| • बीटा-ऋण क्षय | |
| beta: आवर्ण बीटा यूनानी | |
| minus: कमी न्यूनता ऋणका | |
| decay: अपक्षय अवसाद क्षय | |
beta minus decay मीनिंग इन हिंदी
beta minus decay उदाहरण वाक्य
उदाहरण वाक्य
अधिक: आगे- However, explanations of beta minus decay always gives this outcome & ndash; is there a reason why?
- The primary decay mode for isotopes lighter than 153 Eu is electron capture, and the primary mode for heavier isotopes is beta minus decay.
- The primary decay modes before the most abundant stable isotope, 142 Nd, are electron capture and positron decay, and the primary mode after is beta minus decay.
- If beta minus decay occurs by a down quark changing into an up quark by the emission of a talk ) 13 : 34, 7 September 2008 ( UTC)
- After this radiative capture, Th-232 becomes Th-233, which undergoes two beta minus decays resulting in the production of the fissile isotope U-233.
- Since uranium is present in MOX, although plutonium will be burnt, second generation plutonium will be produced through the radiative capture of U-238 and the two subsequent beta minus decays.
- Th-232 is a fertile material that can undergo a neutron capture reaction and two beta minus decays, resulting in the production of fissile activity curve of the SNF around 1 million years.
- Using beta minus decay ) that yields a new nucleus ( the emitter nucleus ) in an excited state that emits an additional neutron, called a " delayed " neutron, to get to ground state.
- Positron emission should not be confused with electron emission or beta minus decay ( ? " decay ), which occurs when a neutron turns into a proton and the nucleus emits an electron and an antineutrino.
- Th-232 is a fertile material that can undergo a neutron capture reaction and two beta minus decays, resulting in the production of fissile activity curve of the SNF around 1, 000, 000 years.
