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Learning Goal
‹3 of 3 in this cluster
Solve real-world and mathematical problems involving area, volume and surface area of two- and three-dimensional objects
Start lessonBegins with Composite area and volume · Slides
Teacher tools for this standard
Lesson Plan · Guided Notes · Exit Ticket · Re-teach · Homework
Teacher tools for this standard
Lesson Plan · Guided Notes · Exit Ticket · Re-teach · Homework
- Lesson Plan →Objectives, pacing and practice, built from this lesson's brief.
- Guided Notes →One page your students fill in and keep.
- Exit Ticket →Three items at the end of class. No student accounts.
- Re-teach →After an exit ticket: who missed what, and what to do tomorrow.
- Homework →Assign practice; it grades itself.
7.G.B.6
7.G.B.6 -- Solve real-world and mathematical problems involving area, volume and surface area of two- and three-dimensional objects composed of triangles, quadrilaterals, polygons, cubes, and right prisms.
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7.G.B.6 -- Solve real-world and mathematical problems involving area, volume and surface area of two- and three-dimensional objects composed of triangles, quadrilaterals, polygons, cubes, and right prisms.
What you'll learn
- Compute areas of triangles, quadrilaterals, and other polygons, including composite 2D figures
- Compute volumes of right prisms (rectangular, triangular, and other polygonal bases)
- Compute surface areas of right prisms and pyramids by decomposing into component faces
- Solve real-world and mathematical problems requiring area, volume, or surface area
- Select the appropriate measure (area, volume, surface area) for a given real-world context
- Use the circle area formula (7.G.B.4) in composite figure problems involving circles and polygons
Slides
Step through the lesson, or watch it as a narrated video • 2 slide decks
1
Composite area and volume
✓ Start here2
Surface area and applications
Practice
Try it on your own
Animated Videos
Short animated explanations of the key idea • 2 animated videos
Composite Figures That Include a Circle
Volume of Any Right Prism: V = Bh Beyond the Rectangle
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