Slide 1 · Hook
Opening: Global Energy Transfer and Climate Zones
- Introduce global-energy-transfer.
Student path — optional learning supports available
Atmosphere and hydrosphere transfer; climate zones (D-GO2-SO1, D-GO2-SO3).
Long-form student guide · Alberta Science 10 POS · teaching resource (not a cram sheet)
← Back to slide-by-slide viewAlberta Program of Studies — tick each row when you can explain it without the slide.
By the end of this lesson you should be able to: Describe, in general terms, how thermal energy is transferred through the atmosphere (i.e., global wind patterns, jet stream, Coriolis effect, weather systems) and through the hydrosphere (i.e., ocean currents, large bodies of water) from latitudes of net radiation surplus to latitudes of net radiation deficit, resulting in a variety of climatic zones (e.g., analyze static and animated satellite images)
Self-check: Without looking at your notes, give one example or explanation that shows you meet D-GO2-SO1.
By the end of this lesson you should be able to: Explain how thermal energy transfer through the atmosphere and hydrosphere affects climate
Self-check: Without looking at your notes, give one example or explanation that shows you meet D-GO2-SO3.
Big idea: Analyze the relationships among net solar energy, global energy transfer processes—primarily radiation, convection and hydrologic cycle—and climate
Self-check: How does today's lesson connect to D-GO2?
Classroom safety
Follow school rules for equipment, goggles, and fire safety even during thought experiments.
Any time hands-on work is suggested.
Slide 1 · Hook
Slide 2 · Learning intent
Slide 3 · Concept
Slide 4 · Concept
Slide 5 · Guided practice
Slide 6 · STS connection
Slide 7 · Formative check
Slide 8 · Exit / preview