The radiations from a naturally occurring radio element,as seen after deflection in a magnetic field in one direction,are

  • A
    Definitely $\alpha$-rays
  • B
    Definitely $\beta$-rays
  • C
    Both $\alpha$ and $\beta$-rays
  • D
    Either $\alpha$ or $\beta$-rays

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Radioactivity was discovered by

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After the emission of a $\beta$-particle followed by an $\alpha$-particle from ${ }_{83}^{214} Bi$, the number of neutrons in the resulting atom is:

The number of $\alpha-$ and $\beta-$ particles emitted when a radioactive element $_{90}E^{232}$ changes into $_{86}G^{220}$ will be

An atom has a mass number of $232$ and an atomic number of $90$. How many $\alpha$-particles should it emit after the emission of two $\beta$-particles,so that the resulting atom has a mass number of $212$ and an atomic number of $82$?

The atomic number of a nucleus after a $\beta$-emission from a nucleus with an atomic number of $40$ will be:

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