What is the number of photons of light with a wavelength of $4000 \ pm$ that provide $1 \ J$ of energy?

Vedclass pdf generator app on play store
Vedclass iOS app on app store
(N/A) Energy $(E)$ of a single photon is given by $E = \frac{hc}{\lambda}$.
For $n$ photons, the total energy $(E_n)$ is $E_n = \frac{n \times hc}{\lambda}$.
Rearranging for $n$, we get $n = \frac{E_n \times \lambda}{hc}$.
Given values:
$E_n = 1 \ J$
$\lambda = 4000 \ pm = 4000 \times 10^{-12} \ m = 4 \times 10^{-9} \ m$
$h = 6.626 \times 10^{-34} \ J \cdot s$
$c = 3 \times 10^8 \ m/s$
Substituting these values:
$n = \frac{1 \times 4 \times 10^{-9}}{6.626 \times 10^{-34} \times 3 \times 10^8}$
$n = \frac{4 \times 10^{-9}}{19.878 \times 10^{-26}}$
$n \approx 2.012 \times 10^{16}$.
Thus, the number of photons is $2.012 \times 10^{16}$.

Explore More

Similar Questions

The energy level for $A^{(+z-1)}$ is given by which of the following expressions?

If the radius of the $3^{\text{rd}}$ Bohr's orbit of hydrogen atom is $r_{3}$ and the radius of $4^{\text{th}}$ Bohr's orbit is $r_{4}$,then which of the following relations is correct?

The radius of the first excited state of a Helium ion $(He^+)$ is given by (where $a_0$ is the radius of the first stationary state of the hydrogen atom):

What transition in the hydrogen spectrum has the same wavelength as the Balmer transition,$n=4$ to $n=2$,of the $He^{+}$ spectrum?

What is the maximum wavelength line in the Lyman series of $He^{+}$ ion?

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo