A hydrogen atom initially in its third Bohr orbit collides with another particle. During the collision, the hydrogen electron falls to the second Bohr orbit and the released internal energy is converted into translational kinetic energy rather than radiation. The total translational kinetic energy before the event is 5.00 eV. If the total translational kinetic energy immediately after the collision is (N ÷ 100) eV, find N.

Physics · Atomic Structure and X-rays · atomic structure and bohr atomic model

JEE MainsNEETJEE Advanced

A hydrogen atom initially in its third Bohr orbit collides with another particle. During the collision, the hydrogen electron falls to the second Bohr orbit and the released internal energy is converted into translational kinetic energy rather than radiation. The total translational kinetic energy before the event is 5.00 eV. If the total translational kinetic energy immediately after the collision is (N ÷ 100) eV, find N.