Sovi.AI - AI Math Tutor

Scan to solve math questions

QUESTION IMAGE

section 3 - light show your work for 10, 11 & 12 to get credit c = 3 x …

Question

section 3 - light
show your work for 10, 11 & 12 to get credit
c = 3 x 10^8 m/s
h = 6.628 x 10^(-34) j·s
c = λv and e = hv

  1. with light waves, what is relationship between frequency and wavelength?
  2. what type of light has wavelengths that can be larger than a meter?
  3. under what conditions would an atom emit a photon?
  4. (2 points) uv light has a median frequency of 1 x 10^15 hz, what is its wavelength?
  5. (2 points) a photon has 3.31×10^(-19) joules of energy, what is its wavelength and what is its color?
  6. (2 points) how much energy does a photon of blue light have if its wavelength is 407 nm?

Explanation:

Response
Question 7

Step1: Recall the wave - speed formula

The speed of light formula is $c = \lambda v$, where $c$ is the speed of light ($c = 3\times10^{8}\ m/s$), $\lambda$ is the wavelength and $v$ is the frequency.

Step2: Rearrange the formula

We can rewrite it as $v=\frac{c}{\lambda}$. Since $c$ is a constant, frequency $v$ and wavelength $\lambda$ are inversely proportional.

Brief Explanations

Radio waves have wavelengths that can be larger than a meter. They are part of the electromagnetic spectrum with long - wavelengths.

Brief Explanations

An atom emits a photon when an electron in a higher - energy orbital drops to a lower - energy orbital. The energy difference between the two orbitals is released as a photon.

Answer:

The frequency and wavelength of light waves are inversely proportional.

Question 8