Common Mistakes & How to Avoid Them
Mistake 1: Forgetting to convert wavelength to metres
Students often plug 488 directly into E=λhc without converting nanometres to metres. Since h is in J·s and c in m/s, λ must be in metres.
How to avoid: Always write the conversion explicitly:
λ=488 nm=488×10−9 m=4.88×10−7 m
Do this as your first step, before touching any formula.
Mistake 2: Using the wrong value of h or c
Some students use h=6.63×10−34 J⋅s but then forget to use c=3×108 m/s, or they mix up h and ℏ.
How to avoid: Write the constants clearly at the top of your solution:
h=6.63×10−34 J⋅s, c=3×108 m/s, 1 eV=1.6×10−19 J
Keep them visible throughout the calculation.
Mistake 3: Confusing stopping potential with kinetic energy
The stopping potential V0 is not the kinetic energy — it is the potential difference that stops the most energetic electrons. The maximum kinetic energy is Kmax=eV0, where e is the electron charge.
How to avoid: Remember the photoelectric equation in its two equivalent forms:
hf=ϕ+Kmax
hf=ϕ+eV0
The second form directly uses the stopping potential. Never write Kmax=V0 — that is dimensionally wrong.
Mistake 4: Forgetting to convert electron-volt answers to joules (or vice versa)
The work function is often asked in eV, but h and c give energy in joules. Students either forget to convert at all, or use the wrong conversion factor.
How to avoid: Calculate the photon energy in joules first, then convert to eV at the end if needed.
Ephoton=λhc gives joules.
1 eV=1.6×10−19 J, so divide by this to get eV.
Mistake 5: Sign errors in the photoelectric equation
Students sometimes write hf+ϕ=eV0 or hf=ϕ−eV0, both of which are incorrect.
How to avoid: The photon energy is split into two parts: work function (to free the electron) and kinetic energy (what remains). So:
hf=ϕ+eV0
ϕ=hf−eV0 …