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The minimum energy to ionize an atom is ...

The minimum energy to ionize an atom is the energy required to

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The ionization energy of H atom is x kJ. The energy required for the electron to jump from n = 2 to n = 3 will be:

The ionization energy of H atom is x kJ. The energy required for the electron to jump from n = 2 to n = 3 will be:

If 13.6 eV energy is required to ionized the hydrogen atom then the energy required to ionize the hydrogen atom , then the energy required to remove an electron from n = 2 is

If 13.6 eV energy is required to ionized the hydrogen atom then the energy required to ionize the hydrogen atom , then the energy required to remove an electron from n = 2 is

The energy required to remove the electron from a singly ionized Helium atom is 2.2 times the energy required to remove an electron from Helium atom. The total energy required to ionize the Helium atom ompletelyis:

The energy required to remove the electron from a singly ionized Helium atom is 2.2 times the energy required to remove an electron from Helium atom. The total energy required to ionize the Helium atom ompletelyis:

The energy required to remove the electron from a singly ionized Helium atom is 2.2 times the energy required to remove an electron from Helium atom. The total energy required to ionize the Helium atom completely is:

If 13.6 ev energy is required to ionize the hydrogen atom, then the energy required to remove an electron from n=2 is

If 13.6 eV energy is required to ionize the hydrogen atom, then the energy required to remove an electron from

If 13.6 eV energy is required to ionized the hydrogen atom, then the energy required to remove an electron from n = 2 is