Alberta Science 10Teaching resource · Alberta POS aligned

Student path — optional learning supports available

Units / Unit C

Diffusion, Osmosis, and Active Transport

Compare passive and active transport with models (C-GO2-SO1, C-GO2-SO2).

Long-form student guide · Alberta Science 10 POS · teaching resource (not a cram sheet)

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Outcome checklist

Alberta Program of Studies — tick each row when you can explain it without the slide.

  • C-GO2-SO1

    By the end of this lesson you should be able to: Compare passive transport of matter by diffusion and osmosis with active transport in terms of the particle model of matter, concentration gradients, equilibrium and protein carrier molecules (e.g., particle model of matter and fluid-mosaic model)

    Self-check: Without looking at your notes, give one example or explanation that shows you meet C-GO2-SO1.

  • C-GO2-SO2

    By the end of this lesson you should be able to: Use models to explain and visualize complex processes like diffusion and osmosis, endo- and exocytosis, and the role of cell membrane in these processes

    Self-check: Without looking at your notes, give one example or explanation that shows you meet C-GO2-SO2.

  • C-GO2

    Big idea: Describe the function of cell organelles and structures in a cell, in terms of life processes, and use models to explain these processes and their applications

    Self-check: How does today's lesson connect to C-GO2?

Where this shows up later

  • Unit CEquilibrium: Dynamic equilibrium in cells and environments.

Lab and demo watch-outs

  • Classroom safety

    Follow school rules for equipment, goggles, and fire safety even during thought experiments.

    Any time hands-on work is suggested.

Lesson walk-through

Slide 1 · Hook

Opening: Diffusion, Osmosis, and Active Transport

  • Introduce diffusion-osmosis-active-transport.

Slide 2 · Learning intent

Learning intentions (Alberta POS)

  • General outcomes: C-GO2.
  • Specific: C-GO2-SO1
  • Specific: C-GO2-SO2

Slide 3 · Concept

Passive transport

  • Diffusion and osmosis; concentration gradients; equilibrium.
Phospholipid bilayer with embedded proteins — fluid and dynamic
Fluid mosaic model of the cell membrane

Slide 4 · Concept

Models

  • Visualize endo/exocytosis and carrier proteins.

Slide 5 · Guided practice

Guided practice

  • Apply ideas in pairs; justify with POS vocabulary.

Slide 6 · STS connection

Science, technology and society

  • Connect classroom models to Alberta contexts and FNMI perspectives where POS indicates.

Slide 7 · Formative check

Formative check

  • Exit ticket aligned to today's specific outcomes.

Slide 8 · Exit / preview

Next steps

  • Preview the next lesson in Unit C.