A molybdenum isotope (Z=42 Z=42) undergoes beta negative decay (β−). Based upon conservation of charge, what must be the atomic number (Z) of the product? Also, what particles decay and what particles are produced during β− decay?

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Chapter29: Nuclear Physics
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A molybdenum isotope (Z=42 Z=42) undergoes beta negative decay (β−). Based upon conservation of charge, what must be the atomic number (Z) of the product? Also, what particles decay and what particles are produced during β− decay?

A molybdenum isotope (Z = 42) undergoes beta negative decay (8 ). Based upon conservation of charge, what must be the atomic number (Z) of the product? Also, what particles decay and what particles are produced during B decay?
A
Z = 41; in B decay, a neutron transforms into a proton, releasing an electron and a chargeless electron-antineutrino.
Z = 41; in B decay, a proton transforms into a neutron, releasing an electron and a chargeless electron-antineutrino.
Z = 43; in B decay, a neutron transforms into a proton, releasing an electron and a chargeless electron-antineutrino.
D
Z = 43; in B decay, a proton transforms into a neutron, releasing an electron and a chargeless electron-antineutrino.
Transcribed Image Text:A molybdenum isotope (Z = 42) undergoes beta negative decay (8 ). Based upon conservation of charge, what must be the atomic number (Z) of the product? Also, what particles decay and what particles are produced during B decay? A Z = 41; in B decay, a neutron transforms into a proton, releasing an electron and a chargeless electron-antineutrino. Z = 41; in B decay, a proton transforms into a neutron, releasing an electron and a chargeless electron-antineutrino. Z = 43; in B decay, a neutron transforms into a proton, releasing an electron and a chargeless electron-antineutrino. D Z = 43; in B decay, a proton transforms into a neutron, releasing an electron and a chargeless electron-antineutrino.
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