Unit Plan
Curated OER

Geometrical Optics: Reflection and Refraction of Light

For Teachers 11th - 12th
Students define and discus the concepts of wave fronts and rays. In groups, they distinguish between specular and diffuse reflections and use Snell's Law to predict the path of light rays. They calculate the speed of light through...
Unit Plan
CK-12 Foundation

Ck 12: Wave Speed Calculations

For Students 9th - 10th
[Free Registration/Login may be required to access all resource tools.] Students investigate and analyze characteristics of waves, including velocity, and calculate the relationship between wave speed, frequency, and wavelength.
Unit Plan
CK-12 Foundation

Ck 12: The Quantum Mechanical Model

For Students 9th - 10th
[Free Registration/Login may be required to access all resource tools.] In the following online tutorial students will calculate the wavelength, frequency, and energy of light using Planck's constant and the speed of light. They will...
Unit Plan
TED Talks

Ted: Ted Ed: How Simple Ideas Lead to Scientific Discoveries

For Students 9th - 10th
Educator, Adam Savage, shares two astounding examples of profound scientific discoveries that came from simple, creative procedures: Eratosthenes' calculation of the Earth's circumference and Hippolyte Fizeau's measurement of the speed...
Unit Plan
CK-12 Foundation

Ck 12: Physical Science: Properties of Electromagnetic Waves

For Students 7th - 9th
[Free Registration/Login may be required to access all resource tools.] The speed of electromagnetic waves, their wavelengths and frequencies and how to calculate wavelength or wave frequency.
Unit Plan
Texas Education Agency

Texas Gateway: Electromagnetic Spectrum

For Students 9th - 10th
This tutorial explores using Planck's constant and the speed of light to calculate the wavelength, frequency, and energy of light.
Unit Plan
BBC

Bbc: Gcse Bitesize: General Properties of Waves

For Students 9th - 10th
Light travels as waves. Waves can be described by their amplitude, wavelength and frequency. The speed of a wave can be calculated from its frequency and wavelength.