Day 7 of 30
Heat transfer: convection
Content is AI-assisted and continuously improved through educator review
Learning Objective
Students will be able to explore heat transfer and convection.
In this lesson, we'll explore heat transfer: convection. Scientific inquiry allows us to investigate and explain natural phenomena.
Energy is the capacity to do work. It takes many forms: Kinetic energy (KE = ½mv²) is energy of motion; Potential energy (PE = mgh for gravitational) is stored energy. The Law of Conservation of Energy states that energy cannot be created or destroyed—only converted between forms (thermal, chemical, electrical, mechanical, light, nuclear). Heat (thermal energy) flows from warmer to cooler objects via conduction (direct contact), convection (fluid movement), and radiation (electromagnetic waves). Waves transfer energy without transferring matter; characteristics include wavelength, frequency, and amplitude. Electromagnetic spectrum (from longest to shortest wavelength): radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, gamma rays. Sound waves are mechanical waves requiring a medium (cannot travel in vacuum).
As you work through today's material, pay attention to the examples and try to identify the patterns or strategies being used. This will help you apply these concepts to new problems.
Take notes on key points and make connections to what you've already learned in previous lessons.
To examine systematically through observation and experiment
Observable facts that support or refute a claim
Instructions
Materials Needed
- Lab notebook
- Investigation materials
- Safety equipment if needed
Based on today's lesson, what is one thing you observed or learned?
How could you test or investigate this topic further?
Why is this topic important in the real world?
Teaching Tip
For this age group: Balance direct instruction with collaborative activities. Allow students to explain their thinking and make connections to prior knowledge when exploring heat transfer: convection.