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Expansion and Contraction

Science • 60 • 30 students • Created with AI following Aligned with provincial curriculum standards

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Science
60
30 students
23 February 2026

Teaching Instructions

Plan – Thème 4 : Dilatation et contraction

Objectif : Les élèves comprendront que la matière change de volume en fonction de la température.

Contenu :

Dilatation (chauffage)

Contraction (refroidissement)

Application aux solides, liquides et gaz

Stratégies :

Discussion prédictive

Démonstration (ballon chauffé)

Questions de compréhension

Activité écrite courte

Évaluation :

Questions orales

Fiche d’activité

Grade Level:

7

Duration:

60 minutes

Class Size:

30 students


Curriculum Alignment - Alberta Science 7

Specific Learning Outcomes (SLOs):

  • Physical Science Unit (PS7)
    • PS7.1: Demonstrate an understanding that changes in temperature cause materials to expand (dilate) or contract, and this affects solids, liquids, and gases differently.
    • PS7.2: Investigate and explain predictable patterns of matter in response to temperature changes.

Competencies Addressed:

  • Scientific inquiry and problem solving
  • Communication of scientific ideas
  • Understanding and applying scientific concepts

Lesson Objectives

By the end of the lesson, students will be able to:

  • I can explain how matter changes volume when temperature changes due to expansion and contraction.
  • I can describe how solids, liquids, and gases respond differently to temperature changes.
  • I can observe and interpret a demonstration illustrating the expansion of gases when heated.

Success Criteria

Students will be successful if they:

  • Clearly explain in their own words the difference between expansion and contraction.
  • Describe at least one example of expansion or contraction in solids, liquids, and gases.
  • Answer oral questions correctly regarding the concept of thermal expansion.
  • Complete the written activity sheet with accurate responses demonstrating understanding.

Materials Needed

  • Balloon
  • Hot water container (warm but safe to touch)
  • Ice water container
  • Transparent bottle or flask
  • Worksheets (activity sheet with questions)
  • Whiteboard and markers
  • Dyslexia-friendly reading materials summarising the concepts
  • Enlarged visual posters illustrating expansion and contraction in different states of matter

Lesson Plan Outline

1. Introduction & Predictive Discussion (10 minutes)

Purpose: Activate prior knowledge and stimulate curiosity.

  • Begin by asking: "What do you think happens to a balloon when it is placed near a heat source? Why?"
  • Record students' predictions on the board.
  • Discuss briefly how temperature affects matter without giving answers yet.

Differentiation:

  • Provide sentence starters for ELL and students with language difficulties (e.g., "When temperature goes up, matter...").
  • Use visuals showing particles in solids, liquids, and gases to support understanding.

2. Demonstration: Balloon Heating (15 minutes)

Activity:

  • Place a deflated balloon over the mouth of a transparent bottle.
  • Place the bottle in warm water and observe.
  • Remove and place in ice water, observe contraction.
  • Discuss observations highlighting expansion when heated and contraction when cooled.

Scientific Explanation:

  • Explain how air particles inside the balloon move faster and take up more space when heated, causing expansion. When cooled, particles slow down and contract.

Question prompts:

  • What happened to the balloon when it was heated?
  • Why did it change size?
  • Does this happen to solids and liquids too? How might it be different?

Differentiation:

  • Allow students with sensory sensitivities to observe from a distance or watch a video recording of the demonstration.
  • Use clear, dyslexia-friendly fonts on posters and worksheets to reinforce content.

3. Mini Lecture & Group Discussion (15 minutes)

Content:

  • Explain the concepts of dilatation (expansion) and contraction with everyday examples:
    • Solid: Expansion of railway tracks in summer.
    • Liquid: Mercury in a thermometer rising as temperature increases.
    • Gas: Balloon inflation when heated.

I can statement: I can describe how solids, liquids, and gases expand and contract differently when heated or cooled.

Group Activity:

  • Students work in small groups and brainstorm additional examples of expansion and contraction for each state of matter.
  • Share ideas briefly with the whole class.

Differentiation:

  • Provide sentence frames to support group sharing.
  • Buddy system pairing for students needing extra support.

4. Written Activity (15 minutes)

Activity:

  • Distribute a worksheet with:
    • Matching terms (dilatation, contraction, solids, liquids, gases).
    • Short answer questions relating to the demonstration and mini lecture.
    • Diagram labelling showing expansion of gas particles.

Extension for advanced learners:

  • Challenge advanced students to explain why expansion varies among solids, liquids, and gases using particle theory.

Assessment:

  • Use this worksheet as formative assessment of understanding.

5. Oral Review and Closing (5 minutes)

  • Conduct a quick oral quiz with questions like:

    • What is dilatation?
    • Give an example of contraction in everyday life.
    • Why do gases expand more than solids when heated?
  • Review initial board predictions and discuss any changes in thinking.

Reflection:

  • Have students write a short “I can…” statement reflecting what they learned today.

Differentiation Strategies Summary

Learner TypeStrategy
ELL & struggling readersSentence frames, visuals, verbal explanations
Dyslexic studentsDyslexia-friendly fonts/materials, verbal instructions, clear layouts
Sensory-sensitiveOptions to observe remotely or via videos
Advanced learnersExtension questions requiring deeper particle theory explanation
Students needing extra practicePartner/buddy system, extra scaffolding during group work

Assessment Overview

Assessment TypePurposeDetail
Oral QuestionsCheck understanding during lessonIn-class questions during demo and review
Written WorksheetFormative summative checkMatching, short response, diagram labelling
Student ReflectionSelf-assessment of learningWritten “I can…” statement at lesson end

This lesson integrates inquiry, hands-on demonstration, reflective discussion, and written assessment to foster conceptual understanding of thermal expansion and contraction as per Alberta Science 7 standards. It incorporates varied teaching strategies ensuring accessibility and challenge appropriate for 7th graders while keeping the content relevant and engaging.

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