Q.Electromagnetic radiation of wavelength 242 nm is just sufficient to ionise the sodium atom. Calculate the ionisation energy of sodium in .
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Start your 14-day free trial to unlock the full solution →The ionisation energy of sodium is found by converting the photon energy at the threshold wavelength (242 nm) from joules per atom to kilojoules per mole. The result is .
The key idea here is that "just sufficient to ionise" means the photon carries exactly enough energy to remove the most loosely bound electron from a sodium atom. That photon's energy is the ionisation energy per atom. We then scale it up to one mole using Avogadro's number.
- Find the energy of a single photon. The energy of a photon is given by the Planck-Einstein relation:
where (Planck's constant), (speed of light), and is the wavelength in metres.
Convert 242 nm to metres:
- Plug in the numbers.
First, compute the numerator:
Then divide by the wavelength:
So each photon (and therefore each atom) requires to ionise.
A useful shortcut: is a constant you can memorise. For wavelength in nm, you can use if you want electronvolts, but here we need joules and then kilojoules per mole, so stick with SI units.
- Convert from per atom to per mole. One mole contains atoms (Avogadro's number). The energy per mole is:
Multiply: …
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