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If the itom (100) Fm^(257) follows the B...

If the itom` _(100) Fm^(257)` follows the Bohr model the radius of `_(100)Fm^(257)` is a time the Bohr radius , then find `n` .

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If the atom (_100)Fm^(257) follows the Bohr model the radius of _(100)Fm^(257) is n time the Bohr radius , then find n .

If the atom (_100)Fm^(257) follows the Bohr model the radius of _(100)Fm^(257) is n time the Bohr radius , then find n .

If the atom (_100)Fm^(257) follows the Bohr model the radius of _(100)Fm^(257) is n time the Bohr radius , then find n .

Bohr's Model(radius of orbit)

In Bohr’s model, the atomic radius of the first orbit is r. Then, the radius of the third orbit is

On the basis of Bohr’s model, the radius of the 3^("rd") orbit is :

On the basis of Bohr’s model, the radius of the 3^("rd") orbit is :