Pauli suggested the emission of neutrino during $\beta^{+}$ decay to explain:

  • A
    Continuous energy distribution of positrons
  • B
    Conservation of linear momentum
  • C
    Conservation of mass-energy
  • D
    All of these

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When ${}_{92}U^{238}$ changes into ${}_{82}Pb^{206}$,the number of $\alpha$ and $\beta^-$ particles emitted are:

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Assertion: Radioactive nuclei emit $\beta^-$ particles.
Reason: Electrons exist inside the nucleus.

An element $A$ decays into element $C$ by a two-step process:
$A \to B + {\;_2}He^4$
$B \to C + 2e^-$
Then:

$\beta$-decay means emission of electron from

What happens to the mass number and atomic number of an element when it emits $\gamma$-radiation?

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