Pyramids and Cones — Worked Examples
These problems progress from direct volume and surface-area calculations to inverse dimensions, similar cross-sections, centroid interpretation, and oblique-solid checks.
Example 1: Volume of a square pyramid
A square pyramid has base side and perpendicular height . Determine its volume.
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0 of 2 Steps CompletedExample 2: Slant height and lateral area of a regular square pyramid
A regular square pyramid has base side and perpendicular height . Determine its face slant height and lateral area.
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0 of 3 Steps CompletedExample 3: Total area of a regular square pyramid
Use the pyramid from Example 2 to determine total surface area.
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0 of 2 Steps CompletedExample 4: Volume and slant height of a right circular cone
A right circular cone has radius and perpendicular height . Determine its volume and slant height.
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0 of 2 Steps CompletedExample 5: Cone lateral and total surface area
For the cone in Example 4, determine its lateral and total surface areas.
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0 of 2 Steps CompletedExample 6: Radius from cone volume
A right circular cone must hold and has perpendicular height . Determine the required base radius.
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0 of 3 Steps CompletedExample 7: Height of a pyramid from volume
A pyramid has base area and volume . Determine its perpendicular height.
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0 of 2 Steps CompletedExample 8: Parallel section inside a cone
A cone has height and base radius . Find the radius and area of a section parallel to the base located from the apex.
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For the cone in Example 8, what fraction of the full volume lies between the apex and the section from the apex?
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0 of 2 Steps CompletedExample 10: Centroid of a homogeneous right circular cone
A uniform solid right circular cone is high. Locate its centroid along the symmetry axis, measured from the base plane.
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0 of 1 Steps CompletedExample 11: Oblique pyramid volume
A right pyramid and an oblique pyramid have the same base area and the same perpendicular height . The oblique pyramid has a longer apex-to-base-edge distance. Compare their volumes.
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0 of 2 Steps CompletedExample 12: Uniformly scale a cone
A right circular cone has original volume and total surface area . Every linear dimension is enlarged by factor . Determine the new volume and total surface area.
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0 of 2 Steps CompletedPyramid and cone calculation check
Volume always uses perpendicular height. Lateral area for a regular pyramid uses the common face slant height, while a right circular cone uses generator length . Do not extend these surface-area shortcuts or right-solid symmetry-axis language to arbitrary oblique solids.