Q.Using Bohr model, calculate the electric current created by the electron when the H-atom is in the ground state.
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →In the Bohr model, the orbiting electron constitutes a tiny current loop. For hydrogen in the ground state (), the current is , where is the orbital period. Using the Bohr radius and velocity , the current comes out to about .
Why this works: the electron as a current loop
The Bohr model treats the electron as moving in a circular orbit around the proton. A moving charge is an electric current. If you watch a single point on the orbit, one electron passes that point once every orbital period . That’s exactly what current is: charge per unit time. So the average current is simply , where .
The trick is to find from the Bohr model’s ground state parameters. We don’t need to memorise a special formula — we can derive from the orbital radius and speed.
Step-by-step calculation
1. Recall the Bohr radius for
The radius of the -th orbit is:
For the ground state, , so .
2. Find the electron’s speed in the ground state
In the Bohr model, the centripetal force is provided by the Coulomb attraction:
Cancel one :
So:
Plug in :
This evaluates to (about 1/137 of the speed of light).
You can also get directly from the fine-structure constant: , where . That’s a neat shortcut if you remember it.
3. Calculate the orbital period
The circumference of the orbit is . Time for one revolution:
Substitute numbers: …
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.