects
embrittlement of the pressure vesselcausesembrittlement of the pressure vessel
in irradiation - induced embrittlementresultsin irradiation - induced embrittlement
damage to reactor materials would be significantly less than in base load UMSRscauseddamage to reactor materials would be significantly less than in base load UMSRs
embrittlement for in - core vessel materialscausesembrittlement for in - core vessel materials
the formation of a very shallow damage region with a steep gradient ... the mechanical properties of which are difficult to probecausesthe formation of a very shallow damage region with a steep gradient ... the mechanical properties of which are difficult to probe
embrittlement of some materials , neutron - induced swelling , and buildup of Wigner energycausesembrittlement of some materials , neutron - induced swelling , and buildup of Wigner energy
embrittlement in the reactor pressure vesselcausesembrittlement in the reactor pressure vessel
to embrittlement of steels over the lifetime of the plantleadsto embrittlement of steels over the lifetime of the plant
a shift of the emitter - base offset voltage , which is caused by the displacement damage in the base - collector regioncausesa shift of the emitter - base offset voltage , which is caused by the displacement damage in the base - collector region
severe damage to the reactor 's material and necessitate frequent maintenance and expensive part replacementcausessevere damage to the reactor 's material and necessitate frequent maintenance and expensive part replacement
a shift of the collector - emitter offset voltage , which is caused by the displacement damage in the base - collector regioncausesa shift of the collector - emitter offset voltage , which is caused by the displacement damage in the base - collector region
to neutron activationleadsto neutron activation
a change in the ductility of the vessel material ... making it more susceptible to embrittlementcausesa change in the ductility of the vessel material ... making it more susceptible to embrittlement
to embrittlement of steel in the reactor containment vesselleadsto embrittlement of steel in the reactor containment vessel
various types of lattice defects in a metal such as vacancies , interstitials , dislocations , and precipitatescreatesvarious types of lattice defects in a metal such as vacancies , interstitials , dislocations , and precipitates
increasing embrittlement of the steel and weld seams 1Pressuriser 3Reactor pressure vessel Primary circuit of a nuclear power plant Risks also come from human ageing of the executives in the nuclear fieldcausesincreasing embrittlement of the steel and weld seams 1Pressuriser 3Reactor pressure vessel Primary circuit of a nuclear power plant Risks also come from human ageing of the executives in the nuclear field
of absolutely free neutronscomposedof absolutely free neutrons
to an increase in internal lattice defects and a corresponding decrease in ductility and increase in DBTTleadsto an increase in internal lattice defects and a corresponding decrease in ductility and increase in DBTT
from spontaneous fissions or interactions of alpha particles with light elements also producing neutronsresultingfrom spontaneous fissions or interactions of alpha particles with light elements also producing neutrons
to the formation of point defects , dislocation loops , precipitates and also leads to the formation of P segregations on the intragranular interphase boundaries and GBsleadsto the formation of point defects , dislocation loops , precipitates and also leads to the formation of P segregations on the intragranular interphase boundaries and GBs
to physicist Harry Daghlian 's deathledto physicist Harry Daghlian 's death
a lower growth in the radial direction ,(passive) caused bya lower growth in the radial direction ,
a degradation effect(passive) caused bya degradation effect
material degradation(passive) caused bymaterial degradation