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3D Shapes | Mathematics for GCSE/IGCSE - Year 11 PDF Download

Properties of 3D Shapes

In this section, we will explore the characteristics of various 3D shapes, focusing on their faces, symmetry planes, and unique properties.

What 3D shapes should I know?

  • Acquire familiarity with the general designations of prisms, which are 3D shapes featuring uniform cross-sections.
  • The cross-section of a cube forms a square, while that of a cuboid creates a rectangle. Similarly, a cylinder's cross-section is circular.
  • Be prepared to deal with various prisms in assessments, including triangular prisms, with clear indication of the cross-sectional shape provided in the question.
  • Understand the nomenclature and attributes of different types of pyramids.
    • Pyramids possess a flat base and sloping sides converging at a single point.
    • The base is typically a 2D shape, and many pyramids derive their names from the shape of their base, such as a square-based pyramid.
    • Certain pyramids have unique appellations that warrant recognition.
    • Examples include cones with circular bases and tetrahedrons featuring equilateral triangle bases.
  • Learn about spheres, their name, and properties.

Question for 3D Shapes
Try yourself:
Which 3D shape has a circular base?
View Solution

What are the properties of 3D shapes?

  • 3D shapes are characterized by their faces, vertices, and edges.
  • Each face represents an individual surface of the 3D shape.
  • Vertices (plural, vertices) denote the corners of the 3D shape.
  • Edges connect one vertex to another.
  • Understanding the number and shape of faces is crucial for common 3D shapes.
    • A cube boasts 6 equal square faces.
    • A cuboid features 3 pairs of equal rectangular faces.
    • A cylinder comprises two equal circular faces and one rectangular face, which is its curved surface area.
    • A triangular prism has two equal triangular faces and three rectangular faces.
  • In cases where triangular faces are equilateral, all rectangles will be equal.
  • If triangular faces are isosceles, two rectangles will be equal.
  • A square-based pyramid possesses one square face and four equal triangular faces.
  • A tetrahedron consists of four triangular faces.
  • 3D shapes can be unfolded into a net to exhibit their 2D faces.
  • A net is essentially a pattern that, when folded, forms the 3D shape.

3D Shapes | Mathematics for GCSE/IGCSE - Year 11

The document 3D Shapes | Mathematics for GCSE/IGCSE - Year 11 is a part of the Year 11 Course Mathematics for GCSE/IGCSE.
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FAQs on 3D Shapes - Mathematics for GCSE/IGCSE - Year 11

1. What are the main 3D shapes that students should know about?
Ans. Students should be familiar with shapes such as cubes, rectangular prisms, pyramids, cylinders, cones, and spheres.
2. What are some properties of 3D shapes that students need to understand?
Ans. Some important properties of 3D shapes include volume, surface area, edges, faces, and vertices.
3. How can students calculate the volume of a 3D shape?
Ans. The volume of a 3D shape can be calculated by using the formula specific to each shape. For example, the volume of a cube is calculated by multiplying the length, width, and height of the cube.
4. What is the relationship between the number of faces, edges, and vertices in a 3D shape?
Ans. In a 3D shape, the number of vertices plus the number of faces will always be equal to the number of edges plus 2. This relationship is known as Euler's formula.
5. How can students determine the surface area of a 3D shape?
Ans. The surface area of a 3D shape can be calculated by finding the area of each face of the shape and then adding them all together.
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