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The potential energy of an electron in the first bohr orbit in the He ion is 1)-13.6 eV 2)-27.2eV 3)-54.4eV 4)-108.8eV Plss anyone solve this qtn .?
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The potential energy of an electron in the first bohr orbit in the He ...
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The potential energy of an electron in the first bohr orbit in the He ...
The potential energy of an electron in the first Bohr orbit can be calculated using the formula:

E = -13.6 / n^2

where E is the energy in electron volts (eV) and n is the principal quantum number.

In the case of the He+ ion, which is a helium ion with one electron, the electron is in the first Bohr orbit, so n = 1.

Substituting the value of n into the formula, we get:

E = -13.6 / 1^2
E = -13.6 eV

Therefore, the potential energy of the electron in the first Bohr orbit of the He+ ion is -13.6 eV.

Now, let's summarize the solution:

Summary:
The potential energy of an electron in the first Bohr orbit of the He+ ion is -13.6 eV.
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The potential energy of an electron in the first bohr orbit in the He ion is 1)-13.6 eV 2)-27.2eV 3)-54.4eV 4)-108.8eV Plss anyone solve this qtn .?
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