Science Lesson Kit · Teacher Resource
Moon Phase Modeling: Why Does the Moon Seem to Change Shape? — 5E Lesson Plan
Space Science · 50 minutes
Grade 4
5E lesson flow
01
Engage
6 min
Teacher Does
Show photographs of several Moon phases and ask whether the Moon itself changed shape.
Students Do
Describe the visible illuminated shapes and propose explanations.
Ask
- What stays the same about the Moon? What seems to change?
Look For
Difference between actual object shape and illuminated appearance.
02
Explore
15 min
Teacher Does
Set one lamp as the Sun and guide students through several Moon-ball positions.
Students Do
Keep their viewpoint at Earth, move the Moon ball, and sketch the visible lit portion at each position.
Ask
- Which half is lit by the lamp?
- How much of that half can you see?
Look For
Lit half faces lamp; visible fraction changes.
03
Explain
9 min
Teacher Does
Introduce phase, orbit, illuminated, crescent, gibbous, and viewpoint.
Students Do
Connect model positions to phase descriptions.
Ask
- What causes the phase pattern in this model?
Look For
Changing Sun-Earth-Moon geometry and viewpoint.
04
Elaborate
13 min
Teacher Does
Present the Earth-shadow misconception and a not-to-scale model question.
Students Do
Use the model to test the shadow idea and identify model limits.
Ask
- Can you make a crescent without Earth blocking the light?
- What does our model exaggerate?
Look For
Yes; ordinary phases do not require Earth's shadow. Distances and sizes are not to scale.
05
Evaluate
7 min
Teacher Does
Give a new Moon-position card.
Students Do
Shade the illuminated half, sketch the Earth-view appearance, and explain their reasoning.
Ask
- What evidence from the model supports your sketch?
Look For
Consistent illumination geometry and viewpoint reasoning.
Student goal
I can use a model to explain how the Moon's position changes the illuminated part we see from Earth.
Learning objectives
- Use a physical model to explain that the Sun illuminates half of the Moon while our view of the lit half changes.
- Connect Moon positions in the model with visible phase patterns such as crescent, quarter, gibbous, and full.
- Use evidence from the model to distinguish ordinary Moon phases from Earth's shadow during a lunar eclipse.
Materials
- One bright lamp or fixed flashlight for teacher demonstration
- Small foam balls on sticks
- Darkened area of classroom
- Moon-position cards
- Recording sheet
Before class
- Place the lamp where students can move around it safely.
- Use a bright but cool light source; do not use exposed hot bulbs.
- Remind students not to stare directly into the lamp.
- Mark an observer viewpoint.
- Keep the model focused on illumination and geometry, not scale.
- Open Teach Mode.
Prior knowledge
- The Sun is a source of light.
- The Moon can be seen in different apparent shapes across time.
Vocabulary
- phase
- The appearance of the Moon's sunlit portion as seen from Earth.
- orbit
- The curved path one object follows around another.
- illuminated
- Lit by a source of light.
- crescent
- A phase when less than half of the Moon's visible disk is illuminated.
- gibbous
- A phase when more than half but not all of the Moon's visible disk is illuminated.
- viewpoint
- The position from which an observer sees an object.
Differentiation
- Use pre-drawn circles for students to shade.
- Let students rotate a model in pairs before writing.
- Use the frame: The side facing the Sun is ___. From Earth we can see ___.
- For extension, ask students to compare waxing and waning positions without requiring memorization of all eight named phases.
Assessment
- Check whether the lit half always faces the lamp.
- Check phase sketches from the Earth viewpoint.
- Check correction of the Earth-shadow misconception.
- Check identification of model limitations.
Exit ticket
Explain why the Moon can appear crescent-shaped even though half of the Moon is illuminated by the Sun.
Extension
Track the Moon's appearance on several clear evenings using drawings or verified images, then compare the observed pattern with the classroom model.