one big one
When an atom emits an alpha particle, it loses two protons and two neutrons from its nucleus. This results in a new element being formed with an atomic number that is two less than the original element.
When (^{222}Rn) emits a beta particle, it transforms into (^{222}Fr), which is Francium.
When U-238 emits an alpha particle, it loses two protons. This results in the atom transforming into a different element (Th-234) which has two fewer protons in the nucleus.
When a nucleus emits a beta particle, it loses one of its neutrons and gains one proton. Hence, it's mass and atomic number remain the same but its charge and What_happens_to_a_nucleus_when_it_emits_a_beta_particlenumber is increased by +1.
When an element emits a beta particle, it transforms into an element that occupies the place immediately following it in the periodic table. This is because beta decay involves the transformation of a neutron into a proton, increasing the atomic number by one.
When californium emits an alpha particle, it creates curium.
When an atom emits an alpha particle, it loses two protons and two neutrons from its nucleus. This results in a new element being formed with an atomic number that is two less than the original element.
When (^{222}Rn) emits a beta particle, it transforms into (^{222}Fr), which is Francium.
Thorium-230 decays into radium-226 when it emits an alpha particle.
When U-238 emits an alpha particle, it loses two protons. This results in the atom transforming into a different element (Th-234) which has two fewer protons in the nucleus.
When 60Co decays by beta- decay it produces 60Ni.
no element specifically emits a violet color, but instead its a mixture of some elements producing it. 3/13/12
When a nucleus emits a beta particle, it loses one of its neutrons and gains one proton. Hence, it's mass and atomic number remain the same but its charge and What_happens_to_a_nucleus_when_it_emits_a_beta_particlenumber is increased by +1.
When an element emits a beta particle, it transforms into an element that occupies the place immediately following it in the periodic table. This is because beta decay involves the transformation of a neutron into a proton, increasing the atomic number by one.
The nuclear reaction is: 232Th--------------- 228Ra + α
When radium (Ra) emits an alpha particle, it transforms into radon (Rn). This process is also known as alpha decay, where an alpha particle is released from the nucleus of the radium atom, resulting in the formation of a new element.
It drops 2