Think about the differences between diamond and graphite at a macroscopic, sub-microscopic and symbolic level
This worksheet is part of the Johnstone’s triangle series of resources, designed to help learners to move between different conceptual levels of thinking in key chemistry topics.
Learning objectives
- Describe two different carbon allotropes based on observations
- Use symbolic models to represent carbon allotropes
- Explain how the different bonding in carbon allotropes relates to their properties
How to use Johnstone’s triangle
Use Johnstone’s triangle to develop learners thinking about scientific concepts at three different conceptual levels:
- Macroscopic: what we can see. Think about the properties that we can observe, measure and record.
- Sub-microscopic: smaller than we can see. Think about the particle or atomic level.
- Symbolic: representations. Think about how we represent chemical ideas including symbols and diagrams.
For learners to gain a deeper awareness of a topic, they need to understand it at all three levels.
When introducing a topic, do not try to introduce all of the levels of thinking at once. This will overload working memory. Instead complete the triangle over a series of lessons, beginning with the macroscopic level and introducing other levels, in turn, once secure.
All of the levels are interrelated, for example, learners need visual representation of the sub-microscopic in order to develop mental models of the particle or atomic level.
Further reading
Read more about how to use Johnstone’s triangle in your teaching with these articles:
- Develop deeper understanding with models
- Improve students’ understanding with Johnstone’s triangle
- Practical ideas for using Johnstone’s triangle
Norman Reid’s book The Johnstone Triangle: The Key to Understanding Chemistry provides an more in-depth overview, the first chapter is available to read online.
Scaffolding
It is important to share the structure of the triangle with learners prior to use. Tell them why you want them to use the triangle and how it will help them to develop their understanding. Use an ‘I try, we try, you try’ approach when you are introducing Johnstone’s triangle for the first time.
Next steps
To further develop learner’s thinking in all areas of Johnstone’s triangle, try our Developing understanding of carbon allotropes worksheet. These include icons in the margin referring to the conceptual level of thinking needed to answer the question.
More resources for teaching allotropes of carbon
- Use this scaffolded writing activity, Allotropes of carbon structure strip, to support learners to retrieve and organise their knowledge.
- Use this infographic poster and supporting resources with your 14–16 classes to boost their knowledge of diamond, graphite, graphene and fullerenes.
- Provide the real-world context of High speed graphene fabrication using rollers when studying carbon allotropes and graphene with this science research news story and summary slide.
- Discover a carbon allotrope that can scratch diamond with this starter slide to kick-off a lesson on carbon allotropes and giant covalent structures.
Downloads
Carbon allotropes Johnstone's triangle student worksheet
Handout | PDF, Size 0.26 mbCarbon allotropes Johnstone's triangle teacher notes and answers
Handout | PDF, Size 0.29 mbCarbon allotropes Johnstone's triangle student worksheet
Editable handout | Word, Size 1.98 mbCarbon allotropes Johnstone's triangle teacher notes and answers
Editable handout | Word, Size 1.98 mb
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